Updated on 2024/02/01

写真a

 
NISHIDA Takashi
 
Organization
Faculty of Medicine, Dentistry and Pharmaceutical Sciences Associate Professor
Position
Associate Professor
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Degree

  • 博士(歯学) ( 岡山大学 )

Research Interests

  • メカノバイオロジー

  • 骨代謝研究

  • Cartilage biology

Research Areas

  • Life Science / Oral biological science

Education

  • 岡山大学大学院   歯学研究科  

    1995.4 - 1999.3

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    Country: Japan

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  • Okayama University   歯学部   歯学

    1989.4 - 1995.3

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    Country: Japan

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Research History

  • Associate Professor,Graduate School of Medicine, Dentistry and Pharmaceutical Sciences,Okayama University

    2014.10

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  • 岡山大学大学院医歯薬学総合研究科 助教

    2005.9 - 2014.9

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  • University of California, Los Angeles

    2004.4 - 2005.9

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  • 岡山大学大学院医歯学総合研究科 助手

    2001.4 - 2004.3

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  • 岡山大学 歯学部 教務員

    1999.4 - 2001.3

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Professional Memberships

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Committee Memberships

  • 日本歯科基礎医学会   評議員  

    2015   

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    Committee type:Academic society

    日本歯科基礎医学会

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  • 岡山歯学会   評議員  

    2014   

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    Committee type:Academic society

    岡山歯学会

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  • 日本CCNファミリー研究会   会場の管理、運営  

    2007   

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    Committee type:Academic society

    日本CCNファミリー研究会

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  • 日本軟骨代謝学会   評議員  

       

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Papers

  • Expression and function of CCN2-derived circRNAs in chondrocytes

    Soma Kato, Kazumi Kawata, Takashi Nishida, Tomomi Mizukawa, Masaharu Takigawa, Seiji Iida, Satoshi Kubota

    Journal of Cell Communication and Signaling   2023.9

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    Publishing type:Research paper (scientific journal)   Publisher:Springer Science and Business Media LLC  

    Abstract

    Cellular communication network factor 2 (CCN2) molecules promote endochondral ossification and articular cartilage regeneration, and circular RNAs (circRNAs), which arise from various genes and regulate gene expression by adsorbing miRNAs, are known to be synthesized from CCN2 in human vascular endothelial cells and other types of cells. However, in chondrocytes, not only the function but also the presence of CCN2-derived circRNA remains completely unknown. In the present study, we investigated the expression and function of CCN2-derived circRNAs in chondrocytes. Amplicons smaller than those from known CCN2-derived circRNAs were observed using RT-PCR analysis that could specifically amplify CCN2-derived circRNAs in human chondrocytic HCS-2/8 cells. The nucleotide sequences of the PCR products indicated novel circRNAs in the HCS-2/8 cells that were different from known CCN2-derived circRNAs. Moreover, the expression of several Ccn2-derived circRNAs in murine chondroblastic ATDC5 cells was confirmed and observed to change alongside chondrocytic differentiation. Next, one of these circRNAs was knocked down in HCS-2/8 cells to investigate the function of the human CCN2-derived circRNA. As a result, CCN2-derived circRNA knockdown significantly reduced the expression of aggrecan mRNA and proteoglycan synthesis. Our data suggest that CCN2-derived circRNAs are expressed in chondrocytes and play a role in chondrogenic differentiation.

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    DOI: 10.1007/s12079-023-00782-7

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    Other Link: https://link.springer.com/article/10.1007/s12079-023-00782-7/fulltext.html

  • Dual roles of cellular communication network factor 6 (CCN6) in the invasion and metastasis of oral cancer cells to bone via binding to BMP2 and RANKL

    Hiroaki Hochi, Satoshi Kubota, Masaharu Takigawa, Takashi Nishida

    Carcinogenesis   2023.8

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    Authorship:Corresponding author   Publishing type:Research paper (scientific journal)   Publisher:Oxford University Press (OUP)  

    Abstract

    The acquisition of motility via epithelial–mesenchymal transition (EMT) and osteoclast induction are essential for the invasion and metastasis of oral squamous cell carcinoma (OSCC) to bone. However, the molecule suppressing both EMT and osteoclastogenesis is still unknown. In this study, we found that cellular communication network factor 6 (CCN6) was less produced in a human OSCC cell line, HSC-3 with mesenchymal phenotype, than in HSC-2 cells without it. Notably, CCN6 interacted with bone morphogenetic protein 2 (BMP2) and suppressed the cell migration of HSC-3 cells stimulated by BMP2. Moreover, knockdown of CCN6 in HSC-2 cells led to the promotion of EMT and enhanced the effect of transforming growth factor-β (TGF-β) on the promotion of EMT. Furthermore, CCN6 combined with BMP2 suppressed EMT. These results suggest that CCN6 strongly suppresses EMT in cooperation with BMP2 and TGF-β. Interestingly, CCN6 combined with BMP2 increased the gene expression of receptor activator of nuclear factor-κB ligand (RANKL) in HSC-2 and HSC-3 cells. Additionally, CCN6 interacted with RANKL, and CCN6 combined with RANKL suppressed RANKL-induced osteoclast formation. In metastatic lesions, increasing BMP2 due to the bone destruction led to interference with binding of CCN6 to RANKL, which results in the promotion of bone metastasis of OSCC cells due to continuous osteoclastogenesis. These findings suggest that CCN6 plays dual roles in the suppression of EMT and in the promotion of bone destruction of OSCC in primary and metastatic lesions, respectively, through cooperation with BMP2 and interference with RANKL.

    DOI: 10.1093/carcin/bgad057

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  • Do not overwork: cellular communication network factor 3 for life in cartilage. International journal

    Satoshi Kubota, Harumi Kawaki, Bernard Perbal, Masaharu Takigawa, Kazumi Kawata, Takako Hattori, Takashi Nishida

    Journal of cell communication and signaling   17 ( 2 )   353 - 359   2023.6

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    Cellular communication network factor (CCN) 3, which is one of the founding members of the CCN family, displays diverse functions. However, this protein generally represses the proliferation of a variety of cells. Along with skeletal development, CCN3 is produced in cartilaginous anlagen, growth plate cartilage and epiphysial cartilage. Interestingly, CCN3 is drastically induced in the growth plates of mice lacking CCN2, which promotes endochondral ossification. Notably, chondrocytes in these mutant mice with elevated CCN3 production also suffer from impaired glycolysis and energy metabolism, suggesting a critical role of CCN3 in cartilage metabolism. Recently, CCN3 was found to be strongly induced by impaired glycolysis, and in our study, we located an enhancer that mediated CCN3 regulation via starvation. Subsequent investigations specified regulatory factor binding to the X-box 1 (RFX1) as a transcription factor mediating this CCN3 regulation. Impaired glycolysis is a serious problem, resulting in an energy shortage in cartilage without vasculature. CCN3 produced under such starved conditions restricts energy consumption by repressing cell proliferation, leading chondrocytes to quiescence and survival. This CCN3 regulatory system is indicated to play an important role in articular cartilage maintenance, as well as in skeletal development. Furthermore, CCN3 continues to regulate cartilage metabolism even during the aging process, probably utilizing this regulatory system. Altogether, CCN3 seems to prevent "overwork" by chondrocytes to ensure their sustainable life in cartilage by sensing energy metabolism. Similar roles are suspected to exist in relation to systemic metabolism, since CCN3 is found in the bloodstream.

    DOI: 10.1007/s12079-023-00723-4

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  • Novel Cell Biological Assays for Measuring Bone 2 Remodeling Activities of CCN Proteins International journal

    Takashi Nishida, Satoshi Kubota, Masaharu Takigawa

    Methods in molecular biology (Clifton, N.J.)   2582   255 - 268   2023

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    Language:English   Publishing type:Part of collection (book)  

    Although two-dimensional (2D) cultures from bone lineage cells are often used, it is well-known that this culture system is completely different from the in vivo bone matrix environment. In this paper, we describe a 3D culture method using both the mouse osteocytic cell line, MLO-Y4, and an osteocyte-enriched population of the cells isolated from mice. These cells are embedded in collagen gel with recombinant cellular communication network (CCN) factor proteins; then, osteoblasts or osteoclasts are inoculated and cultured on the collagen gel. Because this method mimics the in vitro bone matrix environment, it is useful for understanding the detailed mechanism of actions of CCN proteins in the bone matrix.

    DOI: 10.1007/978-1-0716-2744-0_17

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  • Fibroblast Growth Factors and Cellular Communication Network Factors: Intimate Interplay by the Founding Members in Cartilage Reviewed

    Kubota S, Aoyama E, Takigawa M, Nishida T

    Int J Mol Sci.   23 ( 15 )   8592   2022.8

  • Molecular and Genetic Interactions between CCN2 and CCN3 behind Their Yin-Yang Collaboration Reviewed

    Kubota S, Kawata K, Hattori T, Nishida T

    Int J Mol Sci.   23 ( 11 )   5887   2022.5

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    DOI: 10.3390/ijms23115887.

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  • フッ化ナトリウムによるCCNファミリー遺伝子制御を介した歯肉線維化抑制作用の検討

    水川 朋美, 西田 崇, 明石 翔, 大杉 綾花, 大森 一弘, 中山 真彰, 高柴 正悟, 上岡 寛, 滝川 正春, 久保田 聡

    岡山歯学会雑誌   40 ( 2 )   34 - 35   2021.12

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    Language:Japanese   Publisher:岡山歯学会  

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  • メトホルミンによるUCA1を介した軟骨保護作用の解析

    近藤 星, 服部 高子, 桑原 実穂, Fu Shanqi, 西田 崇, 薬師寺 翔太, 吉岡 洋祐, 森谷 徳文, 飯田 征二, 滝川 正春, 久保田 聡

    岡山歯学会雑誌   40 ( 2 )   38 - 39   2021.12

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    Language:Japanese   Publisher:岡山歯学会  

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  • 軟骨細胞におけるRFX1を介したCCN3の発現制御機構の解明

    水川 朋美, 西田 崇, 明石 翔, 河田 かずみ, 菊池 菫, 川木 晴美, 滝川 正春, 上岡 寛, 久保田 聡

    日本生化学会大会プログラム・講演要旨集   94回   [2T15a - 638)]   2021.11

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    Language:Japanese   Publisher:(公社)日本生化学会  

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  • RFX1-mediated CCN3 induction that may support chondrocyte survival under starved conditions. Reviewed International journal

    Tomomi Mizukawa, Takashi Nishida, Sho Akashi, Kazumi Kawata, Sumire Kikuchi, Harumi Kawaki, Masaharu Takigawa, Hiroshi Kamioka, Satoshi Kubota

    Journal of cellular physiology   236 ( 10 )   6884 - 6896   2021.10

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    Cellular communication network factor (CCN) family members are multifunctional matricellular proteins that manipulate and integrate extracellular signals. In our previous studies investigating the role of CCN family members in cellular metabolism, we found three members that might be under the regulation of energy metabolism. In this study, we confirmed that CCN2 and CCN3 are the only members that are tightly regulated by glycolysis in human chondrocytic cells. Interestingly, CCN3 was induced under a variety of impaired glycolytic conditions. This CCN3 induction was also observed in two breast cancer cell lines with a distinct phenotype, suggesting a basic role of CCN3 in cellular metabolism. Reporter gene assays indicated a transcriptional regulation mediated by an enhancer in the proximal promoter region. As a result of analyses in silico, we specified regulatory factor binding to the X-box 1 (RFX1) as a candidate that mediated the transcriptional activation by impaired glycolysis. Indeed, the inhibition of glycolysis induced the expression of RFX1, and RFX1 silencing nullified the CCN3 induction by impaired glycolysis. Subsequent experiments with an anti-CCN3 antibody indicated that CCN3 supported the survival of chondrocytes under impaired glycolysis. Consistent with these findings in vitro, abundant CCN3 production by chondrocytes in the deep zones of developing epiphysial cartilage, which are located far away from the synovial fluid, was confirmed in vivo. Our present study uncovered that RFX1 is the mediator that enables CCN3 induction upon cellular starvation, which may eventually assist chondrocytes in retaining their viability, even when there is an energy supply shortage.

    DOI: 10.1002/jcp.30348

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  • 飢餓状態の軟骨細胞におけるRFX1を介したCCN3の誘導機構とその意義

    水川 朋美, 西田 崇, 河田 かずみ, 川木 晴美, 滝川 正春, 久保田 聡

    日本骨代謝学会学術集会プログラム抄録集   39回   144 - 144   2021.10

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    Language:Japanese   Publisher:(一社)日本骨代謝学会  

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  • Effect of Angiotensin II on Chondrocyte Degeneration and Protection via Differential Usage of Angiotensin II Receptors. Reviewed International journal

    Takashi Nishida, Sho Akashi, Masaharu Takigawa, Satoshi Kubota

    International journal of molecular sciences   22 ( 17 )   2021.8

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    The renin-angiotensin system (RAS) controls not only systemic functions, such as blood pressure, but also local tissue-specific events. Previous studies have shown that angiotensin II receptor type 1 (AT1R) and type 2 (AT2R), two RAS components, are expressed in chondrocytes. However, the angiotensin II (ANG II) effects exerted through these receptors on chondrocyte metabolism are not fully understood. In this study, we investigated the effects of ANG II and AT1R blockade on chondrocyte proliferation and differentiation. Firstly, we observed that ANG II significantly suppressed cell proliferation and glycosaminoglycan content in rat chondrocytic RCS cells. Additionally, ANG II decreased CCN2, which is an anabolic factor for chondrocytes, via increased MMP9. In Agtr1a-deficient RCS cells generated by the CRISPR-Cas9 system, Ccn2 and Aggrecan (Acan) expression increased. Losartan, an AT1R antagonist, blocked the ANG II-induced decrease in CCN2 production and Acan expression in RCS cells. These findings suggest that AT1R blockade reduces ANG II-induced chondrocyte degeneration. Interestingly, AT1R-positive cells, which were localized on the surface of the articular cartilage of 7-month-old mice expanded throughout the articular cartilage with aging. These findings suggest that ANG II regulates age-related cartilage degeneration through the ANG II-AT1R axis.

    DOI: 10.3390/ijms22179204

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  • Cellular communication network factor 3 in cartilage development and maintenance. Reviewed International journal

    Satoshi Kubota, Harumi Kawaki, Bernard Perbal, Kazumi Kawata, Takako Hattori, Takashi Nishida

    Journal of cell communication and signaling   15 ( 4 )   533 - 543   2021.6

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    Cellular communication network factor (CCN) 3 is one of the classical members of the CCN family, which are characterized by common molecular structures and multiple functionalities. Although this protein was discovered as a gene product overexpressed in a truncated form in nephroblastoma, recent studies have revealed its physiological roles in the development and homeostasis of mammalian species, in addition to its pathological association with a number of diseases. Cartilage is a tissue that creates most of the bony parts and cartilaginous tissues that constitute the human skeleton, in which CCN3 is also differentially produced to exert its molecular missions therein. In this review article, after the summary of the molecular structure and function of CCN3, recent findings on the regulation of ccn3 expression and the roles of CCN3 in endochondral ossification, cartilage development, maintenance and disorders are introduced with an emphasis on the metabolic regulation and function of this matricellular multifunctional molecule.

    DOI: 10.1007/s12079-021-00629-z

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  • Bipartite regulation of cellular communication network factor 2 and fibroblast growth factor 1 genes by fibroblast growth factor 1 through histone deacetylase 1 and fork head box protein A1. Reviewed International journal

    Abdellatif Elseoudi, Takashi Nishida, Tomomi Mizukawa, Takako Hattori, Kazumi Kawata, Eman A Taha, Masaharu Takigawa, Satoshi Kubota

    Journal of cell communication and signaling   15 ( 1 )   81 - 91   2021.3

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    Fibroblast growth factor 1 (FGF-1) is the first FGF family member, and it induces proliferation of fibroblasts and other types of the cells. However, recent studies are uncovering unexpected functions of this molecule. Our previous study redefined this growth factor as a catabolic molecule produced in cartilage upon metabolic insult. Indeed, FGF-1 was found to repress the gene expression of cellular communication network factor 2 (CCN2), which protects and regenerates cartilage, amplifying its own production through positive feedback regulation. In the present study, we investigated the molecular mechanism of this bipartite CCN2 repression and FGF1 activation by FGF-1 in chondrocytes. Repression of CCN2 and induction of FGF1 in human chondrocytic cells were both partly abolished by valproic acid, an inhibitor of histone deacetylase 1 (HDAC1), indicating the involvement of chromatin remodeling by histone acetylation in this system. In contrast, RNA degradation analysis suggested no contribution of post-transcriptional regulation of the mRNA stability to the effects conferred by FGF-1. Suspecting a regulation by a specific transcription factor, we next sought a candidate in silico from a large dataset. As a result, we found fork head box protein A1 (FOXA1) as the transcription factor that bound to both CCN2 and FGF1 loci. Functional analysis demonstrated that FOXA1 silencing significantly attenuated the CCN2 repression and FGF1 induction caused by FGF1. These findings collectively indicate that the bipartite regulation by FGF-1 is enabled by the combination of chromatin remodeling by HDACs and transcriptional modulation by FOXA1 with unknown transcriptional coactivators of opposite functionalities.

    DOI: 10.1007/s12079-020-00600-4

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  • Roles of CCN2 as a mechano-sensing regulator of chondrocyte differentiation. Reviewed International journal

    Takashi Nishida, Satoshi Kubota

    The Japanese dental science review   56 ( 1 )   119 - 126   2020.11

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    Language:English   Publishing type:Research paper (scientific journal)   Publisher:Elsevier BV  

    Cellular communication network factor 2 (CCN2) is a cysteine-rich secreted matricellular protein that regulates various cellular functions including cell differentiation. CCN2 is highly expressed under several types of mechanical stress, such as stretch, compression, and shear stress, in mesenchymal cells including chondrocytes, osteoblasts, and fibroblasts. In particular, CCN2 not only promotes cell proliferation and differentiation of various cells but also regulates the stability of mRNA of TRPV4, a mechanosensitive ion channel in chondrocytes. Of note, CCN2 behaves like a biomarker to sense suitable mechanical stress, because CCN2 expression is down-regulated when chondrocytes are subjected to excessive mechanical stress. These findings suggest that CCN2 is a mechano-sensing regulator. CCN2 expression is regulated by the activation of various mechano-sensing signaling pathways, e.g., mechanosensitive ion channels, integrin-focal adhesion-actin dynamics, Rho GTPase family members, Hippo-YAP signaling, and G protein-coupled receptors. This review summarizes the characterization of mechanoreceptors involved in CCN2 gene regulation and discusses the role of CCN2 as a mechano-sensing regulator of mesenchymal cell differentiation, with particular focus on chondrocytes.

    DOI: 10.1016/j.jdsr.2020.07.001

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  • Regulation of cellular communication network factor 2 (CCN2) in breast cancer cells via the cell-type dependent interplay between CCN2 and glycolysis. Reviewed International journal

    Sho Akashi, Takashi Nishida, Tomomi Mizukawa, Kazumi Kawata, Masaharu Takigawa, Seiji Iida, Satoshi Kubota

    Journal of oral biosciences   62 ( 3 )   280 - 288   2020.9

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    Language:English   Publishing type:Research paper (scientific journal)   Publisher:Elsevier BV  

    OBJECTIVES: Anti-osteoclastic treatments for breast cancer occasionally cause medication-related osteonecrosis of the jaw. Moreover, elevated glycolytic activity, which is known as the Warburg effect, is usually observed in these breast cancer cells. Previously, we found that cellular communication network factor 2 (CCN2) production and glycolysis enhanced each other in chondrocytes. Here, we evaluated the interplay between CCN2 and glycolysis in breast cancer cells, as we suspected a possible involvement of CCN2 in the Warburg effect in highly invasive breast cancer cells. METHODS: Two human breast cancer cell lines with a distinct phenotype were used. Glycolysis was inhibited by using 2 distinct compounds, and gene silencing was performed using siRNA. Glycolysis and the expression of relevant genes were monitored via colorimetric assays and quantitative RT-PCR, respectively. RESULTS: Although CCN2 expression was almost completely silenced when treating invasive breast cancer cells with a siRNA cocktail against CCN2, glycolytic activity was not affected. Notably, the expression of glycolytic enzyme genes, which was repressed by CCN2 deficiency in chondrocytes, tended to increase upon CCN2 silencing in breast cancer cells. Inhibition of glycolysis, which resulted in the repression of CCN2 expression in chondrocytic cells, did not alter or strongly enhanced CCN2 expression in the invasive and non-invasive breast cancer cells, respectively. CONCLUSIONS: High CCN2 expression levels play a critical role in the invasion and metastasis of breast cancer. Thus, a collapse in the intrinsic repressive machinery of CCN2 due to glycolysis may induce the acquisition of an invasive phenotype in breast cancer cells.

    DOI: 10.1016/j.job.2020.07.001

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  • Roles of Interaction between CCN2 and Rab14 in Aggrecan Production by Chondrocytes. Reviewed International journal

    Mitsuhiro Hoshijima, Takako Hattori, Eriko Aoyama, Takashi Nishida, Satoshi Kubota, Hiroshi Kamioka, Masaharu Takigawa

    International journal of molecular sciences   21 ( 8 )   E2769   2020.4

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    To identify proteins that cooperate with cellular communication network factor 2 (CCN2), we carried out GAL4-based yeast two-hybrid screening using a cDNA library derived from the chondrocytic cell line HCS-2/8. Rab14 GTPase (Rab14) polypeptide was selected as a CCN2-interactive protein. The interaction between CCN2 and Rab14 in HCS-2/8 cells was confirmed using the in situ proximity ligation assay. We also found that CCN2 interacted with Rab14 through its IGFBP-like domain among the four domains in CCN2 protein. To detect the colocalization between CCN2 and Rab14 in the cells in detail, CCN2, wild-type Rab14 (Rab14WT), a constitutive active form (Rab14CA), and a dominant negative form (Rab14DN) of Rab14 were overexpressed in monkey kidney-tissue derived COS7 cells. Ectopically overexpressed Rab14 showed a diffuse cytosolic distribution in COS7 cells; however, when Rab14WT was overexpressed with CCN2, the Rab14WT distribution changed to dots that were evenly distributed within the cytosol, and both Rab14 and CCN2 showed clear colocalization. When Rab14CA was overexpressed with CCN2, Rab14CA and CCN2 also showed good localization as dots, but their distribution was more widespread within cytosol. The coexpression of Rab14DN and CCN2 also showed a dotted codistribution but was more concentrated in the perinuclear area. Quantitative reverse transcription polymerase chain reaction (qRT-PCR) analysis revealed that the reduction in RAB14 or CCN2 mRNA by their respective siRNA significantly enhanced the expression of ER stress markers, BIP and CHOP mRNA in HCS-2/8 chondrocytic cells, suggesting that ER and Golgi stress were induced by the inhibition of membrane vesicle transfer via the suppression of CCN2 or Rab14. Moreover, to study the effect of the interaction between CCN2 and its interactive protein Rab14 on proteoglycan synthesis, we overexpressed Rab14WT or Rab14CA or Rab14DN in HCS-2/8 cells and found that the overexpression of Rab14DN decreased the extracellular proteoglycan accumulation more than the overexpression of Rab14WT/CA did in the chondrocytic cells. These results suggest that intracellular CCN2 is associated with Rab14 on proteoglycan-containing vesicles during their transport from the Golgi apparatus to endosomes in chondrocytes and that this association may play a role in proteoglycan secretion by chondrocytes.

    DOI: 10.3390/ijms21082769

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  • Retrotransposons Manipulating Mammalian Skeletal Development in Chondrocytes. Reviewed International journal

    Satoshi Kubota, Takanori Ishikawa, Kazumi Kawata, Takako Hattori, Takashi Nishida

    International journal of molecular sciences   21 ( 5 )   1564 - 1564   2020.2

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    Language:English   Publishing type:Research paper (scientific journal)   Publisher:MDPI AG  

    Retrotransposons are genetic elements that copy and paste themselves in the host genome through transcription, reverse-transcription, and integration processes. Along with their proliferation in the genome, retrotransposons inevitably modify host genes around the integration sites, and occasionally create novel genes. Even now, a number of retrotransposons are still actively editing our genomes. As such, their profound role in the evolution of mammalian genomes is obvious; thus, their contribution to mammalian skeletal evolution and development is also unquestionable. In mammals, most of the skeletal parts are formed and grown through a process entitled endochondral ossification, in which chondrocytes play central roles. In this review, current knowledge on the evolutional, physiological, and pathological roles of retrotransposons in mammalian chondrocyte differentiation and cartilage development is summarized. The possible biological impact of these mobile genetic elements in the future is also discussed.

    DOI: 10.3390/ijms21051564

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  • Suppression of adipocyte differentiation by low-intensity pulsed ultrasound via inhibition of insulin signaling and promotion of CCN family protein 2. Reviewed International journal

    Takashi Nishida, Yurika Nagao, Satoko Hashitani, Nobuyasu Yamanaka, Masaharu Takigawa, Satoshi Kubota

    Journal of cellular biochemistry   121 ( 12 )   4724 - 4740   2020.2

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    Language:English   Publishing type:Research paper (scientific journal)   Publisher:Wiley  

    Adipocyte differentiation is regulated by several transcription factors such as the CCAAT/enhancer-binding proteins (C/EBPs) and peroxisome proliferator-activated receptor-γ (PPARγ). Here, we demonstrate that low-intensity pulsed ultrasound (LIPUS) suppressed differentiation into mature adipocytes via multiple signaling pathways. When C3H10T1/2, a mesenchymal stem cell line, was treated with LIPUS (3.0 MHz, 60 mW/cm2 ) for 20 minutes once a day for 4 days during adipogenesis, and both the number of lipid droplets and the gene expression of PPARγ and C/EBPα were significantly decreased. Furthermore, LIPUS treatment decreased the phosphorylation of the insulin receptor and also that of Akt and ERK1/2, which are located downstream of this receptor. Next, we showed that LIPUS suppressed the gene expression of angiotensinogen (AGT), which is an adipokine produced by mature adipocytes, as well as that of angiotensin-converting enzyme 1 (ACE1) and angiotensin receptor type 1 (AT1 R) during adipogenesis of pre-adipogenic 3T3-L1 cells. Next, the translocation of Yes-associated protein (YAP) into the nucleus of 3T3-L1 cells was promoted by LIPUS, leading to upregulation of CCN family protein 2 (CCN2), a cellular communication network factor. Moreover, forced expression of CCN2 in 3T3-L1 cells decreased PPARγ gene expression, but it did not increase alkaline phosphatase and osterix gene expression. Finally, gene silencing of CCN2 in C3H10T1/2 cells diminished the effect of LIPUS on the gene expression of PPARγ and C/EBPα. These findings suggest that LIPUS suppressed adipogenesis through inhibition of insulin signaling and decreased PPARγ expression via increased CCN2 production, resulting in a possible decrease of mature adipocytes.

    DOI: 10.1002/jcb.29680

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    Other Link: https://onlinelibrary.wiley.com/doi/full-xml/10.1002/jcb.29680

  • Suppression of adipocyte differentiation by low-intensity pulsed ultrasound via inhibition of insulin signaling and promotion of CCN family protein 2. Reviewed

    J. Cell. Biochem.   10   1002   2020.2

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    DOI: 10.1002/jcb.29680.

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  • Roles of matricellular CCN2 deposited by osteocytes in osteoclastogenesis and osteoblast differentiation. Reviewed International journal

    Takashi Nishida, Satoshi Kubota, Hideki Yokoi, Masashi Mukoyama, Masaharu Takigawa

    Scientific reports   9 ( 1 )   10913 - 10913   2019.7

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    In this study, we investigated the effect of CCN2 (cellular communication network factor 2), previously termed connective tissue growth factor, deposited in bone matrix on osteoclastogenesis and osteoblast differentiation. To mimic the bone matrix environment, osteocytic MLO-Y4 cells had been embedded in collagen-gel with recombinant CCN2 (rCCN2), and mouse macrophage-like RAW264.7 cells were inoculated on the gel and treated with receptor activator of NF-κB ligand (RANKL). NFATc1 and cathepsin K (CTSK) productions were more increased in the combination of RAW264.7 and MLO-Y4 cells treated with rCCN2 than the combination without rCCN2. Next, we isolated an osteocyte-enriched population of cells and osteoclast progenitor cells from wild type and tamoxifen-inducible Ccn2-deficient (KO) mice and performed similar analysis. NFATc1 and CTSK productions were decreased in the KO osteocyte-enriched population at 6 months after the tamoxifen injection, regardless of the origin of the osteoclast progenitor cells. Interestingly, CTSK production was rather increased in KO osteocytes at 1 year after the injection. Finally, the combination of osteoblastic MC3T3-E1 and MLO-Y4 cells in rCCN2-containing bone matrix revealed the up-regulation of osteoblastic marker genes. These findings suggest that CCN2 supplied by osteocytes regulates both osteoclastogenesis and osteoblast differentiation.

    DOI: 10.1038/s41598-019-47285-3

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  • Possible reparative effect of low-intensity pulsed ultrasound (LIPUS) on injured meniscus. Reviewed International journal

    Yusuke Kamatsuki, Eriko Aoyama, Takayuki Furumatsu, Shinichi Miyazawa, Ami Maehara, Nobuyasu Yamanaka, Takashi Nishida, Satoshi Kubota, Toshifumi Ozaki, Masaharu Takigawa

    Journal of cell communication and signaling   13 ( 2 )   193 - 207   2019.6

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    Menisci are a pair of crescent-shaped fibrocartilages, particularly of which their inner region of meniscus is an avascular tissue. It has characteristics similar to those of articular cartilage, and hence is inferior in healing. We previously reported that low-intensity pulsed ultrasound (LIPUS) treatment stimulates the production of CCN2/CTGF, a protein involved in repairing articular cartilage, and the gene expression of major cartilage matrices such as type II collagen and aggrecan in cultured chondrocytes. Therefore, in this present study, we investigated whether LIPUS has also favorable effect on meniscus cells and tissues. LIPUS applied with a 60 mW/cm2 intensity for 20 min stimulated the gene expression and protein production of CCN2 via ERK and p38 signaling pathways, as well as gene expression of SOX9, aggrecan, and collagen type II in human inner meniscus cells in culture, and slightly stimulated the gene expression of CCN2 and promoted the migration in human outer meniscus cells in culture. LIPUS also induced the expression of Ccn2, Sox9, Col2a1, and Vegf in rat intact meniscus. Furthermore, histological evaluations showed that LIPUS treatment for 1 to 4 weeks promoted healing of rat injured lateral meniscus, as evidenced by better and earlier angiogenesis and extracellular matrix synthesis. The data presented indicate that LIPUS treatment might prevent meniscus from degenerative change and exert a reparative effect on injured meniscus via up-regulation of repairing factors such as CCN2 and that it might thus be useful for treatment of an injured meniscus as a non-invasive therapy.

    DOI: 10.1007/s12079-018-0496-9

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  • Circadian production of melatonin in cartilage modifies rhythmic gene expression. Reviewed International journal

    Shanqi Fu, Miho Kuwahara, Yoko Uchida, Sei Koudo, Daichi Hayashi, Yuji Shimomura, Asami Takagaki, Takashi Nishida, Yusuke Maruyama, Mika Ikegame, Atsuhiko Hattori, Satoshi Kubota, Takako Hattori

    The Journal of endocrinology   241 ( 2 )   161 - 173   2019.3

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    Endochondral ossification, including bone growth and other metabolic events, is regulated by circadian rhythms. Herein, we provide evidence that melatonin has a direct effect on the circadian rhythm of chondrocytes. We detected mRNA expression of the genes which encode the melatonin-synthesizing enzymes AANAT (arylalkylamine N-acetyltransferase) and HIOMT (hydroxyindole O-methyltransferase), as well as the melatonin receptors MT1 and MT2 in mouse primary chondrocytes and cartilage. Production of melatonin was confirmed by mass spectrometric analysis of primary rat and chick chondrocytes. Addition of melatonin to primary mouse chondrocytes caused enhanced cell growth and increased expression of Col2a1, Aggrecan, and Sox9, but inhibited Col10a1 expression in primary BALB/c mouse chondrocytes. Addition of luzindole, an MT1 and MT2 antagonist, abolished these effects. These data indicate that chondrocytes produce melatonin, which regulates cartilage growth and maturation via the MT1 and MT2 receptors. Kinetic analysis showed that melatonin caused rapid upregulation of Aanat, Mt1, Mt2, and Pthrp expression, followed by Sox9 and Ihh. Furthermore, expression of the clock gene Bmal1 was induced, while that of Per1 was downregulated. Chronobiological analysis of synchronized C3H mouse chondrocytes revealed that melatonin induced the cyclic expression of Aanat and modified the cyclic rhythm of Bmal1, Mt1, and Mt2. In contrast, Mt1 and Mt2 showed different rhythms from Bmal1 and Aanat, indicating the existence of different regulatory genes. Our results indicate that exogenous and endogenous melatonin work in synergy in chondrocytes to adjust rhythmic expression to the central suprachiasmatic nucleus clock.

    DOI: 10.1530/JOE-19-0022

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  • 軟骨細胞、骨芽細胞分化にUCA1長鎖ノンコーディングRNAが与える影響

    石川 崇典, 西田 崇, 大野 充昭, 村瀬 友里香, 上岡 寛, 滝川 正春, 久保田 聡

    日本骨代謝学会学術集会プログラム抄録集   36回   172 - 172   2018.7

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  • Physiological role of urothelial cancer-associated one long noncoding RNA in human skeletogenic cell differentiation. Reviewed International journal

    Takanori Ishikawa, Takashi Nishida, Mitsuaki Ono, Takeshi Takarada, Ha Thi Nguyen, Shinnosuke Kurihara, Takayuki Furumatsu, Yurika Murase, Masaharu Takigawa, Toshitaka Oohashi, Hiroshi Kamioka, Satoshi Kubota

    Journal of cellular physiology   233 ( 6 )   4825 - 4840   2018.6

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    A vast number of long-noncoding RNAs (lncRNA) are found expressed in human cells, which RNAs have been developed along with human evolution. However, the physiological functions of these lncRNAs remain mostly unknown. In the present study, we for the first time uncovered the fact that one of such lncRNAs plays a significant role in the differentiation of chondrocytes and, possibly, of osteoblasts differentiated from mesenchymal stem cells, which cells eventually construct the human skeleton. The urothelial cancer-associated 1 (UCA1) lncRNA is known to be associated with several human malignancies. Firstly, we confirmed that UCA1 was expressed in normal human chondrocytes, as well as in a human chondrocytic cell line; whereas it was not detected in human bone marrow mesenchymal stem cells (hBMSCs). Of note, although UCA1 expression was undetectable in hBMSCs, it was markedly induced along with the differentiation toward chondrocytes, suggesting its critical role in chondrogenesis. Consistent with this finding, silencing of the UCA1 gene significantly repressed the expression of chondrogenic genes in human chondrocytic cells. UCA1 gene silencing and hyper-expression also had a significant impact on the osteoblastic phenotype in a human cell line. Finally, forced expression of UCA1 in a murine chondrocyte precursor, which did not possess a UCA1 gene, overdrove its differentiation into chondrocytes. These results indicate a physiological and important role of this lncRNA in the skeletal development of humans, who require more sustained endochondral ossification and osteogenesis than do smaller vertebrates.

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  • Assessment of CCN2 Independent Modules Regenerative Capacity on Osteoarthritis and Further Selecting the Most Suitable Among them as a Potential Therapeutic Drug Reviewed

    Abdelkader Tarek, Aoyama Eriko, Nishida Takashi, Hattori Takako, Janune Danilo, Hara Emilio S, Ono Mitsuaki, Tabata Yasuhiko, Kuboki Takuo, Kubota Satoshi, Takigawa Masaharu

    FASEB JOURNAL   30   2016.4

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  • Assessment of CCN2 Independent Modules Regenerative Capacity on Osteoarthritis and Further Selecting the Most Suitable Among them as a Potential Therapeutic Drug Reviewed

    Abdelkader Tarek, Aoyama Eriko, Nishida Takashi, Hattori Takako, Janune Danilo, Hara Emilio S, Ono Mitsuaki, Tabata Yasuhiko, Kuboki Takuo, Kubota Satoshi, Takigawa Masaharu

    FASEB JOURNAL   30   2016.4

  • Cell Biological Assays for Measuring Chondrogenic Activities of CCN2 Protein.

    Nishida T, Kubota S, Takigawa M

    Methods Mol Biol.   1489   219 - 237   2016

  • Production of Recombinant CCN2 Protein by Mammalian Cells.

    Nishida T, Kubota S, Takigawa M

    Methods Mol Biol.   1489   95 - 105   2016

  • In Vivo Evaluation of Cartilage Regenerative Effects of CCN2 Protein

    Nishida T, Kubota S, Takigawa M

    Methods Mol Biol.   1489   273 - 282   2016

  • 骨細胞の作用を介した破骨細胞形成におけるCCN2の役割

    西田 崇, 久保田 聡, 服部 高子, Bonewald Lynda F., 滝川 正春

    日本生化学会大会・日本分子生物学会年会合同大会講演要旨集   88回・38回   [2P0151] - [2P0151]   2015.12

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  • CCN2は骨細胞を介して破骨細胞形成を制御する

    西田 崇, 久保田 聡, 服部 高子, 滝川 正春, Bonewald L.F.

    Journal of Oral Biosciences Supplement   2015   231 - 231   2015.9

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  • Role of CCN2 in Amino Acid Metabolism of Chondrocytes.

    Murase Y, Hattori T, Aoyama E, Nishida T, Maeda-Uematsu A, Kawaki H, Lyons KM, Sasaki A, Takigawa M, Kubota S

    J Cell Biochem   151 - 155   2015

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  • CCN3の抗線維化効果に伴うCCNファミリー遺伝子発現プロファイルの変化

    アブド・エル・ケーダー・タレック, 久保田 聡, ジャヌネ・ダニーロ, 西田 崇, 服部 高子, 青山 絵理子, 窪木 拓男, 滝川 正春

    岡山歯学会雑誌   32 ( 2 )   83 - 83   2013.12

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  • CCN3の抗線維化効果に伴うCCNファミリー遺伝子発現プロファイルの変化

    Danilo Janune, El Kader Tarek Abd, 久保田 聡, 西田 崇, 服部 高子, 青山 絵里子, 窪木 拓男, 滝川 正春

    Journal of Oral Biosciences Supplement   2013   126 - 126   2013.9

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  • 軟骨細胞と変形性関節症モデルを用いたCCN2各モジュールの組織再生効果の評価

    El Kader Tarek Abd, 久保田 聡, 西田 崇, 服部 高子, 青山 絵里子, Danilo Janune, 窪木 拓男, 滝川 正春

    Journal of Oral Biosciences Supplement   2013   123 - 123   2013.9

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  • CCNファミリー遺伝子の発現プロフィールの操作を介したCCN3の線維化抑制作用の理解(Understanding the anti-fibrotic role of CCN3 through manipulation of CCN family gene expression profile)

    El Kader Tarek Abd, Kubota Satoshi, Janune Danilo, Nishida Takashi, Hattori Takako, Aoyama Eriko, Perbal Bernard, Kuboki Takuo, Takigawa Masaharu

    日本生化学会大会プログラム・講演要旨集   86回   1T11a - 15   2013.9

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  • 軟骨細胞の代謝の基本を支えるCCN2の重要性(Essential role of CCN2 that supports the basal energy metabolism in chondrocytes)

    前田 彩, 久保田 聡, 三宅 由晃, 河田 かずみ, 服部 高子, 西田 崇, 森谷 徳文, 川木 晴美, カレン・ライアン, 飯田 征二, 滝川 正春

    日本生化学会大会プログラム・講演要旨集   86回   2T06a - 15   2013.9

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  • CCNファミリー研究のメルティングポット CCN2は軟骨細胞のエネルギー代謝に重要である

    前田 彩, 久保田 聡, 川木 晴美, 河田 かずみ, 三宅 由晃, 服部 高子, 西田 崇, 森谷 徳文, 飯田 征二, 滝川 正春

    Journal of Oral Biosciences Supplement   2013   95 - 95   2013.9

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  • The CCN2-inducer harmine promotes chondrogenesis and protects against TNFα-induced ablation of chondrocytic phenotype Reviewed

    Hara, E.S, M. Ono, S. Kubota, W. Sonoyama, Y. Oida, T. Hattori, T. Nishida, T. Furumatsu, T. Ozaki, M. Takigawa, T. Kuboki

    Biochimie   95   374 - 381   2013

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  • CCN2非依存性モジュールの軟骨再生能力(Cartilage regeneration potential of CCN2 independent modules)

    El Kader Tarek Abd, Kubota Satoshi, Nishida Takashi, Hattori Takako, Aoyama Eriko, Janune Danilo, Kuboki Takuo, Takigawa Masaharu

    日本再生歯科医学会誌   10 ( 1 )   50 - 50   2012.12

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  • CCN2/CTGF欠損が軟骨細胞のエネルギー代謝に及ぼす影響

    前田 彩, 久保田 聡, 服部 高子, 西田 崇, 飯田 征二, 滝川 正春

    Journal of Oral Biosciences Supplement   2012   96 - 96   2012.9

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  • 軟骨細胞と骨芽細胞に対するCCN2独立モジュールの影響(Effects of CCN2 independent modules on chondrocytic and osteoblastic cells)

    El Kader Tarek Abd, Kubota Satoshi, Nishida Takashi, Hattori Takako, Aoyama Eriko, Janune Danilo, Kuboki Takuo, Takigawa Masaharu

    日本骨代謝学会学術集会プログラム抄録集   30回   232 - 232   2012.7

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  • Role of LRP1 in transport of CCN2 protein in chondrocytes. Reviewed

    Kawata K, Kubota S, Eguchi T, Aoyama E, Moritani NH, Kondo S, Nishida T, Takigawa M

    Journal of cell science   125 ( Pt 12 )   2965 - 2972   2012.6

  • CCN2/CTGFとCCN3/NOVのヘテロおよびホモダイマー形成が軟骨細胞の基質合成に及ぼす役割

    星島 光博, 服部 高子, 西田 崇, 山城 隆, 滝川 正春

    Journal of Oral Biosciences   53 ( Suppl. )   141 - 141   2011.9

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  • CCN2/CTGFとCCN3/NOVのヘテロダイマー、およびCCN2のホモダイマー形成が軟骨細胞の基質合成に及ぼす役割

    星島 光博, 服部 高子, 青山 絵理子, 西田 崇, 山城 隆, 滝川 正春

    日本骨代謝学会学術集会プログラム抄録集   29回   247 - 247   2011.7

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  • 軟骨細胞に対する、CCN2モジュールの単独・結合下での影響に関する評価(Evaluation of independent and combinational effect of CCN2 modules on chondorocytic cells)

    El Kdaer Tarek Abd, Kubota Satoshi, Nishida Takashi, Hattori Takako, Aoyama Eriko, Janune Danilo, Kuboki Takuo, Takigawa Masaharu

    日本骨代謝学会学術集会プログラム抄録集   29回   248 - 248   2011.7

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  • CCN2/CTGFのホモダイマー形成、およびCCN3/NOVとのヘテロダイマーの形成と、それらが軟骨細胞の基質合成に及ぼす役割

    星島 光博, 服部 高子, 青山 絵理子, 西田 崇, 山城 隆, 滝川 正春

    日本生化学会大会・日本分子生物学会年会合同大会講演要旨集   83回・33回   2P - 0101   2010.12

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  • FGF2刺激による軟骨細胞増殖促進及びMMP13酵素活性上昇に与えるCCN2/CTGFの影響

    西田 崇, 粕山 拓郎, 前田 あずさ, 青山 絵理子, 久保田 聡, 滝川 正春

    日本生化学会大会・日本分子生物学会年会合同大会講演要旨集   83回・33回   1P - 0291   2010.12

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  • CCN1遺伝子転写後調節に関与するmiRNAの機能解析

    住吉 久美, 久保田 聡, 西田 崇, 山城 隆, 滝川 正春

    Journal of Oral Biosciences   52 ( Suppl )   133 - 133   2010.9

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  • CCN2/CTGFのホモダイマー形成、およびCCN3/NOVとのヘテロダイマーの形成とそれらの軟骨細胞における生理作用

    星島 光博, 服部 高子, 青山 絵理子, 西田 崇, 山城 隆, 滝川 正春

    日本骨代謝学会学術集会プログラム抄録集   28回   260 - 260   2010.7

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  • CCN2/CTGFとCCN2/CTGFおよびCCN3/NOVとの結合とそれらの相互作用の解析

    星島 光博, 服部 高子, 青山 絵理子, 西田 崇, 山城 隆, 滝川 正春

    岡山歯学会雑誌   29 ( 1 )   74 - 74   2010.6

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  • Identification of miR-1 as a micro RNA that supports late-stage differentiation of growth cartilage cells

    Sumiyoshi K, Kubota S, Ohgawara T, Kawata K, Nishida T, Shimo T, Yamashiro T, Takigawa M

    Biochem Biophys Res Commun   402 ( 286 )   290   2010

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  • 低密度リポタンパク受容体関連タンパク-1(LRP1)の軟骨細胞分化における多面的作用機構

    河田 かずみ, 久保田 聡, 江口 傑徳, 青山 絵理子, 森谷 徳文, 近藤 誠二, 西田 崇, 皆木 省吾, 滝川 正春

    日本生化学会大会プログラム・講演要旨集   82回   4T4p - 9   2009.9

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  • 低密度リポタンパク受容体関連タンパク-1(LRP1)の軟骨細胞分化における機能とその作用機構

    河田 かずみ, 久保田 聡, 江口 傑徳, 青山 絵理子, 森谷 徳文, 近藤 誠二, 西田 崇, 皆木 省吾, 滝川 正春

    日本骨代謝学会学術集会プログラム抄録集   27回   179 - 179   2009.7

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  • CCNファミリー2/結合組織成長因子(CCN2/CTGF)はDC-STAMPの遺伝子発現レベルの上昇を介して破骨細胞形成を促進する

    西田 崇, 江村 憲資, 久保田 聡, 前田 あずさ, 滝川 正春

    日本骨代謝学会学術集会プログラム抄録集   27回   216 - 216   2009.7

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  • CCN2/CTGFとBMP-2の相互作用が軟骨細胞の増殖と分化を制御する

    西田 崇, 前田 あずさ, 青山 絵理子, 久保田 聡, 窪木 拓男, Lyons Karen, 滝川 正春

    日本生化学会大会・日本分子生物学会年会合同大会講演要旨集   81回・31回   3T13 - 4   2008.11

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  • CCN2/CTGFによるBMP-2の軟骨細胞増殖・分化促進作用の制御

    前田 あずさ, 西田 崇, 青山 絵理子, 川木 晴美, 久保田 聡, 窪木 拓男, ライアン・カレン, 滝川 正春

    日本骨代謝学会学術集会プログラム抄録集   26回   234 - 234   2008.10

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  • CCNファミリー2/結合組織成長因子(CCN2/CTGF)が骨芽細胞において骨形成因子(BMP)-2刺激による骨芽細胞分化を修飾する

    前田 あずさ, 西田 崇, 川木 晴美, 久保田 聡, 窪木 拓男, 滝川 正春

    岡山歯学会雑誌   27 ( 1 )   63 - 64   2008.6

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  • 軟骨細胞におけるCCNファミリー2/結合組織成長因子(CCN2/CTGF)のオートクリン発現メカニズムの解明

    西田 崇, 前田 あずさ, 久保田 聡, 滝川 正春

    日本生化学会大会・日本分子生物学会年会合同大会講演要旨集   80回・30回   4T15 - 10   2007.11

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  • ウサギ半月板細胞におけるCCNファミリー2/結合組織成長因子(CCN2/CTGF)発現に与えるメカニカルストレスの影響

    前田 あずさ, 西田 崇, 川木 晴美, 久保田 聡, 窪木 拓男, 滝川 正春

    日本骨代謝学会学術集会プログラム抄録集   25回   237 - 237   2007.6

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  • ハイドロキシアパタイトを援用した骨再生におけるCCN2/CTGFの効果

    大島 正充, 大野 充昭, 久保田 聡, 藤澤 拓生, 園山 亘, 秋山 謙太郎, 川木 晴美, 西田 崇, 滝川 正春, 窪木 拓男

    日本骨代謝学会学術集会プログラム抄録集   25回   254 - 254   2007.6

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  • 軟骨細胞におけるCCNファミリー2/結合組織成長因子(CCN2/CTGF)によるVEGF遺伝子発現制御機構の解明

    西田 崇, 前田 あずさ, 川木 晴美, 久保田 聡, Lyons Karen, 滝川 正春

    日本骨代謝学会学術集会プログラム抄録集   25回   182 - 182   2007.6

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  • 結合組織成長因子CCN2/CTGFによる骨髄由来間質細胞の細胞接着、遊走の亢進とシグナル伝達経路の活性化

    大野 充昭, 藤澤 拓生, 久保田 聡, 園山 亘, 秋山 謙太郎, 西田 崇, 滝川 正春, 窪木 拓男

    日本骨代謝学会学術集会プログラム抄録集   24回   248 - 248   2006.7

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  • 低酸素組織,軟骨における肥大軟骨特異的蛋白24/結合組織成長因子/CCNファミリー2mRNAの安定化機構 核および細胞質タンパク結合を介した3'-非翻訳領域(UTR)の関与

    近藤 誠二, 久保田 聡, 椋代 義樹, 森谷 徳文, 西田 崇, 菅原 利夫, 滝川 正春

    日本骨代謝学会学術集会プログラム抄録集   23回   159 - 159   2005.6

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  • 結合組織成長因子CCN2/CTGF/Hcs24はヒト骨髄由来間質細胞の細胞接着を促進させる

    大野 充昭, 園山 亘, 藤澤 拓生, 秋山 謙太郎, 前川 賢治, 完山 学, 西田 崇, 久保田 聡, 滝川 正春, 窪木 拓男

    日本骨代謝学会学術集会プログラム抄録集   23回   225 - 225   2005.6

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  • Roles of CCN2/CTGF in the control of growth and regeneration.

    Takigawa, M, Nishida, T, Kubota, S

    In CCN Proteins: A New Family of Cell Growth and Differentiation Regulators (Perbal B. & Takigawa M. eds.)   19 - 59   2005

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  • Expression and localization of connective tissue growth factor (CTGF/Hcs24/CCN2) in osteoarthritic cartilage. Reviewed

    Omoto S, Nishida K, Yamaai Y, Shibahara M, Nishida T, Doi T, Asahara H, Nakanishi T, Inoue H, Takigawa M

    Osteoarthritis and cartilage   12 ( 10 )   771 - 8   2004.10

  • Regeneration of defects in articular cartilage in rat knee joints by CCN2 (connective tissue growth factor). International journal

    Takashi Nishida, Satoshi Kubota, Shunji Kojima, Takuo Kuboki, Kyouji Nakao, Toshihiro Kushibiki, Yasuhiko Tabata, Masaharu Takigawa

    Journal of bone and mineral research : the official journal of the American Society for Bone and Mineral Research   19 ( 8 )   1308 - 19   2004.8

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    UNLABELLED: CTGF/CCN2, a hypertrophic chondrocyte-specific gene product, possessed the ability to repair damaged articular cartilage in two animal models, which were experimental osteoarthritis and full-thickness defects of articular cartilage. These findings suggest that CTGF/CCN2 may be useful in regeneration of articular cartilage. INTRODUCTION: Connective tissue growth factor (CTGF)/CCN2 is a unique growth factor that stimulates the proliferation and differentiation, but not hypertrophy, of articular chondrocytes in vitro. The objective of this study was to investigate the therapeutic use of CTGF/CCN2. MATERIALS AND METHODS: The effects of recombinant CTGF/CCN2 (rCTGF/CCN2) on repair of damaged cartilage were evaluated by using both the monoiodoacetic acid (MIA)-induced experimental rat osteoarthritis (OA) model and full-thickness defects of rat articular cartilage in vivo. RESULTS: In the MIA-induced OA model, quantitative real-time RT-PCR assays showed a significant increase in the level of CTGF/CCN2 mRNA, and immunohistochemical analysis and in situ hybridization revealed that the clustered chondrocytes, in which clustering indicates an attempt to repair the damaged cartilage, produced CTGF/CCN2. Therefore, CTGF/CCN2 was suspected to play critical roles in cartilage repair. In fact, a single injection of rCTGF/CCN2 incorporated in gelatin hydrogel (rCTGF/CCN2-hydrogel) into the joint cavity of MIA-induced OA model rats repaired their articular cartilage to the extent that it became histologically similar to normal articular cartilage. Next, to examine the effect of rCTGF/CCN2 on the repair of articular cartilage, we created defects (2 mm in diameter) on the surface of articular cartilage in situ and implanted rCTGF/CCN2-hydrogel or PBS-hydrogel therein with collagen sponge. In the group implanted with rCTGF/CCN2-hydrogel collagen, new cartilage filled the defect 4 weeks postoperatively. In contrast, only soft tissue repair occurred when the PBS-hydrogel collagen was implanted. Consistent with these in vivo effects, rCTGF/CCN2 enhanced type II collagen and aggrecan mRNA expression in mouse bone marrow-derived stromal cells and induced chondrogenesis in vitro. CONCLUSION: These findings suggest the utility of CTGF/CCN2 in the regeneration of articular cartilage.

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  • Reduction in connective tissue growth factor by antisense treatment ameliorates renal tubulointerstitial fibrosis

    Hideki Yokoi, Masashi Mukoyama, Tetsuya Nagae, Kiyoshi Mori, Takayoshi Suganami, Kazutomo Sawai, Tetsuro Yoshioka, Masao Koshikawa, Takashi Nishida, Masaharu Takigawa, Akira Sugawara, Kazuwa Nakao

    Journal of the American Society of Nephrology   15 ( 6 )   1430 - 1440   2004.6

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    Connective tissue growth factor (CTGF/CCN2) is one of the candidate factors mediating fibrogenic activity of TGF-β. It was shown previously that the blockade of CTGF by antisense oligonucleotide (ODN) inhibits TGF-β-induced production of fibronectin and type I collagen in cultured renal fibroblasts. The in vivo contribution of CTGF in renal interstitial fibrosis, however, remains to be clarified. With the use of a hydrodynamics-based gene transfer technique, the effects of CTGF antisense ODN are investigated in rat kidneys with unilateral ureteral obstruction (UUO). FITC-labeled ODN injection via the renal vein showed that the ODN was specifically introduced into the interstitium. At day 7 after UUO, the gene expression of CTGF, fibronectin, fibronectin ED-A, and α1(I) collagen in untreated or control ODN-treated obstructed kidneys was prominently upregulated. CTGF antisense ODN treatment, by contrast, markedly attenuated the induction of CTGF, fibronectin, fibronectin ED-A, and α1(I) collagen genes, whereas TGF-β gene upregulation was not affected. The antisense treatment also reduced interstitial deposition of CTGF, fibronectin ED-A, and type I collagen and the interstitial fibrotic areas. The number of myofibroblasts determined by the expression of α-smooth muscle actin was significantly decreased as well. Proliferation of tubular and interstitial cells was not altered with the treatment. These findings indicate that CTGF expression in the interstitium plays a crucial role in the progression of interstitial fibrosis but not in the proliferation of tubular and interstitial cells during UUO. CTGF may become a potential therapeutic target against tubulointerstitial fibrosis.

    DOI: 10.1097/01.ASN.0000130565.69170.85

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  • Differential regulation of biglycan and decorin synthesis by connective tissue growth factor in cultured vascular endothelial cells. Reviewed

    Kaji, T, Yamamoto, C, Oh-i, M, Nishida, T, Takigawa, M

    BIOCHEMICAL AND BIOPHYSICAL RESEARCH COMMUNICATIONS   322   22 - 28   2004

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  • Development of the Dentin Regeneration Therapy : Expression of osteonectin induced by CTGF in human cultured dental pulp cells

    SHIMIZU Hirotoshi, NISHITANI Yoshihiro, YAMADA Tomiko, NISHIDA Takashi, TAKIGAWA Masaharu, YOSHIYAMA Masahiro

    Journal of the Japanese Association of Regenerative Dentistry   1 ( 1 )   54 - 66   2003.12

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    In the concept of minimal intervention (MI), it is an urgent necessity for us to develop the new therapy of pulp capping and hard tissue regeneration. Recent studies showed the therapy using Ca(OH)2, or/and adhesive resins or some antibiotics mixture. In this study, to develop the new method of biological pulp capping, we used Connective Tissue Growth Factor (CTGF). To elucidate the ability of CTGF for cell proliferation and tissue mineralization, we immunohistologically analyzed the expression of osteonectin. Normal human pulp cells were stimulated by CTGF in culture medium for several hours, and analyzed the expression of osteonectin by immunohistochemical staining. Osteonectin, which is one of extra celluler matrix proteins and indicators of tissue mineralization, was expressed 96 hours after stimulation of CTGF. These results showed that CTGF is extremely useful for the establishment of the biological dentin regeneration therapy.

    DOI: 10.11223/jard.1.54

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  • CTGF/Hcs24, hypertrophic chondrocyte-specific gene product, interacts with perlecan in regulating the proliferation and differentiation of chondrocytes Reviewed

    T Nishida, S Kubota, T Fukunaga, S Kondo, G Yosimichi, T Nakanishi, T Takano-Yamamoto, M Takigawa

    JOURNAL OF CELLULAR PHYSIOLOGY   196 ( 2 )   265 - 275   2003.8

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    Connective tissue growth factor/hypertrophic chondrocyte-specific gene product 24 (CTGF/Hcs24) plays important roles in the control of the proliferation and differentiation of chondrocytes in vitro. To clarify the mechanisms of regulation by CTGF/Hcs24 with respect to cartilage metabolism, we investigated the interaction between CTGF/Hcs24 and heparan sulfate proteoglycan perlecan. An immunofluorescence study showed that CTGF/Hcs24 was colocalized with heparan sulfate and perlecan in human chondrosarcoma-derived chondrocytic cell line HCS-2/8 in vitro. Northern blot analysis showed that perlecan, syndecan-1, -2, and -4 transcripts were detected in HCS-2/8 cells. Particularly, expression of the perlecan gene increased markedly in HCS-2/8 cells by recombinant CTGF/Hcs24 (rCTGF/Hcs24) treatment. We also found that CTGF/Hcs24 interacted with perlecan from HCS-2/8 cells in vitro. Furthermore, CTGF/Hcs24-stimulated gene expression of the aggrecan gene, as well as DNA/proteoglycan synthesis, was diminished when HCS-2/8 cells were pretreated with heparinase, indicating that the effects of CTGF/Hcs24 on chondrocytes occurred through the interaction between CTGF/Hcs24 and heparan sulfate on the cells. An in vivo study using mouse growth plate revealed that CTGF/Hcs24 produced by hypertrophic chondrocytes was localized from the proliferative to the hypertrophic zone, whereas perlecan was predominantly localized in the prehyphertrophic zone. Consistent with such findings in vivo, the binding of I-125-rCTGF/Hcs24 to maturing chondrocytes was at higher levels than that to chondrocytes in hypertrophic stages. These findings suggest that CTGF/Hcs24 produced in the hypertrophic region may act on chondrocytes in the proliferative and maturative zone via some heparan sulfate proteoglycan, such as perlecan. (C) 2003 Wiley-Liss, Inc.

    DOI: 10.1002/jpc.10277

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  • Regeneration of defects in the articular cartilage in rat knee joints by connective tissue growth factor/hypertrophic chondrocyte-specific gene product 24 (CTGF/Hcs24)

    T Nishida, S Kubota, S Kojima, T Kuboki, T Kushibiki, Y Tabata, M Takigawa

    BONE   32 ( 5 )   S101 - S101   2003.5

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  • 軟骨細胞におけるチロシンキナーゼ型レセプターErbB4遺伝子の発現

    縄稚 久美子, 久保田 聡, 井上 美穂, 西田 崇, 吉道 玄, 中西 徹, 完山 学, 窪木 拓男, 矢谷 博文, 山合 友一郎, 滝川 正春

    日本骨形態計測学会雑誌   12 ( 3 )   63 - 63   2002.12

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  • 軟骨細胞におけるチロシンキナーゼ型レセプターErbB4遺伝子の発現

    縄稚 久美子, 久保田 聡, 井上 美穂, 西田 崇, 吉道 玄, 中西 徹, 完山 学, 窪木 拓男, 矢谷 博文, 山合 友一郎, 滝川 正春

    生化学   74 ( 11 )   1413 - 1413   2002.11

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  • ヒト口腔扁平上皮癌細胞株における結合組織成長因子(CTGF)の腫瘍細胞増殖抑制効果

    森谷 徳文, 久保田 聡, 近藤 誠二, 西田 崇, 川木 晴美, 菅原 利夫, 滝川 正春

    歯科基礎医学会雑誌   44 ( 5 )   395 - 395   2002.9

  • 結合組織成長因子CTGF/Hcs24は細胞内で細胞骨格蛋白質と結合する

    吉道 玄, 久保田 聡, 服部 高子, 西田 崇, 縄稚 久美子, 中西 徹, 山本 照子, 滝川 正春

    生化学   74 ( 8 )   797 - 797   2002.8

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  • 軟骨由来軟骨成長因子(CTGF/Hcs24)を用いた関節軟骨再生療法の検討

    小島 俊司, 西田 崇, 小森 千尋, 藤沢 拓生, 窪木 拓男, 矢谷 博文, 中西 徹, 滝川 正春

    日本顎関節学会雑誌   14 ( 1 )   81 - 81   2002.4

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  • 骨格成長と骨折治癒過程におけるCTGF/Hcs24の遺伝子発現

    滝川 正春, 中西 徹, 西田 崇, 縄稚 久美子, 中田 英二

    厚生労働省特定疾患対策研究事業研究報告書 脊柱靭帯骨化症に関する調査研究班   平成13年度   69 - 76   2002.3

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    肥大軟骨細胞由来の成長因子CTGF/Hcs24の生理的,病理的役割を解明するため,胎生10,15,17日齢,生後1日齢のマウスを用いて骨格成長過程と骨折治癒過程におけるCTGF/Hcs24の遺伝子発現について検討した.マウス胎生期における発現は,胎生7日の初期に高く,胎生10日で一旦低下した後,胎生15日〜17日で再び増強した.マウスでは多くの内軟骨性骨化が胎生13日で始まることから,後期の遺伝子発現は内軟骨性骨化と関連すると考えられるが,初期の遺伝子発現の亢進は幼若細胞の分化と関連すると考えられた.また,CTGF/Hcs24は骨折治癒過程においても肥大軟骨細胞から産生され肥大軟骨細胞層を中心として軟骨細胞層全体に存在することが明らかとなり,CTGF/Hcs24は軟骨細胞にとってオートクリン・パラクリン因子であることが明らかとなった.更に,骨折後初期において,増殖しつつある骨膜細胞や血管内皮細胞にも発現していることから,組織再生の際には肥大軟骨細胞だけでなく種々の細胞が発現・産生する因子であることが示唆された

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  • CTGF/Hcs24, a hypertrophic chondrocyte specific gene product, stimulates the proliferation and expression of the cartilage phenotype but not hypertrophy or calcification or articular cartilage in culture.

    Nishida T, Kubota S, Nakanishi T, Kuboki T, Yosimichi G, Kondo S, Takigawa M

    J Cell Physiol   192,   55 - 63   2002

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  • In vitro及びin vivoにおける肥大軟骨細胞由来の成長因子CTGF/Hcs24の関節軟骨細胞に対する作用

    西田 崇, 中西 徹, 久保田 聡, 吉道 玄, 近藤 誠二, 滝川 正春

    日本骨代謝学会雑誌   19 ( 2 )   30 - 30   2001.7

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  • 骨・軟骨の発生過程における軟骨由来成長因子CTGF/Hcs24の発現とCbfa1によるその制御

    中西 徹, 浅野 将宏, 縄稚 久美子, 山合 友一郎, 小守 寿文, 西田 崇, 吉道 玄, 久保田 聡, 服部 高子, 滝川 正春

    生化学   71 ( 8 )   1033 - 1033   1999.8

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  • Demonstration of receptors for epidermal growth factor on cultured rabbit chondrocytes and regulation of their expression by various growth and differentiation factors. Reviewed

    Nishida,T, Nakanishi,T, Shimo,T, Asano,M, Hattori,T, Tamatani,T, Tezuka,K, Takigawa,M

    Biochem.Biophys.Res.Commun.   183   14 - 20   1998

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Books

  • Novel Cell Biological Assays for Measuring Bone Remodeling Activities of CCN Proteins

    Nishida, T, Takigawa, M, Kubota, S( Role: Joint author)

    Springer  2022.12 

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  • Cell biological assays for measuring chondrogenic activities of CCN2 protein

    Nishida, T., Kubota, S. and Takigawa, M.( Role: Joint author)

    Springer  2016 

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    Responsible for pages:1489, 219-237   Language:English

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  • Production of recombinant CCN2 protein by mammalian cells

    Nishida T, Kubota S, Takigawa M.( Role: Joint author)

    Springer  2016 

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    Responsible for pages:1489, 95-105,   Language:English

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  • CCN2による骨細胞機能を標的とした新規骨粗鬆症治療薬の開発

    科学研究費助成事業  2016 

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  • In vivo evaluation of cartilage regenerative effects of CCN2 protein.

    Nishida T, Kubota S, Takigawa M.( Role: Joint author)

    Springer  2016 

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    Responsible for pages:1489, 273-282   Language:English

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  • セロトニン及びCCN2 刺激した関節軟骨細胞シートによる損傷関節軟骨の修復効果の検討

    西田 崇( Role: Sole author)

    武田科学振興財団  2016 

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  • Effect of CCN2 on the osteocyte function regulating the osteoclast formation and its possibility as a novel drug of osteoporosis

    ( Role: Joint author)

    2016 

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  • 骨伸長促進効果を有する結合組織成長因子CTGF/CCN2の低身長治療への応用のための基礎研究.

    ( Role: Joint author)

    The Foundation for Growth Science  2014 

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  • CCN Proteins : A New Family of Cell Growth and Differentiation Regulators

    Takigawa M, Nishida T and Kubota S(Roles of CCN2/CTGF in the control of growth and regeneration.)

    Imperial College Press ,London  2005 

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    Responsible for pages:pp19-59  

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  • 遺伝子医学別冊「ドラッグデリバリーシステム、DDS技術の新たな展開とその活用法」

    西田 崇、 滝川正春(細胞増殖因子を用いた組織再生療法 5)細胞増殖因子を用いた軟骨組織再生療法.)

    メディカルドウ社 ,東京  2003 

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    Responsible for pages:pp154-160  

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  • 第4回生体組織工学シンポジウム

    西田 崇、小島俊司、久保田 聡、窪木拓男、田畑泰彦、櫛引俊宏、滝川正春(骨軟骨組織修復における結合組織成長因子 CTGF/Ecogeninの役割. Effects of connective tissue growth factor (CTGF/Ecogenin) on the repair of bone and cartilage tissues.)

    2002 

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    Responsible for pages:pp107-121  

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MISC

  • 軟骨細胞におけるCCN2の核移行の意義

    西田 崇, 滝川正春, 久保田聡

    第14回日本CCNファミリー研究会   2023.9

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  • 軟骨細胞におけるCCN2由来circRNAの発現とその機能の可能性

    加藤壮真, 河田かずみ, 西田 崇, 滝川正春, 久保田聡

    第65回歯科基礎医学会   2023.9

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  • CCN6はBMP2による口腔がん細胞の上皮・間葉転換をコントロールする。

    芳地浩彰, 久保田聡, 滝川正春, 西田 崇

    第14回日本CCNファミリー研究会   2023.9

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  • 軟骨細胞におけるCCN2由来circRNAの発現とその機能の検証

    加藤壮真, 河田かずみ, 西田 崇, 水川朋美, 滝川正春, 飯田征二, 久保田聡

    第14回日本CCNファミリー研究会   2023.9

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  • 軟骨細胞における CCN2 由来 circRNA の発現および機能の探索

    加藤壮真, 河田かずみ, 西田 崇, 水川朋美, 滝川正春, 久保田聡

    第41回日本骨代謝学会   2023.7

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  • BMP2 及び RANKL への結合を介した口腔がん細胞の骨転移に対するCCN6の2つの作用

    芳地浩彰, 久保田聡, 滝川正春, 西田 崇

    第55回日本結合組織学会   2023.6

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  • 線維化におけるCCN2の転写共役様因子としての作用

    西田 崇, 辰川ひなた, 滝川正春, 久保田聡

    第55回日本結合組織学会   2023.6

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  • 軟骨細胞におけるCCN2由来環状RNAの探索とその機能

    加藤壮真, 河田かずみ, 水川朋美, 西田 崇, 久保田聡

    第35回日本軟骨代謝学会   2023.3

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  • 口腔がん細胞の上皮間葉転換に与えるCCN6とBMP2の作用

    芳地浩彰, 西田 崇, 滝川正春, 久保田聡

    第43回岡山歯学会   2022.12

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  • DO NOT OVERWORK: CCN3 FOR LIFE IN CARTILAGE.

    Kubota S, Kawaki H, Perbal B, Takigawa M, Kawata K, Hattori1 T, Nishida, T

    2022.10

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  • Induction of non-coding RNA and promotion of chondrocyte differentiation by metformin

    近藤星, 服部高子, 桑原実穂, FU Shanqi, 西田崇, 薬師寺翔太, 吉岡洋祐, 森谷徳文, 飯田征二, 滝川正春, 久保田聡

    日本軟骨代謝学会プログラム・抄録集   34th   2022

  • Metformin regulates expression of long non-coding RNA, UCA1 and CCN2 in chondrocytes

    日本分子生物学会年会プログラム・要旨集(Web)   45th   2022

  • CCN6は口腔がん細胞の上皮間葉転換と破骨細胞形成を抑制する(CCN6 suppresses epithelial-mesenchymal transition of oral cancercells and osteoclast formation)

    芳地 浩彰, 西田 崇, 滝川 正春, 久保田 聡

    Journal of Oral Biosciences Supplement   2021   250 - 250   2021.10

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  • non-coding RNAを介したメトホルミンの抗線維化作用の解析

    近藤 星, 服部 高子, 桑原 実穂, Fu Shanqi, 西田 崇, 吉岡 洋祐, 森谷 徳文, 飯田 征二, 滝川 正春, 久保田 聡

    日本口腔科学会雑誌   70 ( 2 )   134 - 134   2021.7

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  • Metformin promotes chondrocyte differentiation, which is accompanied by UCA1 induction.

    近藤星, 近藤星, 服部高子, 桑原実穂, FU Shanqi, 西田崇, 吉岡洋祐, 森谷徳文, 飯田征二, 滝川正春, 久保田聡

    日本分子生物学会年会プログラム・要旨集(Web)   44th   2021

  • メトホルミンのUCA1誘導および軟骨細胞分化促進作用

    近藤星, 近藤星, 服部高子, 桑原実穂, FU Shanqi, 西田崇, 吉岡洋祐, 森谷徳文, 飯田征二, 滝川正春, 久保田聡

    日本生化学会大会(Web)   94th   2021

  • CCN6の破骨細胞形成における阻害作用

    西田崇, 西田崇, 芳地浩彰, 青山絵理子, 滝川正春, 久保田聡

    日本骨代謝学会学術集会プログラム抄録集(CD-ROM)   39th   2021

  • LIPUSによる脂肪細胞分化の抑制と骨芽細胞分化への影響

    西田 崇, 滝川 正春, 久保田 聡, 長尾 有里香, 橋谷 智子, 山中 信康

    日本骨代謝学会学術集会プログラム抄録集   38回   143 - 143   2020.10

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  • 軟骨細胞におけるエネルギー代謝不全時でのCCN3増産システムの解明

    水川 朋美, 西田 崇, 明石 翔, 上岡 寛, 滝川 正春, 久保田 聡

    日本骨代謝学会学術集会プログラム抄録集   38回   134 - 134   2020.10

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  • ヒトの関節軟骨における周期的遺伝子発現に対するメラトニンの影響(Effect of melatonin on rhythmic gene expression in human articular cartilage)

    フシャンキ, 桑原 実穂, 内田 瑶子, 近藤 星, 西田 崇, 池亀 美華, 久保田 聡, 服部 高子

    日本骨代謝学会学術集会プログラム抄録集   38回   141 - 141   2020.10

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  • CCN2の核移行による線維化の制御

    西田 崇, 滝川 正春, 久保田 聡

    Journal of Oral Biosciences Supplement   2020   183 - 183   2020.9

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  • ヒト関節軟骨細胞における周期的遺伝子発現に対するメラトニンの影響(Effect of melatonin on rhythmic gene expression in human articular chondrocytes)

    Fu Shanqi, 桑原 実穂, 内田 瑶子, 林 大智, 下村 侑司, 高垣 安紗美, 西田 崇, 中田 英二, 古松 毅之, 近藤 星, 丸山 雄介, 服部 淳彦, 久保田 聡, 服部 高子

    日本生化学会大会プログラム・講演要旨集   93回   [2Z12 - 484)]   2020.9

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  • 脂肪細胞分化に対する低出力パルス超音波(LIPUS)の抑制メカニズムの解明

    橋谷 智子, 西田 崇, 長尾 有里香, 滝川 正春, 久保田 聡

    Journal of Oral Biosciences Supplement   2019   418 - 418   2019.10

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  • 低出力性パルス超音波(LIPUS)による脂肪細胞分化の多面的抑制機構

    西田 崇, 長尾 有里香, 橋谷 智子, 山中 信康, 滝川 正春, 久保田 聡

    日本生化学会大会プログラム・講演要旨集   92回   [1P - 057]   2019.9

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  • 軟骨細胞は松果体由来のメラトニン刺激で概日リズムを持ってメラトニンを産生し、増殖を促進し、肥大化を抑制する

    Fu Shanqi, 桑原 実穂, 内田 瑶子, 近藤 星, 西田 崇, 池亀 美華, 久保田 聡, 服部 高子

    日本骨代謝学会学術集会プログラム抄録集   37回   207 - 207   2019.9

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  • Angiotensin IIによる軟骨変性作用とそのCCN2による制御機構

    西田 崇, 滝川 正春, 久保田 聡, 横井 秀基, 向山 政志

    日本骨代謝学会学術集会プログラム抄録集   37回   189 - 189   2019.9

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  • 長鎖(約6kb)IssODNおよびCRISPR/Cas9を用いたヒト科霊長類特異的IncRNAのマウス受精卵へのエレクトロポレーションによるノックインの試み

    近藤 星, 桑原 実穂, Fu Shanqi, 武内 聡子, 池田 健司, 石川 崇典, 大野 充昭, 西田 崇, 久保田 聡, 服部 高子

    日本生化学会大会プログラム・講演要旨集   92回   [2T12m - 06]   2019.9

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  • 低出力パルス超音波(LIPUS)の半月板修復効果とその作用機序-CCN2/CTGFの関与

    青山絵理子, 西田崇, 西田崇, 久保田聡, 滝川正春

    Journal of Oral Biosciences Supplement (Web)   2019   2019

  • Analysis of Ca2+ response of osteocyte network by three-dimensional time-lapse imaging in living bone.

    Tomoyo Tanaka, Mitsuhiro Hoshijima, Junko Sunaga, Takashi Nishida, Mana Hashimoto, Naoya Odagaki, Ryuta Osumi, Taiji Aadachi, Hiroshi Kamioka

    Journal of bone and mineral metabolism   36 ( 5 )   519 - 528   2018.9

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    Osteocytes form a three-dimensional (3D) cellular network within the mineralized bone matrix. The cellular network has important roles in mechanosensation and mechanotransduction related to bone homeostasis. We visualized the embedded osteocyte network in chick calvariae and observed the flow-induced Ca2+ signaling in osteocytes using 3D time-lapse imaging. In response to the flow, intracellular Ca2+ ([Ca2+]i) significantly increased in developmentally mature osteocytes in comparison with young osteocytes in the bone matrix. To investigate the differences in response between young and developmentally mature osteocytes in detail, we evaluated the expression of osteocyte-related genes using the osteocyte-like cell line MLO-Y4, which was 3D-cultured within type I collagen gels. We found that the c-Fos, Cx43, Panx3, Col1a1, and OCN mRNA levels significantly increased on day 15 in comparison with day 7. These findings indicate that developmentally mature osteocytes are more responsive to mechanical stress than young osteocytes and have important functions in bone formation and remodeling.

    DOI: 10.1007/s00774-017-0868-x

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  • CCN2とRab14の相互作用が骨・軟骨細胞の小胞輸送に及ぼす役割 軟骨分化促進因子CCN2の新たな細胞内機能

    星島 光博, 服部 高子, 青山 絵理子, 西田 崇, 久保田 聡, 上岡 寛, 滝川 正春

    Journal of Oral Biosciences Supplement   2018   448 - 448   2018.9

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  • 軟骨におけるメラトニンとその受容体の日周的合成は軟骨の律動的遺伝子発現に影響を及ぼす(Circadian production of melatonin and its receptors in cartilage influences chondrocyte rhythmic gene expression)

    Fu Shanqi, 桑原 実穂, 内田 瑶子, 林 大智, 下村 侑司, 高垣 安紗美, 西田 崇, 丸山 雄介, 池亀 美華, 服部 淳彦, 服部 高子, 久保田 聡

    日本生化学会大会プログラム・講演要旨集   91回   [1T14m - 250)]   2018.9

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  • 軟骨細胞におけるCCN3遺伝子の糖代謝を介した制御

    明石 翔, 西田 崇, El-Seoudi Abdellatif, 滝川 正春, 飯田 征二, 久保田 聡

    日本生化学会大会プログラム・講演要旨集   91回   [2P - 207]   2018.9

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  • Metabolic regulation of the CCN family genes by glycolysis in chondrocytes. International journal

    Sho Akashi, Takashi Nishida, Abdellatif El-Seoudi, Masaharu Takigawa, Seiji Iida, Satoshi Kubota

    Journal of cell communication and signaling   12 ( 1 )   245 - 252   2018.3

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    The CCN family consists of 6 genes in the mammalian genome and produces multifunctional proteins involved in a variety of biological processes. Recent reports indicate the profound roles of CCN2 in energy metabolism in chondrocytes, and Ccn2 deficiency is known to alter the expression of 2 other family members including Ccn3. However, almost nothing is known concerning the regulation of the CCN family genes by energy metabolism. In order to gain insight into this critical issue, we initially and comprehensively evaluated the effect of inhibition of glycolysis on the expression of all of the CCN family genes in chondrocytic cells. Upon the inhibition of a glycolytic enzyme, repression of CCN2 expression was observed, whereas CCN3 expression was conversely induced. Similar repression of CCN2 was conferred by the inhibition of aerobic ATP production, which, however, did not induce CCN3 expression. In contrast, glucose starvation significantly enhanced the expression of CCN3 in those cells. The results of a reporter gene assay using a molecular construct containing a CCN3 proximal promoter revealed a dose-dependent induction of the CCN3 promoter activity by the glycolytic inhibitor in chondrocytic cells. These results unveiled a critical role of glycolytic activity in the regulation of CCN2 and CCN3, which activity mediated the mutual regulation of these 2 major CCN family members in chondrocytes.

    DOI: 10.1007/s12079-017-0420-8

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  • 半月板に対する低出力パルス超音波(LIPUS)の効果

    釜付祐輔, 釜付祐輔, 青山絵理子, 古松毅之, 前原亜美, 山中信康, 西田崇, 久保田聡, 久保田聡, 尾崎敏文, 滝川正春

    日本軟骨代謝学会プログラム・抄録集   31st   2018

  • LIPUSが半月板に与える効果

    釜付祐輔, 釜付祐輔, 青山絵理子, 古松毅之, 前原亜美, 山中信康, 西田崇, 久保田聡, 久保田聡, 尾崎敏文, 滝川正春

    日本結合組織学会学術大会抄録集   50th   2018

  • CCN2とRab14の相互作用が骨・軟骨細胞の小胞輸送に及ぼす役割

    星島 光博, 服部 高子, 青山 絵理子, 西田 崇, 田中 智代, 久保田 聡, 上岡 寛, 滝川 正春

    生命科学系学会合同年次大会   2017年度   [2P - 0285]   2017.12

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  • 軟骨組織におけるメラトニン合成とその受容体発現は概日リズムを持ち、軟骨細胞の代謝に影響を及ぼす

    服部 高子, Fu Shanqi, 桑原 実穂, 内田 瑶子, 近藤 星, 林 大智, 下村 侑司, 高垣 安紗美, 西田 崇, 丸山 雄介, 池亀 美華, 服部 淳彦, 久保田 聡

    生命科学系学会合同年次大会   2017年度   [2P - 1190]   2017.12

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  • Novel role of CCN3 that maintains the differentiated phenotype of articular cartilage.

    Danilo Janune, Tarek Abd El Kader, Eriko Aoyama, Takashi Nishida, Yasuhiko Tabata, Satoshi Kubota, Masaharu Takigawa

    Journal of bone and mineral metabolism   35 ( 6 )   582 - 597   2017.11

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    Knowledge of the microenvironment of articular cartilage in health and disease is the key to accomplishing fundamental disease-modifying treatments for osteoarthritis. The proteins comprising the CCN Family are matricellular proteins with a remarkable relevance within the context of cartilage metabolism. CCN2 displays a great capability for regenerating articular cartilage, and CCN3 has been shown to activate the expression of genes related to articular chondrocytes and to repress genes related to endochondral ossification in epiphyseal chondrocytes. Moreover, mice lacking CCN3 protein have been shown to display ostearthritic changes in their knee articular cartilage. In this study, we employed a monoiodoacetic acid (MIA)-induced osteoarthritic model to investigate whether osteoarthritic changes in the cartilage are reciprocally accompanied by CCN3 down-regulation and an inducible overexpression system to evaluate the effects of CCN3 on articular chondrocytes in vitro. Finally, we also investigated the effects of exogenous CCN3 in vivo during the early stages of MIA-induced osteoarthritis. We discovered that CCN3 is expressed by articular chondrocytes in normal rat knees, whereas it is rapidly down-regulated in osteoarthritic knees. In vitro, we also discovered that CCN3 increases the proteoglycan accumulation, the gene expression of type II collagen, tenascin-C and lubricin, as well as the protein production of tenascin-C and lubricin in articular chondrocytes. In vivo, it was discovered that exogenous CCN3 increased tidemark integrity and produced an increased production of lubricin protein. The potential utility of CCN3 as a future therapeutic agent and possible strategies to improve its therapeutic functions are also discussed.

    DOI: 10.1007/s00774-016-0793-4

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  • Regulatory mechanism of CCN2 production by serotonin (5-HT) via 5-HT2A and 5-HT2B receptors in chondrocytes. International journal

    Ayaka Hori, Takashi Nishida, Shogo Takashiba, Satoshi Kubota, Masaharu Takigawa

    PloS one   12 ( 11 )   e0188014   2017.11

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    Serotonin (5-hydroxytryptamine: 5-HT) is recognized as a neurotransmitter in the central nerve system and as a regulator of systemic blood pressure in the peripheral tissues. Recently, it was reported that 5-HT2 receptors (5-HT(2)Rs) were expressed in cartilage tissues lacking both vessels and neurons, suggesting possible novel functions of 5-HT during cartilage development and regeneration. Our previous data indicated that CCN family protein 2/connective tissue growth factor (CCN2/CTGF) plays a central role in cartilage development and regeneration. Therefore, the aim of this study was to investigate the effect of 5-HT on the production of CCN2 in chondrocytes. Firstly, we showed that the mRNAs of 5-HT2R subtypes 5-HT2AR and 5-HT2BR, were expressed in a human chondrocytic cell line, HCS-2/8; however, 5-HT2CR mRNA was not detected. In addition, exogenously added 5-HT did not affect the 5-HT2AR and 5-HT2BR expressions. Next, we demonstrated that CCN2 production was increased by treatment with a 5-HT2AR agonist and the combination of 5-HT and 5-HT2BR antagonist. In contrast, treatment with a 5-HT2BR agonist and the combination of 5-HT and 5-HT2AR antagonist decreased CCN2 production. Furthermore, we showed that phosphorylation of Akt and p38 MAPK were increased by treatment with 5-HT2AR agonist, and that phosphorylation of PKC epsilon, PKC zeta, ERK1/2 and JNK were increased by treatment with 5-HT2BR agonist. Finally, we found that 5-HT2AR was localized in the growth plate, whereas 5-HT2BR was localized in the articular cartilage. These findings suggest that 5-HT promotes CCN2 production through the 5-HT2AR in growth plates, and that it represses CCN2 production through the 5-HT2BR in articular cartilage for harmonized development of long bones.

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  • Catabolic effects of FGF-1 on chondrocytes and its possible role in osteoarthritis. International journal

    Abdellatif El-Seoudi, Tarek Abd El Kader, Takashi Nishida, Takanori Eguchi, Eriko Aoyama, Masaharu Takigawa, Satoshi Kubota

    Journal of cell communication and signaling   11 ( 3 )   255 - 263   2017.9

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    Fibroblast growth factor 1 (FGF-1) is a classical member of the FGF family and is produced by chondrocytes cultured from osteoarthritic patients. Also, this growth factor was shown to bind to CCN family protein 2 (CCN2), which regenerates damaged articular cartilage and counteracts osteoarthritis (OA) in an animal model. However, the pathophysiological role of FGF-1 in cartilage has not been well investigated. In this study, we evaluated the effects of FGF-1 in vitro and its production in vivo by use of an OA model. Treatment of human chondrocytic cells with FGF-1 resulted in marked repression of genes for cartilaginous extracellular matrix components, whereas it strongly induced matrix metalloproteinase 13 (MMP-13), representing its catabolic effects on cartilage. Interestingly, expression of the CCN2 gene was dramatically repressed by FGF-1, which repression eventually caused the reduced production of CCN2 protein from the chondrocytic cells. The results of a reporter gene assay revealed that this repression could be ascribed, at least in part, to transcriptional regulation. In contrast, the gene expression of FGF-1 was enhanced by exogenous FGF-1, indicating a positive feedback system in these cells. Of note, induction of FGF-1 was observed in the articular cartilage of a rat OA model. These results collectively indicate a pathological role of FGF-1 in OA development, which includes an insufficient cartilage regeneration response caused by CCN2 down regulation.

    DOI: 10.1007/s12079-017-0384-8

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  • 軟骨細胞分化に関わる長鎖ノンコーディングRNAの骨形成における役割

    石川 崇典, 村瀬 友里香, 西田 崇, 服部 高子, 大野 充昭, 上岡 寛, 滝川 正春, 久保田 聡

    日本骨代謝学会学術集会プログラム抄録集   35回   166 - 166   2017.7

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  • CATABOLIC EFFECTS OF FGF-1 ON CHONDROCYTES WITH REDUCED CCN2 PRODUCTION THAT PROMOTES CARTILAGE REGENERATION: POSSIBLE ROLE IN OSTEOARTHRITIS

    A. Elseoudi, T. Abd El Kader, T. Nishida, E. Aoyama, T. Eguchi, M. Takigawa, S. Kubota

    OSTEOPOROSIS INTERNATIONAL   28   S225 - S225   2017.7

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  • Low-intensity pulsed ultrasound (LIPUS) treatment of cultured chondrocytes stimulates production of CCN family protein 2 (CCN2), a protein involved in the regeneration of articular cartilage: mechanism underlying this stimulation

    T. Nishida, S. Kubota, E. Aoyama, N. Yamanaka, K. M. Lyons, M. Takigawa

    OSTEOARTHRITIS AND CARTILAGE   25 ( 5 )   759 - 769   2017.5

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    Objective: CCN family protein 2/connective tissue growth factor (CCN2/CTGF) promotes cartilage regeneration in experimental osteoarthritis (OA) models. However, CCN2 production is very low in articular cartilage. The aim of this study was to investigate whether or not CCN2 was promoted by cultured chondrocytes treated with low-intensity pulsed ultrasound (LIPUS) and to clarify its mechanism.
    Methods: Human chondrocytic cell line (HCS)-2/8, rat primary epiphyseal and articular cartilage cells, and Ccn2-deficient chondrocytes that impaired chondrocyte differentiation, were treated with LIPUS for 20 min at 3.0 MHz frequency and 60 mW/cm(2) power. Expressions of chondrocyte differentiation marker mRNAs were examined by real-time PCR (RT-PCR) analysis from HCS-2/8 cells and Ccn2-deficient chondrocytes at 30 min and 1 h after LIPUS treatment, respectively. CCN2 production was examined by Western blotting after 5 h of LIPUS treatment. Moreover, Ca2+ influx was measured by using a Fluo-4 probe.
    Results: The gene expression of chondrocyte differentiation markers and CCN2 production were increased in cultured chondrocytes treated with LIPUS. In addition, Ca2+ influx and phosphorylation of p38 mitogen-activated protein kinase (MAPK) and extracellular signal-regulated kinase (ERK) 1/2 were increased by LIPUS treatment, and the stability of TRPV4 and BKca channel mRNAs was decreased by siRNA against CCN2. Consistent with those findings, the LIPUS-induced the gene expressions of type II collagen (COL2a1) and Aggrecan (ACAN) observed in wild-type cells were not observed in the Ccn2-deficient chondrocytes.
    Conclusion: These data indicate that chondrocyte differentiation represented by CCN2 production was mediated via MAPK pathways activated by LIPUS-stimulated Ca2+ influx, which in turn was supported by the induced CCN2 molecules in articular chondrocytes. (C) 2016 Published by Elsevier Ltd on behalf of Osteoarthritis Research Society International.

    DOI: 10.1016/j.joca.2016.10.003

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  • The role of osteocytes in bone remodeling.

    Nishida, T, Kubota, S, Takigawa, M

    27   23 - 29   2017

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  • 骨リモデリングにおける骨細胞の役割.

    西田 崇, 久保田聡, 滝川正春

    Clin. Calcium,   27   23 - 29   2017

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  • 低出力パルス超音波(LIPUS)が半月板中のCCN2,CCN3に与える効果

    釜付祐輔, 青山絵理子, 古松毅之, 前原亜美, 山中信康, 西田崇, 久保田聡, 久保田聡, 尾崎敏文, 滝川正春

    日本骨代謝学会学術集会プログラム抄録集   35th   2017

  • 半月板におけるCCN2,CCN3に与える低出力パルス超音波(LIPUS)の効果

    釜付祐輔, 釜付祐輔, 青山絵理子, 古松毅之, 前原亜美, 山中信康, 西田崇, 久保田聡, 久保田聡, 尾崎敏文, 滝川正春

    日本結合組織学会学術大会抄録集   49th   2017

  • 3-2LIPUSにより半月板でのCCN2の発現・産生は増加する

    釜付祐輔, 釜付祐輔, 青山絵理子, 古松毅之, 前原亜美, 山中信康, 西田崇, 久保田聡, 久保田聡, 尾崎敏文, 滝川正春

    移植(Web)   52 ( 6 )   2017

  • 軟骨組織におけるメラトニンの作用

    服部 高子, 西田 崇, 久保田 聡, Fu Shanqi, 林 大智, 下村 侑司, 高垣 安紗美

    Journal of Oral Biosciences Supplement   2016   225 - 225   2016.9

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  • Role of CCN2 in Amino Acid Metabolism of Chondrocytes

    Yurika Murase, Takako Hattori, Eriko Aoyama, Takashi Nishida, Aya Maeda-Uematsu, Harumi Kawaki, Karen M. Lyons, Akira Sasaki, Masaharu Takigawa, Satoshi Kubota

    JOURNAL OF CELLULAR BIOCHEMISTRY   117 ( 4 )   927 - 937   2016.4

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    CCN2/connective tissue growth factor (CTGF) is a multi-functional molecule that promotes harmonized development and regeneration of cartilage through its matricellular interaction with a variety of extracellular biomolecules. Thus, deficiency in CCN2 supply profoundly affects a variety of cellular activities including basic metabolism. A previous study showed that the expression of a number of ribosomal protein genes was markedly enhanced in Ccn2-null chondrocytes. Therefore, in this study, we analyzed the impact of CCN2 on amino acid and protein metabolism in chondrocytes. Comparative metabolome analysis of the amino acids in Ccn2-null and wild-type mouse chondrocytes revealed stable decreases in the cellular levels of all of the essential amino acids. Unexpectedly, uptake of such amino acids was rather enhanced in Ccn2-null chondrocytes, and the addition of exogenous CCN2 to human chondrocytic cells resulted in decreased amino acid uptake. However, as expected, amino acid consumption by protein synthesis was also accelerated in Ccn2-null chondrocytes. Furthermore, we newly found that expression of two genes encoding two glycolytic enzymes, as well as the previously reported Eno1 gene, was repressed in those cells. Considering the impaired glycolysis and retained mitochondrial membrane potential in Ccn2-null chondrocytes, these findings suggest that Ccn2 deficiency induces amino acid shortage in chondrocytes by accelerated amino acid consumption through protein synthesis and acquisition of aerobic energy. Interestingly, CCN2 was found to capture such free amino acids in vitro. Under physiological conditions, CCN2 may be regulating the levels of free amino acids in the extracellular matrix of cartilage. J. Cell. Biochem. 117: 927-937, 2016. (c) 2015 Wiley Periodicals, Inc.

    DOI: 10.1002/jcb.25377

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  • Involvement of multiple CCN family members in platelets that support regeneration of joint tissues

    Chikako Hara, Satoshi Kubota, Takashi Nishida, Miki Hiasa, Takako Hattori, Eriko Aoyama, Yoshinori Moriyama, Hiroshi Kamioka, Masaharu Takigawa

    MODERN RHEUMATOLOGY   26 ( 6 )   940 - 949   2016

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    Objectives: Platelet-rich plasma (PRP) has been widely used to enhance the regeneration of damaged joint tissues, such as osteoarthritic and rheumatoid arthritic cartilage. The aim of this study is to clarify the involvement of all of the CCN family proteins that are crucially associated with joint tissue regeneration.
    Methods: Cyr61-CTGF-NOV (CCN) family proteins in human platelets and megakaryocytic cells were comprehensively analyzed by Western blotting analysis. Production of CCN family proteins in megakaryocytes in vivo was confirmed by immunofluorescence analysis of mouse bone marrow cells. Effects of CCN family proteins found in platelets on chondrocytes were evaluated by using human chondrocytic HCS-2/8 cells.
    Results: Inclusion of CCN2, a mesenchymal tissue regenerator, was confirmed. Of note, CCN3, which counteracts CCN2, was newly found to be encapsulated in platelets. Interestingly, these two family members were not detectable in megakaryocytic cells, but their external origins were suggested. Furthermore, we found for the first time CCN5 and CCN1 that inhibits ADAMTS4 in both platelets and megakaryocytes. Finally, application of a CCN family cocktail mimicking platelets onto HCS-2/8 cells enhanced their chondrocytic phenotype.
    Conclusions: Multiple inclusion of CCN1, 2 and 3 in platelets was clarified, which supports the harmonized regenerative potential of PRP in joint therapeutics.

    DOI: 10.3109/14397595.2016.1155255

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  • Investigation on long non‐coding RNAs that are associated with chondrocytic phenotype

    ISHIKAWA Takanori, MURASE Yurika, MURASE Yurika, NISHIDA Takashi, HATTORI Takako, TAKIGAWA Masaharu, KAMIOKA Hiroshi, KUBOTA Satoshi, KUBOTA Satoshi

    日本RNA学会年会要旨集   18th   ROMBUNNO.254   2016

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  • 軟骨細胞形質を支える長鎖非コードRNA

    石川崇典, 石川崇典, 久保田聡, 久保田聡, 村瀬友里香, 西田崇, 服部高子, 滝川正春, 滝川正春

    日本軟骨代謝学会プログラム・抄録集   29th   2016

  • 軟骨組織におけるメラトニンの作用

    服部高子, 西田崇, 久保田聡

    Journal of Oral Biosciences Supplement (Web)   2016   2016

  • 軟骨細胞形質に関わる長鎖非コードRNAの探索

    石川崇典, 石川崇典, 村瀬友里香, 西田崇, 服部高子, 滝川正春, 滝川正春, 上岡寛, 久保田聡, 久保田聡

    日本骨代謝学会学術集会プログラム抄録集   34th   2016

  • New functional aspects of CCN2 revealed by trans-omic approaches

    Satoshi Kubota, Aya Maeda-Uematsu, Takashi Nishida, Masaharu Takigawa

    Journal of Oral Biosciences   57 ( 1 )   37 - 43   2015.2

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    Background CCN family protein 2 (CCN2), also widely known as connective tissue growth factor (CTGF), is one of the classical members of the CCN family of proteins. In mammals, the CCN family comprises 6 members, each of which is composed of highly interactive conserved modules. Therefore, the biological roles of CCN2 in different microenvironments are highly diverse and depend on the cofactors present. Highlight In cartilage, CCN2 promotes chondrocyte proliferation and differentiation, which was evidenced by its ability to regenerate damaged articular cartilage in a harmonized manner. However, the mechanism by which CCN2 promotes both proliferation and differentiation - apparently opposite cytological events - remains unclear. In order to clarify the mechanism underlying the diverse functionality of CCN2, novel approaches are needed. Recent advances in omics approaches that attempt to address these issues are introduced in this review. Conclusion A new functional aspect of CCN2 as a metabolic supporter in cartilage was recently revealed by a metabolo-transcriptomic approach. In addition, a systematic interactomic approach is being used to characterize the molecular network around CCN2 that supports the multiple functionality of CCN2 in bone/cartilage.

    DOI: 10.1016/j.job.2014.09.002

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  • CCN2による軟骨細胞のアミノ酸代謝制御

    村瀬友里香, 村瀬友里香, 服部高子, 青山絵理子, 西田崇, 前田彩, 川木晴美, 佐々木朗, 滝川正春, 久保田聡

    日本骨代謝学会学術集会プログラム抄録集   33rd   2015

  • 骨伸長促進効果を有する結合組織成長因子CTGF/CCN2の低身長治療への応用のための基礎研究

    服部高子, 西田崇, 久保田聡

    成長科学協会研究年報   ( 38 )   2015

  • CCN2は骨細胞を介して破骨細胞形成を制御する

    西田崇, 久保田聡, 久保田聡, 服部高子, 滝川正春

    Journal of Oral Biosciences Supplement (Web)   2015   2015

  • Direct interaction between CCN family protein 2 and fibroblast growth factor 1

    Tarek Abd El Kader, Satoshi Kubota, Ken Anno, Saho Tanaka, Takashi Nishida, Takayuki Furumatsu, Eriko Aoyama, Takuo Kuboki, Masaharu Takigawa

    JOURNAL OF CELL COMMUNICATION AND SIGNALING   8 ( 2 )   157 - 163   2014.6

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    In an attempt to find out a new molecular counterpart of CCN family protein 2 (CCN2), a matricellular protein with multiple functions, we performed an interactome analysis and found fibroblast growth factor (FGF) -1 as one of the candidates. Solid-phase binding assay indicated specific binding between CCN2 and FGF-1. This binding was also confirmed by surface plasmon resonance (SPR) analysis that revealed a dissociation constant (Kd) of 3.98 nM indicating strong molecular interaction between the two. RNA analysis suggested that both FGF-1 and CCN2 could be produced by chondrocytes and thus their interaction in the cartilage is possible. These findings for the first time indicate the direct interaction of CCN2 and FGF-1 and suggest the co-presence of these molecules in the cartilage microenvironment. CCN2 is a well-known promoter of cartilage development and regeneration, whereas the physiological and pathological role of FGF-1 in cartilage mostly remains unclear. Biological role of FGF-1 itself in cartilage is also suspected.

    DOI: 10.1007/s12079-014-0232-z

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  • CCN2 as a Novel Molecule Supporting Energy Metabolism of Chondrocytes

    Aya Maeda-Uematsu, Satoshi Kubota, Harumi Kawaki, Kazumi Kawata, Yoshiaki Miyake, Takako Hattori, Takashi Nishida, Norifumi Moritani, Karen M. Lyons, Seiji Iida, Masaharu Takigawa

    JOURNAL OF CELLULAR BIOCHEMISTRY   115 ( 5 )   854 - 865   2014.5

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    CCN2/connective tissue growth factor (CTGF) is a unique molecule that promotes both chondrocytic differentiation and proliferation through its matricellular interaction with a number of extracellular biomolecules. This apparently contradictory functional property of CCN2 suggests its certain role in basic cellular activities such as energy metabolism, which is required for both proliferation and differentiation. Comparative metabolomic analysis of costal chondrocytes isolated from wild-type and Ccn2-null mice revealed overall impaired metabolism in the latter. Among the numerous metabolites analyzed, stable reduction in the intracellular level of ATP, GTP, CTP, or UTP was observed, indicating a profound role of CCN2 in energy metabolism. Particularly, the cellular level of ATP was decreased by more than 50% in the Ccn2-null chondrocytes. The addition of recombinant CCN2 (rCCN2) to cultured Ccn2-null chondrocytes partly redeemed the cellular ATP level attenuated by Ccn2 deletion. Next, in order to investigate the mechanistic background that mediates the reduction in ATP level in these Ccn2-null chondrocytes, we performed transcriptome analysis. As a result, several metabolism-associated genes were found to have been up-regulated or down-regulated in the mutant mice. Up-regulation of a number of ribosomal protein genes was observed upon Ccn2 deletion, whereas a few genes required for aerobic and anaerobic ATP production were down-regulated in the Ccn2-null chondrocytes. Among such genes, reduction in the expression of the enolase 1 gene was of particular note. These findings uncover a novel functional role of CCN2 as a metabolic supporter in the growth-plate chondrocytes, which is required for skeletogenesis in mammals. J. Cell. Biochem. 115: 854-865, 2014. (c) 2013 Wiley Periodicals, Inc.

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  • Differential Expression of Vascular Endothelial Growth Factor in High- and Low-Metastasis Cell Lines of Salivary Gland Adenoid Cystic Carcinoma

    Seiji Kondo, Yoshiki Mukudai, Daisuke Soga, Takashi Nishida, Masaharu Takigawa, Tatsuo Shirota

    ANTICANCER RESEARCH   34 ( 2 )   671 - 677   2014.2

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    We used high- (ACCM) and low- (ACC2) metastasis cell lines of human adenoid cystic carcinoma (ACC) as an experimental model to study metastatic mechanisms and compare their expression levels for angiogenic-related factor vascular endothelial growth factor (VEGF). By using a series of extensive analyses, hypoxia-inducible factor-1 (HIF-1) alpha-dependent VEGF expression levels were observed to be higher in ACCM cell lines, increasing the possible development of tumor metastasis, compared to ACC2 cell lines. Our findings provide the novel insight that HIF-1 alpha-dependent VEGF overexpression under hypoxic conditions shows to some extent associations with the metastatic tendency of ACC cells and may function as a potential target for ACC therapy.

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  • CCN2 enhances RANKL-induced osteoclast differentiation via direct binding to RANK and OPG.

    Aoyama, E, Kubota, S, Khattab, H. M, Nishida, T, Takigawa, M

    Bone   73   242 - 248   2014

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    DOI: 10.1016/j.bone.2014.12.058.

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  • The regenerative effects of CCN2 independent modules on chondrocytes in vitro and osteoarthritis models in vivo

    Abd El Kader, T., Kubota, S., Nishida, T., Hattori, T., Aoyama, E., Janune, D., Hara, E.S., Ono, M., Tabata, Y., Kuboki, T., Takigawa, M.

    Bone   59   180 - 188   2014

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  • CCN family protein 2 (CCN2) promotes the early differentiation, but inhibits the terminal differentiation of skeletal myoblasts.

    Nishida, T, Kubota, S, Aoyama, E, Janune, D, Lyons, K. M, Takigawa, M

    J Biochem.   157   91 - 100   2014

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    DOI: 10.1093/jb/mvu056.

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  • Fibroblast growth factor-1が軟骨代謝に及ぼす多彩な影響

    ABD EL KADER Tarek, ABD EL KADER Tarek, 久保田聡, 西田崇, 古松毅之, 青山絵理子, 窪木拓男, 滝川正春, 滝川正春

    日本軟骨代謝学会プログラム・抄録集   27th   2014

  • SOX9のユビキチンリガーゼE6-AP/UBE3Aは正常な骨格形成に必須である

    服部高子, 木住野達也, SHELLEY Stephen, HEIDI Eberspaecher, 巻さゆみ, 滝川正春, 西田崇, 久保田聡, DE CROMBRUGGHE Benoit, 安田秀世, 安田秀世

    日本分子生物学会年会プログラム・要旨集(Web)   37th   2014

  • 軟骨分化促進因子CCN2の新たな細胞内機能:CCN2とRab14GTPaseの相互作用が軟骨細胞の小胞輸送に及ぼす役割

    星島光博, 星島光博, 服部高子, 青山絵理子, 西田崇, 上岡寛, 滝川正春

    日本骨代謝学会学術集会プログラム抄録集   32nd   2014

  • 軟骨細胞にてエネルギー産生を支えるCCN2の新たな役割

    前田彩, 前田彩, 久保田聡, 久保田聡, 川木晴美, 河田かずみ, 三宅由晃, 服部高子, 西田崇, 森谷徳文, LYONS Karen M, 飯田征二, 滝川正春, 滝川正春

    日本軟骨代謝学会プログラム・抄録集   27th   2014

  • 軟骨細胞における低出力超音波(LIPUS)とROCK阻害剤によるCCN2の相加的産生

    西田崇, 久保田聡, 青山絵理子, 山中信康, LYONS Karen M, 滝川正春, 滝川正春

    日本軟骨代謝学会プログラム・抄録集   27th   2014

  • Novel role of miR-181a in cartilage metabolism. International journal

    Kumi Sumiyoshi, Satoshi Kubota, Toshihiro Ohgawara, Kazumi Kawata, Tarek Abd El Kader, Takashi Nishida, Nao Ikeda, Tsuyoshi Shimo, Takashi Yamashiro, Masaharu Takigawa

    Journal of cellular biochemistry   114 ( 9 )   2094 - 100   2013.9

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    Micro RNA (miRNA) is a small non-coding post-transcriptional RNA regulator that is involved in a variety of biological events. In order to specify the role of miRNAs in cartilage metabolism, we comparatively analyzed the expression profile of known miRNAs in chicken sternum chondrocytes representing early and late differentiation stages. Interestingly, none of the miRNAs displaying strong expression levels showed remarkable changes along with differentiation, suggesting their roles in maintaining the homeostasis rather than cytodifferentiation of chondrocytes. Among these miRNAs, miR-181a, which is known to play critical roles in a number of tissues, was selected and was further characterized. Human microarray analysis revealed remarkably stronger expression of miR-181a in human HCS-2/8 cells, which strongly maintained a chondrocytic phenotype, than in HeLa cells, indicating its significant role in chondrocytes. Indeed, subsequent investigation indicated that miR-181a repressed the expression of two genes involved in cartilage development. One was CCN family member 1 (CCN1), which promotes chondrogenesis; and the other, the gene encoding the core protein of aggrecan, a major cartilaginous proteoglycan, aggrecan. Based on these findings, negative feedback system via miR-181a to conserve the integrity of the cartilaginous phenotype may be proposed.

    DOI: 10.1002/jcb.24556

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  • Regulation of CCN1 via the 3 '-untranslated region

    Yosuke Nakagawa, Masanao Minato, Kumi Sumiyoshi, Aya Maeda, Chikako Hara, Yurika Murase, Takashi Nishida, Satoshi Kubota, Masaharu Takigawa

    JOURNAL OF CELL COMMUNICATION AND SIGNALING   7 ( 3 )   207 - 217   2013.8

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    The 3'-untranslated region (UTR) is known to be a critical regulator of post-transcriptional events that determine the gene expression at the RNA level. The gene CCN1 is one of the classical members of the matricellular CCN family and is involved in a number of biological processes during mammalian development. In the present study, the 600-bp 3'-UTR of CCN1 was functionally characterized. Reporter gene analysis revealed that the entire 3'-UTR profoundly repressed gene expression in cis in different types of the cells, to which both the proximal and distal-halves of the 3'-UTR segments contributed almost equally. Deletion analysis of the 3'-UTR indicated a distinct functional element in the proximal half, whereas a putative target for microRNA-181s was predicted in silico in the distal half. Of note, the repressive RNA element in the proximal half was shown to be capable of forming a stable secondary structure. However, unexpectedly, a reporter construct with a tandem repeat of the predicted miR-181 targets failed to respond to miR-181a. In addition, the other major structured element predicted in the distal half was similarly characterized. To our surprise, the second element rather enhanced the reporter gene expression in cis. These results indicate the involvement of multiple regulatory elements in the CCN1 3'-UTR and suggest the complexity of the miRNA action as well as the 3'-UTR-mediated gene regulation.

    DOI: 10.1007/s12079-013-0202-x

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  • Impaired glycolytic metabolism causes chondrocyte hypertrophy-like changes via promotion of phospho-Smad1/5/8 translocation into nucleus

    T. Nishida, S. Kubota, E. Aoyama, M. Takigawa

    OSTEOARTHRITIS AND CARTILAGE   21 ( 5 )   700 - 709   2013.5

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    Objective: Hypertrophy-like changes are often observed in chondrocytes during the development of osteoarthritis (OA). These changes play a crucial part in the OA-associated cartilage degradation and osteophyte formation. However, the pathogenesis leading to such changes is still unknown. In this study, we investigated the mechanism by which these hypertrophy-like changes are induced from the viewpoint of impaired glycolytic metabolism.
    Methods: The effect of sodium fluoride (NaF) on glycolytic metabolism of cultured chondrocytes was confirmed by measurement of intracellular adenosine triphosphate (ATP) production. Translocation of phosphorylated Smad1/5/8 to the nucleus was evaluated by subcellular fractionation and Western blotting. Chondrocyte hypertrophy-like changes were investigated by real-time RT-PCR and Western blot analysis of differentiation markers.
    Results: ATP production was dose-dependently decreased by NaF in the human chondrocytic cell line HCS-2/8. In addition, both chondrocyte proliferation and differentiation were inhibited, whereas cell death was promoted by treatment with NaF. Interestingly, combinational treatment with NaF and lactate enhanced translocation of phospho-Smad1/5/8 to the nucleus, as well as gene expression of ALP, VEGF, COL10a1, and matrix metalloproteinase13 (MMP13), which were the markers of late mature and hypertrophic chondrocytes. Furthermore, the production of type X collagen and activation of MMP9 were also promoted under the same conditions.
    Conclusions: These findings suggest that decreased ATP production by NaF promotes hypertrophy-like changes via activation of phospho-Smad1/5/8 in the presence of lactate. Novel metabolic aspects of OA pathogenesis are indicated herein. (C) 2013 Osteoarthritis Research Society International. Published by Elsevier Ltd. All rights reserved.

    DOI: 10.1016/j.joca.2013.01.013

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  • Anti-fibrotic effect of CCN3 accompanied by altered gene expression profile of the CCN family

    Tarek Abd El Kader, Satoshi Kubota, Danilo Janune, Takashi Nishida, Takako Hattori, Eriko Aoyama, Bernard Perbal, Takuo Kuboki, Masaharu Takigawa

    Journal of Cell Communication and Signaling   7 ( 1 )   11 - 18   2013.3

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    CCN family proteins 2 and 3 (CCN2 and CCN3) belong to the CCN family of proteins, all having a high level of structural similarity. It is widely known that CCN2 is a profibrotic molecule that mediates the development of fibrotic disorders in many different tissues and organs. In contrast, CCN3 has been recently suggested to act as an anti-fibrotic factor in several tissues. This CCN3 action was shown earlier to be exerted by the repression of the CCN2 gene expression in kidney tissue, whereas different findings were obtained for liver cells. Thus, the molecular action of CCN3 yielding its anti-fibrotic effect is still controversial. Here, using a general model of fibrosis, we evaluated the effect of CCN3 overexpression on the gene expression of all of the CCN family members, as well as on that of fibrotic marker genes. As a result, repression of CCN2 gene expression was modest, while type I collagen and α-smooth muscle actin gene expression was prominently repressed. Interestingly, not only CCN2, but also CCN4 gene expression showed a decrease upon CCN3 overexpression. These findings indicate that fibrotic gene induction is under the control of a complex molecular network conducted by CCN family members functioning together. © 2012 The International CCN Society.

    DOI: 10.1007/s12079-012-0180-4

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  • Novel chondrogenic and chondroprotective effects of the natural compound harmine

    Hara, Emilio Satoshi, Ono, Mitsuaki, Kubota, Satoshi, Sonoyama, Wataru, Oida, Yasutaka, Hattori, Takako, Nishida, Takashi, Furumatsu, Takayuki, Ozaki, Toshifumi, Takigawa, Masaharu, Kuboki, Takuo

    Biochimie   95 ( 2 )   374 - 381   2013

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  • CCN2は軟骨細胞のエネルギー代謝に重要である

    前田彩, 前田彩, 久保田聡, 川木晴美, 河田かずみ, 三宅由晃, 服部高子, 西田崇, 森谷徳文, 飯田征二, 滝川正春

    Journal of Oral Biosciences Supplement (Web)   2013   ROMBUNNO.SS9‐5 (WEB ONLY)   2013

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  • 軟骨細胞のエネルギー代謝を支えるCCN2/CTGF

    前田彩, 前田彩, 久保田聡, 三宅由晃, 河田かずみ, 西田崇, 服部高子, 森谷徳文, 川木晴美, LYONS Karen M., 飯田征二, 滝川正春

    日本軟骨代謝学会プログラム・抄録集   26th   2013

  • CCN3の抗線維化効果に伴うCCNファミリー遺伝子発現プロファイルの変化

    DANILO Janune, ABD EL KADER Tarek, ABD EL KADER Tarek, 久保田聡, 西田崇, 服部高子, 青山絵里子, 窪木拓男, 滝川正春, 滝川正春

    Journal of Oral Biosciences Supplement (Web)   2013   2013

  • CCN2を構成する各モジュールの軟骨再生効果

    ABD EL KADER Tarek, ABD EL KADER Tarek, 久保田聡, 西田崇, 服部高子, 青山絵理子, JANUNE Danilo, 窪木拓男, 滝川正春, 滝川正春

    日本軟骨代謝学会プログラム・抄録集   26th   2013

  • Rab14GTPaseのCCN2/CTGF結合因子としての同定,およびこれらの相互作用が軟骨細胞の小胞輸送に及ぼす役割

    星島光博, 星島光博, 服部高子, 青山絵理子, 西田崇, 滝川正春, 滝川正春

    Journal of Oral Biosciences Supplement (Web)   2013   2013

  • CCN2/CTGFとRab14 GTPaseの相互作用が軟骨細胞の小胞輸送に及ぼす役割

    星島光博, 星島光博, 服部高子, 青山絵理子, 西田崇, 滝川正春

    岡山歯学会雑誌   32 ( 2 )   2013

  • CCN2とRab14GTPaseの相互作用が軟骨細胞の小胞輸送に及ぼす役割

    星島光博, 星島光博, 服部高子, 青山絵理子, 西田崇, 滝川正春, 滝川正春

    日本分子生物学会年会プログラム・要旨集(Web)   36th   2013

  • Rab14GTPaseのCCN2/CTGF結合因子としての同定と,これらの相互作用が軟骨細胞の小胞輸送に及ぼす役割

    星島光博, 星島光博, 服部高子, 青山絵理子, 西田崇, 山城隆, 滝川正春, 滝川正春

    日本軟骨代謝学会プログラム・抄録集   26th   2013

  • Effect of CCN2/CTGF on FGF2-induced proliferation of and MMP-9 and-13 productions by chondrocytes

    T. Nishida, S. Kubota, E. Aoyama, D. Janune, A. Maeda, M. Takigawa

    FEBS JOURNAL   279   169 - 169   2012.9

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  • Roles of CCN2 in energy metabolism in chondrocytes.

    A. Maeda, S. Kubota, Y. Miyake, K. Kawata, T. Nishida, T. Hattori, N. Moritani, H. Kawaki, K. M. Lyons, S. Iida, M. Takigawa

    MOLECULAR BIOLOGY OF THE CELL   23   2012

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  • 軟骨細胞のエネルギー代謝におけるCCN2/CTGFの役割

    前田彩, 前田彩, 久保田聡, 三宅由晃, 河田かずみ, 西田崇, 服部高子, 森谷徳文, 川木晴美, LYONS Karen M., 飯田征二, 滝川正春

    日本分子生物学会年会プログラム・要旨集(Web)   35th   2012

  • CCN2/CTGF欠損が軟骨細胞のエネルギー代謝に及ぼす影響

    前田彩, 前田彩, 久保田聡, 服部高子, 西田崇, 飯田征二, 滝川正春

    Journal of Oral Biosciences Supplement (Web)   2012   2012

  • 軟骨細胞の代謝システムにおけるCCN2の役割

    前田彩, 前田彩, 久保田聡, 三宅由晃, 河田かずみ, 服部高子, 西田崇, 森谷徳文, 川木晴美, LYONS Karen M., 飯田征二, 滝川正春

    岡山歯学会雑誌   31 ( 2 )   2012

  • Roles of the heterotypic CCN2-CCN3 and homotypic CCN2-CCN2 interactions in matrix synthesis in chondrocytes.

    M. Hoshijima, T. Hattori, E. Aoyama, T. Nishida, T. Yamashiro, M. Takigawa

    MOLECULAR BIOLOGY OF THE CELL   23   2012

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  • CCN2/CTGF promotes osteoclastogenesis via induction of and interaction with dendritic cell-specific transmembrane protein (DC-STAMP)

    T. Nishida, K. Emura, S. Kubota, K. M. Lyons, M. Takigawa

    FEBS JOURNAL   278   147 - 147   2011.6

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  • Receptor activator of NF-κB(RANK)結合タンパク質であるCCN2/CTGFのRANKL誘導性破骨細胞形成における機能

    青山絵理子, 久保田聡, 西田崇, 滝川正春, 滝川正春

    岡山歯学会雑誌   30 ( 2 )   2011

  • マイクロRNAによる軟骨細胞形質制御とCCN1(Cyr61)の関与

    住吉 久美, 久保田 聡, 大河原 敏博, 志茂 剛, 河田 かずみ, 西田 崇, 山城 隆, 滝川 正春

    日本生化学会大会・日本分子生物学会年会合同大会講演要旨集   83回・33回   3P - 0760   2010.12

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  • CCN2/CTGF Modulates BMP Signaling as a Signal Conductor, Which Action Regulates the Proliferation and Differentiation of Chondrocytes

    MAEDA A, NISHIDA T, KUBOKI T, TAKIGAWA M

    1 ( 118 )   225 - 225   2010.8

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  • マイクロRNA181-aによる軟骨細胞形質の制御とCCN1の関与

    住吉 久美, 久保田 聡, 大河原 敏博, 志茂 剛, 河田 かずみ, 西田 崇, 山城 隆, 滝川 正春

    日本骨代謝学会学術集会プログラム抄録集   28回   249 - 249   2010.7

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  • N-terminal domains of CCN family 2/connective tissue growth factor bind to aggrecan

    Eriko Aoyama, Takako Hattori, Mitsuhiro Hoshijima, Daisuke Araki, Takashi Nishida, Satoshi Kubota, Masaharu Takigawa

    BIOCHEMICAL JOURNAL   420   413 - 420   2009.6

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    CCN2/CTGF (CCN family 2/connective tissue growth factor) is a multi-cellular protein with a broad range of activities. It modulates many cellular functions, including proliferation, migration, adhesion and extracellular matrix production, and it is thus involved in many biological and pathological processes. In particular, CCN2/CTGF is essential for normal skeletal development. To identify CCN2/CTGF-interactive proteins capable of modulating its action in cartilage, we carried Out a yeast two-hybrid screening using CCN2/CTGF peptide as a bait and a cDNA library from a chondrocytic cell line, HCS-2/8. In the present paper, we report the identification of aggrecan, which is a major proteoglycan of the extracellular matrix in cartilage, its a CCN2/CTGF-binding protein. Among the four domains of CCN2/CTGF, the IGFBP [IGF (insulin-like growth factor)-binding protein-like] and/or VWC (von Willebrand factor type C) domains had a direct interaction with aggrecan in a yeast two-hybrid assay. The results of a solid-phase-binding assay using aggrecan-coated plates also showed binding to recombinant CCN2/CTGF in a dose-dependent manner. rIGFBP (recombinant IGFBP) and rVWC (recombinant VWC) module peptides had stronger binding to aggrecan compared with rTSP1 (recombinant thrombospondin type I repeat) and rCT (recombinant C-terminal cystine knot) module peptides. SPR (surface plasmon resonance) analysis showed the direct interaction between the CCN2/CTGF and aggrecan. and ectopically overexpressed CCN2/CTGF and AgG3 (G3 domain of aggrecan) confirmed their binding in vivo. Indirect immunofluorescence analysis indicated that CCN2/CTGF was extracellularly co-localized with aggrecan on HCS-2/8 cells. The rIGFBP-rVWC peptide effectively enhanced tire production and release of aggrecan compared with the rTSP-rCT peptide in chondrocytes. These results indicate that CCN2/CTGF binds to aggrecan through its N-terminal IGFBP and VWC Modules. and this binding may be related to the CCN2/CTGF-enhanced production and secretion of aggrecan by chondrocytes.

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  • CCN Family 2/Connective Tissue Growth Factor Modulates BMP Signalling as a Signal Conductor, Which Action Regulates the Proliferation and Differentiation of Chondrocytes

    Azusa Maeda, Takashi Nishida, Eriko Aoyama, Satoshi Kubota, Karen M. Lyons, Takuo Kuboki, Masaharu Takigawa

    JOURNAL OF BIOCHEMISTRY   145 ( 2 )   207 - 216   2009.2

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    Both CCN family 2/connective tissue growth factor (CCN2/CTGF) and bone morphogenetic protein (BMP)-2 play an important role in cartilage metabolism. We evaluated whether or not CCN2 would interact with BMP-2, and examined the combination effect of CCN2 with BMP-2 (CCN2-BMP-2) on the proliferation and differentiation of chondrocytes. Immunoprecipitation-western blotting analysis, solid-phase binding assay and surface plasmon resonance (SPR) spectroscopy showed that CCN2 directly interacted with BMP-2 with a dissociation constant of 0.77 nM as evaluated by SPR. An in vivo study revealed that CCN2 was co-localized with BMP-2 at the pre-hypertrophic region in the E18.5 mouse growth plate. Interestingly, CCN2-BMP-2 did not affect the BMP-2/CCN2-induced phosphorylation of p38 MAPK but caused less phosphorylation of ERK1/2 in cultured chondrocytes. Consistent with these results, cell proliferation assay showed that CCN2-BMP-2 stimulated cell growth to a lesser degree than by either CCN2 or BMP-2 alone, whereas the expression of chondrocyte marker genes and proteoglycan synthesis, representing the mature chondrocytic phenotype, was increased collaboratively by CCN2-BMP-2 treatment in cultured chondrocytes. These findings suggest that CCN2 may regulate the proliferating and differentiation of chondrocytes by forming a complex with BMP-2 as a novel modulator of BMP signalling.

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  • CCN family 2/connective tissue growth factor (CCN2/CFGF) regulates the expression of Vegf through Hif-1 alpha expression in a chondrocytic cell line, HCS-2/8, under hypoxic condition

    Takashi Nishida, Seiji Kondo, Azusa Maeda, Satoshi Kubota, Karen M. Lyons, Masaharu Takigawa

    BONE   44 ( 1 )   24 - 31   2009.1

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    Vascular endothelial growth factor (VEGF) is essential for establishing vascularization and regulating chondrocyte development and survival. We have demonstrated that VEGF regulates the expression of CCN2/connective tissue growth factor (CCN2/CTGF) an essential mediator of cartilage development and angiogenesis, suggesting that CCN2 functions in down-stream of VEGF, and that VEGF function is mediated in part by CCN2. On the other hand, the phenotype of Ccn2 mutant growth plates, which exhibit decreased expression of VEGF in the hypertrophic zone, indicates that Vegf expression is dependent on Ccn2 expression as well. Therefore, we investigated the molecular mechanisms underlying the induction of VEGF by CCN2 using a human chondrocytic cell line, HCS-2/8. Hypoxic stimulation (5% O(2)) of HCS-2/8 cells increased VEGF mRNA levels by similar to 8 fold within 6 h as compared with the cells cultured under normoxia. In addition, VEGF expression was further up-regulated under hypoxia in HCS-2/8 cells transfected with a Ccn2 expression plasmid. Hypoxia-inducible factor (HIF)-1 alpha mRNA and protein levels were increased by stimulation with recombinant CCN2 (rCCN2). Furthermore, the activity of a VEGF promoter that contained a HIF-1 binding site was increased in HCS-2/8, when the cells were stimulated by rCCN2. These results suggest that CCN2 regulates the expression of VEGF at a transcriptional level by promoting HIF-1 alpha activity. In fact, HIF-1 alpha was detected in the nuclei of proliferative and pre-hypertrophic chondrocytes of wild-type mice, whereas it was not detected in Ccn2 Mutant chondrocytes in vivo. This activation cascade from CCN2 to VEGF may therefore play a critical role in chondrocyte development and survival. (C) 2008 Elsevier Inc. All rights reserved.

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  • CCNファミリー2/結合組織成長因子はBMPシグナルを修飾し,軟骨細胞増殖・分化を制御する

    前田あずさ, 前田あずさ, 西田崇, 青山絵理子, 久保田聡, 窪木拓男, LYONS Karen, 滝川正春

    日本軟骨代謝学会プログラム・抄録集   22nd   2009

  • CCN2/CTGFと結合するタンパク質の同定

    星島光博, 服部高子, 荒木大介, 青山絵理子, 西田崇, 滝川正春

    岡山歯学会雑誌   28 ( 1 )   2009

  • Clinical significance and pathogenic function of connective tissue growth factor (CTGF/CCN2) in osteolytic mandibular squamous cell carcinoma

    Tsuyoshi Shimo, Satoshi Kubota, Takeshi Goda, Yasuto Yoshihama, Naito Kurio, Takashi Nishida, Poh-Sing Ng, Koki Endo, Masaharu Takigawa, Akira Sasaki

    ANTICANCER RESEARCH   28 ( 4C )   2343 - 2348   2008.7

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    Background: Mandibular bone destruction is a frequent occurrence in oral squamous cell carcinoma. However, the relationship between the bone destruction and associated factors is unclear. Here, the role and diagnostic utility of connective tissue growth factor (CCN2) in bone destruction of the mandible was investigated. Patients and Methods: The production of CCN2 was explored by using immunohistochemistry on paraffin-embedded tissues from 20 cases of mandibular squamous cell carcinoma. The effect of CCN2 on osteoclastogenesis was examined in vitro by using total bone marrow cell populations from male mice. Results: Immunohistochemical analysis showed that CCN2-positive signals were closely associated with destructive invasion of the mandible by oral squamous cell carcinomas. Consistent with these results, recombinant human CCN2 (rCCN2) stimulated tartrate-resistant acid phosphatase (TRAP)-positive osteoclast-like cell formation in vitro. Conclusion: CCN2 can be considered a diagnostic marker and target for treatment in oral osteolytic mandibular squamous cell carcinoma.

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  • Promotion of hydroxyapatite-associated, stem cell-based bone regeneration by CCN2

    Mitsuaki Ono, Satoshi Kubota, Takuo Fujisawa, Wataru Sonoyama, Harumi Kawakij, Kentaro Akiyama, Kengo Shimono, Masarnitsu Oshima, Takashi Nishida, Yasuhiro Yoshida, Kazuomi Suzuki, Masaharu Takigawa, Takuo Kuboki

    CELL TRANSPLANTATION   17 ( 1-2 )   231 - 240   2008

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    Multiple roles have been already recognized for CCN2 in cartilage development and regeneration. However, the effects of CCN2 on bone regeneration remain to be elucidated. In this study, the utility of CCN2 on bone regeneration was examined in vitro and in vivo in combination with hydroxyapatite (HAp) as a scaffold. Human bone marrow stromal cells (hBMSCs) were isolated from human iliac bone marrow aspirates of healthy donors and expanded, and the effects of CCN2 on their proliferation and migration were examined in vitro. The proliferation of hBMSCs on a plastic or HAp plate was significantly enhanced by CCN2. Moreover, the migration of hBMSCs also dramatically increased by CCN2. Interestingly, a C-terminal signal modular fragment of CCN2 (CT-module) also enhanced the cell proliferation and migration as efficiently as the full-length CCN2. Next, in order to estimate the effect of CCN2 on the migration and survival of hBMSCs and bone formation inside the HAp scaffold in vivo, two experiments were performed. First, the porous HAp carrier was cultured with hBMSCs for a week, and the cell-scaffold hybrid was transplanted with or without CCN2 subcutaneously into immunocompromised mice. CCN2 accelerated the hBMSC-like cell migration and survival inside the porous HAp within 4 weeks after transplantation. Second, the porous HAp carrier with or without CCN2 was directly implanted into bone defects within a rabbit mandible, and bone regeneration inside was evaluated. As a result, CCN2 efficiently induced the cell invasion and bone formation inside the porous HAp scaffold. These findings suggest that CCN2 and its CT-module fragment could be useful for regeneration and reconstruction of large-scale bone defects.

    DOI: 10.3727/000000008783907143

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  • Role of mechanical-stress inducible protein Hcs24/CTGF/CCN2 in cartilage growth and regeneration: Mechanical stress induces expression of Hcs24/CTGF/CCN2 in a human chondrocytic cell line HCS-2/8, rabbit costal chondrocytes and meniscus tissue cells

    Takashi Nishida, Azusa Maeda, Satoshi Kubota, Masaharu Takigawa

    BIORHEOLOGY   45 ( 3-4 )   289 - 299   2008

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    Mechanical stress plays an important role in the cartilage metabolism. The aim of this study is to determine the influence of mechanical load magnitude and frequency on cartilage metabolism in terms of the expression of hypertrophic chondrocyte-specific gene product 24/connective tissue growth factor/CCN family 2 (Hcs24/CTGF/CCN2), as an essential mediator of extracellular matrix (ECM) production. When a human chondrocytic cell line, HCS-2/8 was exposed to uni-axial cyclic mechanical force (6% elongation, 10 times/min) only for 30 min, the expression level of Hcs24/CTGF/CCN2 (CCN2) increased, and c-Jun N-terminal protein kinase (JNK) was activated. These findings suggest that stretch-induced CCN2 may be mediated by the JNK pathway. When HCS-2/8 cells were subjected to cyclic tension force at 15 kPa, 30 cycles/min, which has been reported to be a degradation force for HCS-2/8 cells, the expressions of CCN2 and aggrecan were inhibited, and such expressions remained unchanged in rabbit hyaline costal cartilage cells. However, these expressions increased in rabbit meniscus tissue cells. These findings suggest that the sensitivity of mechanical stretch may be different depending on the type of cells. Furthermore, CCN2 was co-localized with aggrecan in this meniscus tissue region exposed to mechanical stress in vivo. These findings suggest that CCN2 induced by mechanical stress may therefore play some role in meniscus growth and regeneration.

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  • CCN2/CTGFとBMP-2との分子間相互作用はヒト軟骨細胞様細胞株HCS-2/8の細胞分化を制御する

    前田あずさ, 前田あずさ, 西田崇, 青山絵理子, 川木晴美, 久保田聡, 窪木拓男, LYONS Karen M, 滝川正春

    日本軟骨代謝学会プログラム・抄録集   21st   2008

  • CCN2 (Connective Tissue Growth Factor) is essential for extracellular matrix production and integrin signaling in chondrocytes

    Takashi Nishida, Harumi Kawaki, Ruth M. Baxter, R. Andrea DeYoung, Masaharu Takigawa, Karen M. Lyons

    JOURNAL OF CELL COMMUNICATION AND SIGNALING   1 ( 1 )   45 - 58   2007.6

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    The matricellular protein CCN2 (Connective Tissue Growth Factor; CTGF) is an essential mediator of ECM composition, as revealed through analysis of Ccn2 deficient mice. These die at birth due to complications arising from impaired endochondral ossification. However, the mechanism(s) by which CCN2 mediates its effects in cartilage are unclear. We investigated these mechanisms using Ccn2(-/-) chondrocytes. Expression of type II collagen and aggrecan were decreased in Ccn2(-/-) chondrocytes, confirming a defect in ECM production. Ccn2(-/-) chondrocytes also exhibited impaired DNA synthesis and reduced adhesion to fibronectin. This latter defect is associated with decreased expression of alpha 5 integrin. Moreover, CCN2 can bind to integrin alpha 5 beta 1 in chondrocytes and can stimulate increased expression of integrin alpha 5. Consistent with an essential role for CCN2 as a ligand for integrins, immuno-fluorescence and Western blot analysis revealed that levels of focal adhesion kinase (FAK) and extracellular signal-regulated kinase (ERK)1/2 phosphorylation were reduced in Ccn2(-/-) chondrocytes. These findings argue that CCN2 exerts major effects in chondrocytes through its ability to (1) regulate ECM production and integrin alpha 5 expression, (2) engage integrins and (3) activate integrin-mediated signaling pathways.

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  • Promotion of attachment of human bone marrow stromal cells by CCN2

    Mitsuaki Ono, Satoshi Kubota, Takuo Fujisawa, Wataru Sonoyama, Harumi Kawaki, Kentaro Akiyama, Masamitsu Oshima, Takashi Nishida, Yasuhlro Yoshida, Kazuomi Suzuki, Masaharu Takigawa, Takuo Kuboki

    BIOCHEMICAL AND BIOPHYSICAL RESEARCH COMMUNICATIONS   357 ( 1 )   20 - 25   2007.5

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    Cell attachment is a crucial step in tissue regeneration. In this study, human bone marrow stromal cells (hBMSCs) were isolated, and the effects of CCN2 on their attachment were examined. CCN2 significantly enhanced the hBMSC attachment, and this enhanced cell attachment was mainly regulated by the C-terminal module of CCN2. This enhancement was negated by the anti-integrin alpha(v)beta(3) antibody and p38 MAPK inhibitor, and phosphorylation of p38 MAPK was detected upon the enhanced cell attachment mediated by CCN2. We thus conclude that CCN2 enhances hBMSC attachment via integrin-p38 MAPK signal pathway. Enhanced hBMSC attachment on hydroxyapatite plates by CCN2 further indicated the utility of CCN2 in bone regeneration. (c) 2007 Elsevier Inc. All rights reserved.

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  • Increased connective tissue growth factor relative to brain natriuretic peptide as a determinant of myocardial fibrosis

    Norimichi Koitabashi, Masashi Arai, Shinya Kogure, Kazuo Niwano, Atai Watanabe, Yasuhiro Aoki, Toshitaka Maeno, Takashi Nishida, Satoshi Kubota, Masaharu Takigawa, Masahiko Kurabayashi

    HYPERTENSION   49 ( 5 )   1120 - 1127   2007.5

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    Excessive fibrosis contributes to an increase in left ventricular stiffness. The goal of the present study was to investigate the role of connective tissue growth factor (CCN2/CTGF), a profibrotic cytokine of the CCN (Cyr61, CTGF, and Nov) family, and its functional interactions with brain natriuretic peptide (BNP), an antifibrotic peptide, in the development of myocardial fibrosis and diastolic heart failure. Histological examination on endomyocardial biopsy samples from patients without systolic dysfunction revealed that the abundance of CTGF-immunopositive cardiac myocytes was correlated with the excessive interstitial fibrosis and a clinical history of acute pulmonary congestion. In a rat pressure overload cardiac hypertrophy model, CTGF mRNA levels and BNP mRNA were increased in proportion to one another in the myocardium. Interestingly, relative abundance of mRNA for CTGF compared with BNP was positively correlated with diastolic dysfunction, myocardial fibrosis area, and procollagen type 1 mRNA expression. Investigation with conditioned medium and subsequent neutralization experiments using primary cultured cells demonstrated that CTGF secreted by cardiac myocytes induced collagen production in cardiac fibroblasts. Further, G protein - coupled receptor ligands induced expression of the CTGF and BNP genes in cardiac myocytes, whereas aldosterone and transforming growth factor-beta preferentially induced expression of the CTGF gene. Finally, exogenous BNP prevented the production of CTGF in cardiac myocytes. These data suggest that a disproportionate increase in CTGF relative to BNP in cardiac myocytes plays a central role in the induction of excessive myocardial fibrosis and diastolic heart failure.

    DOI: 10.1161/HYPERTENSIONAHA.106.077537

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  • 軟骨細胞において結合組織成長因子/CCNファミリー2(CTGF/CCN2)はHIF-1αの発現を介してVEGF発現を制御する

    西田崇, 久保田聡, 前田あずさ, 前田あずさ, 服部高子, 川木晴美, 滝川正春

    日本軟骨代謝学会プログラム・抄録集   20th   2007

  • Multiple activation of mitogen-activated protein kinases by purified independent CCN2 modules in vascular endothelial cells and chondrocytes in culture

    S. Kubota, H. Kawaki, S. Kondo, G. Yosimichi, M. Minato, T. Nishida, H. Hanagata, A. Miyauchi, M. Takigawa

    BIOCHIMIE   88 ( 12 )   1973 - 1981   2006.12

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    CCN2 consists of 4 distinct modules that are conserved among various CCN family protein members. From the N-terminus, insulin-like growth factor binding protein (IGFBP), von Willebrand factor type C repeat (VWC), thrombospondin type 1 repeat (TSP1) and C-terminal cysteine-knot (CT) modules are all aligned tandem therein. The multiple functionality of CCN2 is thought to be enabled by the differential use of these modules when interacting with other molecules. In this study, we independently prepared all 4 purified module proteins of human CCN2, utilizing a secretory production system with Brevibacillus choshinensis and thus evaluated the cell biological effects of such single modules. In human umbilical vascular endothelial cells (HUVECs), VWC, TSP and CT modules, as well as a full-length CCN2, were capable of efficiently activating the ERK signal transduction cascade, whereas IGFBP was not. In contrast, the IGFBP module was found to prominently activate JNK in human chondrocytic HCS-2/8 cells, while the others showed similar effects at lower levels. In addition, ERK1/2 was modestly, but significantly activated by IGFBP and VWC in those cells. No single module, but a mixture of the 4 modules provoked a significant activation of p38 MAPK in HCS-2/8 cells, which was activated by the full-length CCN2. Therefore, the signals emitted by CCN2 can be highly differential, depending upon the cell types, which are thus enabled by the tetramodular structure. Furthermore, the cell biological effects of each module on these cells were also evaluated to clarify the relationship among the modules, the signaling pathways and biological outcomes. Our present results not only demonstrate that single CCN2 modules were potent activators of the intracellular signaling cascade to yield a biological response per se, while also providing new insight into the module-wise structural and functional relationship of a prototypic CCN family member, CCN2. (c) 2006 Elsevier Masson SAS. All rights reserved.

    DOI: 10.1016/j.biochi.2006.07.007

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  • Roles of PKC, PI3K and JNK in multiple transduction of CCN2/CTGF signals in chondrocytes

    G Yosimichi, S Kubota, T Nishida, S Kondo, T Yanagita, K Nakao, T Takano-Yamamoto, M Takigawa

    BONE   38 ( 6 )   853 - 863   2006.6

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    CCN2/connective tissue growth factor (CCN2/CTGF) is known to promote both the proliferation and differentiation of chondrocytes, which actions are mediated by ERK and p38 MAPK, respectively. In this study, we first re-evaluated the involvement of multiple MAPKs therein and found that JNK also mediated such CCN2 signals. Thereafter, we further analyzed the roles of upstream kinases. The involvement of PKC, PI3K and PKA in the CCN2 signaling to promote the maturation, proliferation and terminal differentiation of a human chondrocytic cell line, HCS-2/8 and rabbit primary growth cartilage cells was investigated. As a result, the PKC inhibitor calphostin C repressed all of the effects of CCN2, which were represented by increased synthesis of DNA and proteoglycans and the display of alkaline phosphatase activity. In addition, evaluation of the effect of the PI3K inhibitor wortmannin disclosed the contribution of PI3K in transducing CCN2 signals to promote chondrocyte hypertrophy. This signal was known to be mediated by PKB, which was translocated into the nucleus upon CCN2 stimulation. Of note, calphostin C showed inhibitory effects on the activation of p38 MAPK, ERK and also PKB, whereas it exerted no effect on JNK activation. These results suggest that PKC is a driver of multiple signal transducing kinases that promote the proliferation and differentiation of chondrocytes. The requirement of PI3K in transmitting the signal for terminal differentiation and PKC-independent signaling pathways for the promotion of chondrocytic growth and differentiation, which was mediated by JNK, were also uncovered. (c) 2005 Elsevier Inc. All rights reserved.

    DOI: 10.1016/j.bone.2005.11.016

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  • Hypoxic regulation of stability of connective tissue growth factor/CCN2 mRNA by 3 '-untranslated region interacting with a cellular protein in human chondrosarcoma cells

    S Kondo, S Kubota, Y Mukudai, N Moritani, T Nishida, H Matsushita, S Matsumoto, T Sugahara, M Takigawa

    ONCOGENE   25 ( 7 )   1099 - 1110   2006.2

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    Connective tissue growth factor (CTGF/CCN2) can be induced by various forms of stress such as exposure to high glucose, mechanical load, or hypoxia. Here, we investigated the molecular mechanism involved in the induction of ctgf/ccn2 by hypoxia in a human chondrosarcoma cell line, HCS-2/8. Hypoxia increased the ctgf/ccn2 mRNA level by altering the 3'-untranslated region (UTR)-mediated mRNA stability without requiring de novo protein synthesis. After a series of extensive analyses, we eventually found that the cis-repressive element of 84 bases within the 3'-UTR specifically bound to a cytoplasmic/nuclear protein. By conducting a UV crosslinking assay, we found the cytoplasmic/nuclear protein to be a 35 kDa molecule that bound to the cis-element in a hypoxia-inducible manner. These results suggest that a cis-element in the 3'-UTR of ctgf/ccn2 mRNA and trans-factor counterpart(s) play an important role in the post-transcriptional regulation by determining the stability of ctgf/ccn2 mRNA.

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  • CCN ファミリータンパク質の内軟骨性骨化制御機構と骨・軟骨再生作用 Reviewed

    久保田聡, 椋代義樹, 菊池剛, 大野充昭, 川木晴美, 柳田剛志, 西田崇, 田畑泰彦, 窪木拓男, 滝川正春

    第24 回日本骨代謝学会シンポジウム 硬組織再生研究の最前線(2006.7.7. 東京)   24回   72 - 72   2006

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  • The balance of connective tissue growth factor and brain natriuretic peptide regulates myocardial fibrosis and stiffness

    N Koitabashi, M Arai, M Morita, S Hara, K Niwano, A Watanabe, M Kurabayashi, T Nishida, S Kubota, M Takigawa

    JOURNAL OF CARDIAC FAILURE   11 ( 9 )   S278 - S278   2005.12

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  • Effect of connective tissue growth factor (CCN2/CTGF) on proliferation and differentiation of mouse periodontal ligament-derived cells

    Masahiro Asano, Satoshi Kubota, Tohru Nakanishi, Takashi Nishida, Tomoichiro Yamaai, Gen Yosimichi, Kazumi Ohyama, Tomosada Sugimoto, Yoji Murayama, Masaharu Takigawa

    Cell Communication and Signaling   3   2005.10

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    Background: CCN2/CTGF is known to be involved in tooth germ development and periodontal tissue remodeling, as well as in mesenchymal tissue development and regeneration. In this present study, we investigated the roles of CCN2/CTGF in the proliferation and differentiation of periodontal ligament cells (murine periodontal ligament-derived cell line: MPL) in vitro. Results: In cell cultures of MPL, the mRNA expression of the CCN2/CTGF gene was stronger in sparse cultures than in confluent ones and was significantly enhanced by TGF-β. The addition of recombinant CCN2/CTGF (rCCN2) to MPL cultures stimulated DNA synthesis and cell growth in a dose-dependent manner. Moreover, rCCN2 addition also enhanced the mRNA expression of alkaline phosphatase (ALPase), type I collagen, and periostin, the latter of which is considered to be a specific marker of the periosteum and periodontium
    whereas it showed little effect on the mRNA expression of typical osteoblastic markers, e.g., osteopontin and osteocalcin. Finally, rCCN2/CTGF also stimulated ALPase activity and collagen synthesis. Conclusion: These results taken together suggest important roles of CCN2/ CTGF in the development and regeneration of periodontal tissue including the periodontal ligament. © 2005 Asano et al
    licensee BioMed Central Ltd.

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  • Interplay of connective tissue growth factor and brain natriuretic peptide secreted by cardiac myocytes regulates collagen production in cardiac fibroblasts

    N Koitabashi, M Arai, M Morita, S Hara, K Niwano, A Watanabe, M Kurabayashi, S Kubota, T Nishida, M Takigawa

    CIRCULATION   112 ( 17 )   U153 - U153   2005.10

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  • Disproportionate increase of plasma connective tissue growth factor against brain natriuretic peptide is a potential marker of myocardial fibrosis

    N Koitabashi, M Arai, M Morita, S Hara, K Niwano, A Watanabe, M Kurabayashi, S Kubata, T Nishida, M Takigawa

    CIRCULATION   112 ( 17 )   U787 - U787   2005.10

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  • Connective tissue growth factor (CTGF/CCN2) enhanced human bone marrow stromall cell attachment in vitro and migration and survival of the cells in a hydroxyapatite scaffold in vivo.

    M Ono, W Sonoyama, K Akiyama, T Fujisawa, T Nishida, M Takigawa, T Kuboki

    JOURNAL OF BONE AND MINERAL RESEARCH   20 ( 9 )   S203 - S204   2005.9

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  • CONNECTIVE TISSUE GROWTH FACTOR MEDIATES PROFIBROTIC EFFECTS OF TRANSFORMING GROWTH FACTOR-B PRODUCED BY TUBULAR EPITHELIAL CELLS IN RESPONSE TO HIGH GLUCOSE

    Nobutaka Kato, Hirokazu Okada, Tatsuya Kobayashi, Tsutomu Inoue, Tomohiro Kikuta, Yoshihiko Kanno, Yusuke Watanabe, Soichi Sugahara, Hitoshi Hoshi, Keita Sueyoshi, Hiromichi Suzuki

    NEPHROLOGY   10   A24 - A24   2005.6

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  • Collaborative action of M-CSF and CTGF/CCN2 in articular chondrocytes: Possible regenerative roles in articular cartilage metabolism

    K Nakao, S Kubota, H Doi, T Eguchi, M Oka, T Fujisawa, T Nishida, M Takigawa

    BONE   36 ( 5 )   884 - 892   2005.5

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    It is known that expression of the macrophage colony-stimulating factor (M-CSF) gene is induced in articular chondrocytes upon inflammation. However, the functional role of M-CSF in cartilage has been unclear. In this study, we describe possible roles of M-CSF in the protection and maintenance of the articular cartilage based on the results of experiments using human chondrocytic cells and rat primary chondrocytes. Connective tissue growth factor (CTGF/CCN2) is known to be a potent molecule to regenerate damaged cartilage by promoting the growth and differentiation of articular chondrocytes. Here, we uncovered the fact that M-CSF induced the mRNA expression of the ctgf/ccn2 gene in those cells. Enhanced production of CTGF/CCN2 protein by M-CSF was also confirmed. Furthermore, M-CSF could autoactivate the m-csf gene, forming a positive feed-back network to amplify and prolong the observed effects. Finally, promotion of proteoglycan synthesis was observed by the addition of M-CSF. These findings taken together indicate novel roles of M-CSF in articular cartilage metabolism in collaboration with CTGF/CCN2, particularly during an inflammatory response. Such roles of M-CSF were further supported by the distribution of M-CSF producing chondrocytes in experimentally induced rat osteoarthritis cartilage in vivo. © 2004 Elsevier Inc. All rights reserved.

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  • 関節炎と軟骨(2)2 変形性関節症(OA)モデルにおけるM-CSFの産生と修復における意義

    中尾匡志, 久保田聡, 西田崇, 岡森彦, 江口傑徳, 滝川正春

    日本軟骨代謝学会プログラム・抄録集   18th   2005

  • Regeneration of defects in the articular cartilage in rat knee joints by connective tissue growth factor hypertrophic chondrocyte-specific gene product 24 CCN family member 2 (CTGF/Hcs24/CCN2).

    T Nishida, S Kubota, T Kuboki, K Nakao, T Kushibiki, Y Tabata, M Takigawa

    JOURNAL OF BONE AND MINERAL RESEARCH   19   S216 - S216   2004.10

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  • 軟骨細胞におけるM-CSFとCTGFの協調的誘導とその効果

    中尾 匡志, 久保田 聡, 西田 崇, 江口 傑徳, 滝川 正春

    Journal of oral biosciences   46 ( 5 )   396 - 396   2004.9

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  • 唾液腺原発多形性腺腫におけるCTGFの発現は、軟骨様成分の形成に関与するか?

    草深 公秀, 滝川 正春, 西田 崇, 北川 雅恵, 工藤 保誠, 小川 郁子, 高田 隆, 草深 美智

    Journal of oral biosciences   46 ( 5 )   400 - 400   2004.9

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  • Development of the Dentin Regeneration Therapy : Analysis of expression of osteonectin in human dental pulp cells by CTGF stimulation

    TAKAGI Ryo, SHIMIZU Hirotoshi, NISHITANI Yoshihiro, YAMADA Tomiko, TAKAHASHI Kazuhiro, NISHIDA Takashi, TAKIGAWA Masaharu, YAMAUCHI Junichi, YOSHIYAMA Masahiro

    47   90 - 90   2004.5

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  • 結合組織成長因子CTGF/CCN2 によるラット関節軟骨の再生 Reviewed

    久保田聡, 西田崇, 小島俊司, 窪木拓男, 櫛引俊宏, 田畑泰彦, 滝川正春

    第3 回日本再生医療学会(2004.3.23-25. 千葉)   2004

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  • Module-specific antibodies against human connective tissue growth factor: Utility for structural and functional analysis of the factor as related to,chondrocytes

    Minato M. Kubota, S. Kawaki, H, Nishida T, Miyauchi A. Hanagata, H. NakanishiT, Takano-Yamamoto T, Takigawa.M

    J.Biochem   135 ( 3 )   347 - 354   2004

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    Connective tissue growth factor/hypertrophic chondrocyte specific gene product 24 (CTGF/Hcs24/CCN2) shows diverse functions in the process of endochondral ossification. It promotes not only the proliferation and differentiation of chondrocytes and osteoblasts in vitro, but also angiogenesis in vivo. The ctgf gene is a member of the gene family called CCN, and it encodes the characteristic 4-module structure of this family, with the protein containing IGFBP, VWC, TSP and CT modules. We raised several monoclonal antibodies and polyclonal antisera against CTGF, and located the epitopes in the modules by Western blotting. For mapping the epitopes, Brevibacillu-sproduced independent modules were utilized. As a result, at least 1 antibody or antiserum was prepared for the detection of each module in CTGF. Western blotting with these antibodies is expected to be useful for the analysis of CTGF fragmentation. Moreover, we examined the effects of these monoclonal antibodies on the biological functions of CTGF. One out of 3 humanized monoclonal antibodies was found to neutralize efficiently the stimulatory effect of CTGF on chondrocytic cell proliferation. This particular antibody bound to the CT module. In contrast, surprisingly, all of the 3 antibodies recognizing IGFBP, VWC and CT modules stimulated proteoglycan synthesis in chondrocytic cells. Together with previous findings, these results provide insight into the structural-functional relationships of CTGF in executing multiple functions.

    DOI: 10.1093/jb/mvh042

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  • 関節軟骨細胞の修復と維持にM-CSFとCTGFの協調的誘導が関与する

    中尾匡志, 久保田聡, 縄稚久美子, 西田崇, 中西徹, 井上美穂, 滝川正春

    日本軟骨代謝学会プログラム・抄録集   17th   2004

  • ヒト歯髄由来間葉系幹細胞の細胞接着ならびに増殖に対する各種成長因子の影響(第1回 日本再生歯科医学会 学術大会抄録集)

    園山 亘, 藤沢 拓生, 大野 充昭, 志茂 剛, 西田 崇, 滝川 正春, 窪木 拓男

    日本再生歯科医学会誌   1 ( 1 )   77 - 77   2003.12

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  • 象牙質再生療法の開発 : CTGF刺激によるヒト歯髄細胞におけるオステオネクチンの発現の解析(第1回 日本再生歯科医学会 学術大会抄録集)

    高木 了, 武政 栄作, 清水 洋利, 大池 麻紀子, 西谷 佳浩, 山田 登美子, 高橋 和宏, 田代 陽子, 西田 崇, 滝川 正春, 吉山 昌宏

    日本再生歯科医学会誌   1 ( 1 )   81 - 81   2003.12

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  • Blockade of connective tissue growth factor ameliorates renal tubuolointerstitial fibrosis.

    H Yokoi, M Mukoyama, T Nagae, K Mori, T Suganami, K Sawai, T Yoshioka, M Koshikawa, T Nishida, M Takigawa, A Sugawara, K Nakao

    JOURNAL OF THE AMERICAN SOCIETY OF NEPHROLOGY   14   374A - 374A   2003.11

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  • Development of the Dentin Regeneration Therapy : Analysis of expression of osteonectin in human dental pulp cells by CTGF stimulation

    TAKAGI Ryo, TAKEMASA Eisaku, SHIMIZU Hirotoshi, OHIKE Makiko, NISHITANI Yoshihiro, YAMADA Tomiko, TAKAHASHI Kazuhiro, TASHIRO Youko, NISHIDA Takashi, TAKIGAWA Masaharu, YOSHIYAMA Masahiro

    46 ( 1 )   150 - 150   2003.10

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  • 軟骨細胞におけるm-csfr/c-fmsの発現と意義

    中尾 匡志, 久保田 聡, 縄稚 久美子, 岡 森彦, 西田 崇, 中西 徹, 井上 美穗, 滝川 正春

    歯科基礎医学会雑誌   45 ( 5 )   279 - 279   2003.9

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  • モジュール特異的抗体による結合組織成長因子CTGF/Hcs24の構造と機能の解析

    湊 雅直., 久保田 聡, 川木 晴美, 西田 崇, 中西 徹, 山本 照子, 滝川 正春

    歯科基礎医学会雑誌   45 ( 5 )   303 - 303   2003.9

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  • CTGF/Hcs24/CCN2, hypertrophic chondrocyte-specific gene product, interacts with perlecan in regulating the proliferation and differentiation of chondrocytes.

    T Nishida, S Kubota, T Fukunaga, S Kondo, G Yosimichi, T Nakanishi, T Takano-Yamamoto, M Takigawa

    JOURNAL OF BONE AND MINERAL RESEARCH   18   S108 - S108   2003.9

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    DOI: 10.1002/jcp.10277

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  • Tyrosine kinase-type receptors erbB4 and m-csfr/c-fms gene expression in chondrocytes.

    K. Nawachi, S. Kubota, M. Inoue, T. Nishida, T. Kuboki, T. Nakanishi, H. Yatani, M. Takigawa

    JOURNAL OF DENTAL RESEARCH   82   B357 - B357   2003.6

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  • Suppressive effect of overexpressed connective tissue growth factor on tumor cell growth in a human oral squamous cell carcinoma-derived cell line

    NH Moritani, S Kubota, T Nishida, H Kawaki, S Kondo, T Sugahara, M Takigawa

    CANCER LETTERS   192 ( 2 )   205 - 214   2003.3

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    Connective tissue growth factor (CTGF) is known to be a multifunctional growth factor that is overexpressed. in several types of malignancies. In this study, effects of CTGF gene overexpression on the phenotypes of oral squamous cell carcinoma cells were investigated by using a cell line with undetectable endogenous CTGF expression. Surprisingly, our results indicated that CTGF-overexpressed clones were characterized by attenuated cell growth and less potent tumorigenicity, with coincidental downregulation of prothymosin a gene. Although CTGF is known to promote cell proliferation in mesenchymal cells, our present results suggest that CTGF acts as a negative regulator of the cell growth in oral squamous cell carcinoma possibly through its interaction with growth modifiers inside the cell. (C) 2003 Elsevier Science Ireland Ltd. All rights reserved.

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  • Role of CTGF/HCS24/ecogenin in skeletal growth control

    M Takigawa, T Nakanishi, S Kubota, T Nishida

    JOURNAL OF CELLULAR PHYSIOLOGY   194 ( 3 )   256 - 266   2003.3

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    Connective tissue growth factor/hypertrophic chondrocyte-specific gene product 24 (CTGF/Hcs24) is a multifunctional growth factor for chondrocytes, osteoblasts, and vascular endothelial cells. CTGF/Hcs24 promotes the proliferation and maturation of growth cartilage cells and articular cartilage cells in culture and hypertrophy of growth cartilage cells in culture. The factor also stimulates the proliferation and differentiation of cultured osteoblastic cells. Moreover, CTGF/Hcs24 promotes the adhesion, proliferation, and migration of vascular endothelial cells, as well as induces tube formation by the cells and strong angiogenesis in vivo. Because angiogenesis is critical for the replacement of cartilage with bone at the final stage of endochondral ossification and because gene expression of CTGF/Hcs24 predominates in hypertrophic chondrocytes in the physiological state, a major physiological role for this factor should be the promotion of the entire process of endochondral ossification, with the factor acting on the above three types of cells as a paracrine factor. Thus, CTGF/Hcs24 should be called "ecogenin: endochondral ossification genetic factor." In addition to hypertrophic chondrocytes, osteoblasts activated by various stimuli including wounding also express a significantly high level of CTGF/Hcs24. These findings in conjunction with in vitro findings about osteoblasts mentioned above suggest the involvement of CTGF/Hcs24 in intramembranous ossification and bone modeling/remodeling. Because angiogenesis is also critical for intramembranous ossification and bone remodeling, CTGF/Hcs24 expressed in endothelial cells activated by various stimuli including wounding may also play important roles in direct bone formation. In conclusion, although the most important physiological role of CTGF/Hcs24 is ecogenin action, the factors also play important roles in skeletal growth and modeling/remodeling via its direct action on osteoblasts under both physiological and pathological conditions. (C) 2003 Wiley-Liss, Inc.

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  • Hepatocyte growth factor counteracts transforming growth factor-beta1, through attenuation of connective tissue growth factor induction, and prevents renal fibrogenesis in 5/6 nephrectomized mice.

    Inoue T, Okada H, Kobayashi T, Watanabe Y, Kanno Y, Kopp J B, Nishida T, Takigawa M, Ueno M, Nakamura T, Suzuki H

    FASEB J   2003

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  • 成長因子(CTGF)を応用した象牙質再生療法開発の可能性を探る.

    清水洋利, 西谷佳浩, 山田登美子, 高橋和宏, 西田 崇, 滝川正春, 吉山昌宏

    ザ・クインテッセンス   22,222-223   2003

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  • CD44 stimulation by fragmented hyaluronic acid induces upregulation of urokinase-type plasminogen activator and its receptor and subsequently facilitates invasion of human chondrosarcoma cells

    H Kobayashi, M Suzuki, N Kanayama, T Nishida, M Takigawa, T Terao

    INTERNATIONAL JOURNAL OF CANCER   102 ( 4 )   379 - 389   2002.12

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    It has been established that fragmented hyaluronic acid (HA), but not native high molecular weight HA, can induce angiogenesis, cell proliferation and migration. We have studied the outside-in signal transduction pathways responsible for fragmented HA-mediated cancer cell invasion. In our study, we have studied the effects of CD44 stimulation by ligation with HA upon the expression of matrix metalloproteinases (MMPs)-2 and -9 as well as urokinase-type plasminogen activator (uPA), its receptor (uPAR) and its inhibitor (PAI-1) and the subsequent induction of invasion of human chondrosarcoma cell line HCS-2/8. Our study indicates that (i) CD44 stimulation by fragmented HA upregulates expression of uPA and uPAR mRNA and protein but does not affect MMPs secretion or PAW mRNA expression; (ii) the effects of HA fragments are critically HA size dependent: high molecular weight HA is inactive, but lower molecular weight fragmented HA (Mr 33 kDa) is active; (iii) cells can bind avidly Mr 3.5 kDa fragmented HA through a CD44 molecule, whereas cells do not effectively bind higher Mr HA; (iv) a fragmented HA induces phosphorylation of MAP kinase proteins (MEK1/2, ERK1/2 and c-Jun) within 30 min; (v) CD44 is critical for the response (activation of MAP kinase and upregulation of uPA and uPAR expression); and (vi) cell invasion induced by CD44 stimulation with a fragmented HA is inhibited by anti-CD44 mAb, MAP kinase inhibitors, neutralizing anti-uPAR pAb, anti-catalytic anti-uPA mAb or amiloride. Therefore, our study represents the first report that CD44 stimulation induced by a fragmented HA results in activation of MAP kinase and, subsequently, enhances uPA and uPAR expression and facilitates invasion of human chondrosarcoma cells. (C) 2002 Wiley-Liss, Inc.

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  • CTGF/Hcs24 interacts with the cytoskeletal protein actin in chondrocytes

    G Yosimichi, S Kubota, T Hattori, T Nishida, K Nawachi, T Nakanishi, M Kamada, T Takano-Yamamoto, M Takigawa

    BIOCHEMICAL AND BIOPHYSICAL RESEARCH COMMUNICATIONS   299 ( 5 )   755 - 761   2002.12

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    Connective tissue growth factor/hypertrophic chondrocyte-specific gene product 24 (CTGF/Hcs24) displays multiple functions in several types of mesenchymal cells, including the promotion of proliferation and differentiation of chondrocytes. Recently, the internalization and intracellular function of CTGF/Hcs24 were indicated as well. In this study, a binding protein for this factor was purified from the cytosolic fraction of human chondrosarcoma-derived chondrocytic cell line (HCS-2/8) by CTGF/Hcs24-affinity chromatography. The apparent molecular weight of the protein was 42 kDa and determination of the internal amino acid sequence revealed this protein to be beta- or gamma-actin. An in vitro competitive binding assay of I-125-labeled recombinant CTGF/Hcs24 with cold-rCTGF/Hcs24 showed that the binding between actin and I-125-CTGF/Hcs24 was specific. Immunoprecipitation analysis also showed that CTGF/Hcs24 bound to actin in HCS-2/8 cells. However, rCTGF/Hcs24 had no effects on the expression level of gamma-actin mRNA or total actin protein. These findings suggest that a significant portion of intracellular CTGF/Hcs24 may regulate certain cell biological events in chondrocytes through the interaction with this particular cytoskeletal protein. (C) 2002 Elsevier Science (USA). All rights reserved.

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  • Hepatocyte growth factor counteracts transforming growth factor-beta(1), through attenuation of connective tissue growth factor induction, and prevents renal fibrogenesis in 5/6 nephrectomized mice

    T Inoue, H Okada, T Kobayashi, Y Watanabe, Y Kanno, JB Kopp, T Nishida, M Takigawa, M Ueno, T Nakamura, H Suzuki

    FASEB JOURNAL   16 ( 14 )   268 - +   2002.12

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    We investigated the mechanism of the anti-fibrotic effects of hepatocyte growth factor (HGF) in the kidney, with respect to its effect on connective tissue growth factor (CTGF), a down-stream, profibrotic mediator of transforming growth factor-beta(1) (TGF-beta(1)). In wild-type (WT) mice with 5/6 nephrectomy (Nx), HGF and TGF-beta(1) mRNAs increased transiently in the remnant kidney by week 1 after the Nx, returned to baseline levels, and increased again at weeks 4 to 12. In contrast, CTGF and 1(I) procollagen (COLI) mRNAs increased in parallel with HGF and TGF-beta(1) during the early stage, but did not re-increase during the late stage. In the case of TGF-beta(1) transgenic (TG) mice with 5/6 Nx, excess TGF-beta(1) derived from the transgene enhanced CTGF expression significantly in the remnant kidney, accordingly accelerating renal fibrogenesis. Administration of dHGF (5.0 mg/kg/day) to TG mice with 5/6 Nx for 4 weeks from weeks 2 to 6 suppressed CTGF expression in the remnant kidney, attenuating renal fibrosis and improving the survival rate. In an experiment in vitro, renal tubulointerstitial fibroblasts (TFB) were co-cultured with proximal tubular epithelial cells (PTEC). Pretreatment with HGF reduced significantly CTGF induction in PTEC by TGF-beta(1), consequently suppressing COLI synthesis in TFB. In conclusion, HGF can block, at least partially, renal fibrogenesis promoted by TGF-beta1 in the remnant kidney, via attenuation of CTGF induction.

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  • Expression of connective tissue growth factor/hypertrophic chondrocyte-specific gene product 24 (CTGF/Hcs24) during fracture healing

    E Nakata, T Nakanishi, A Kawai, K Asaumi, T Yamaai, M Asano, T Nishida, S Mitani, H Inoue, M Takigawa

    BONE   31 ( 4 )   441 - 447   2002.10

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    Localization and expression of connective tissue growth factor/hypertrophic chondrocyte-specific gene product 24 (CTGF/Hcs24) during fracture healing in mouse ribs were investigated. In situ hybridization demonstrated that CTGF/Hcs24 mRNA was remarkably expressed, especially in hypertrophic chondrocytes and proliferating chondrocytes, in the regions of regenerating cartilage on days 8 and 14 after fracture. CTGF/Hcs24 mRNA was also expressed in proliferating periosteal cells in the vicinity of the fracture sites on days 2 and 8, and in cells in fibrous tissue around the callus on day 8. Northern blot analysis showed that expression of CTGF/Hcs24 mRNA was 3.9 times higher on day 2 of fracture healing than that on day 0. On day 8, it reached a peak of 8.6 times higher than that on day 0. It then declined to a lower level. Immunostaining showed that CTGF/Hcs24 was localized in hypertrophic chondrocytes and proliferating chondrocytes in the regions of regenerating cartilage, and in active osteoblasts in the regions of intramembranous ossification. Although CTGF/Hcs24 was abundant in the proliferating and differentiating cells (on days 8 and 14), immunostaining decreased as the cells differentiated to form bone (on day 20). CTGF/Hcs24 was also detected in cells in fibrous tissue, vascular endothelial cells in the callus, and periosteal cells around the fracture sites. These results suggest that CTGF/Hcs24 plays some role in fracture healing.

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  • 肥大軟骨細胞特異的遺伝子産物CTGF/Hcs24のモジュール特異的抗体の解析とその軟骨細胞分化促進効果

    湊 雅直, 久保田 聡, 川木 晴美, 西田 崇, 中西 徹, 山本 照子, 滝川 正春

    歯科基礎医学会雑誌   44 ( 5 )   388 - 388   2002.9

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  • チロシンキナーゼ型レセプターErbB4遺伝子の軟骨細胞における発現

    縄稚 久美子, 久保田 聡, 西田 崇, 吉道玄, 中西 徹, 完山 学, 窪木 拓男, 矢谷 博文, 山合 友一郎, 滝川 正春

    歯科基礎医学会雑誌   44 ( 5 )   388 - 388   2002.9

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  • ヒト口腔扁平上皮癌細胞株における結合組織成長因子(CTGF)の腫瘍細胞増殖抑制効果

    森谷 徳文, 久保田 聡, 近藤 誠二, 西田 崇, 川木 晴美, 菅原 利夫, 滝川 正春

    歯科基礎医学会雑誌   44 ( 5 )   395 - 395   2002.9

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  • Tyrosine kinase-type receptor ErbB4 in chondrocytes: interaction with connective tissue growth factor and distribution in cartilage

    K Nawachi, M Inoue, S Kubota, T Nishida, G Yosimichi, T Nakanishi, M Kanyama, T Kuboki, H Yatani, T Yamaai, M Takigawa

    FEBS LETTERS   528 ( 1-3 )   109 - 113   2002.9

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    In order to identify receptor molecules that participate in the growth and differentiation of cliondrocytes, we cloned a number of cDNA fragments from HCS-2/8 chondrocytic cells, by using tyrosine kinase-specific primers for amplification. The mRNA expression of one such receptor, ErbB4, was increased by connective tissue growth factorthypertrophic chondrocyte-specific gene product (CTGF/Hes24), which promotes all stages of the endochondral ossification in vitro. ErbB4 expression was observed through all stages of chondrocytic differentiation in vitro, corresponding to the wide distribution of CTGF/Hcs24 target cells. Furthermore, positive signals for erbB4 mRNA were detectable throughout most populations of chondrocytes, in growth and articular cartilage in vivo. These results demonstrate for the first time that ErbB4 is expressed in chondrocytes and may play some roles in chondrocytic growth and differentiation along with CTGF/Hcs24. (C) 2002 Federation of European Biochemical Societies. Published by Elsevier Science B.V. All rights reserved.

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  • Analysis of gene expression in osteoblastic cell stimulated by connective tissue growth factor/hypertrophic chondrocyte-specific gene product 24 (CTGF/Hcs24).

    E Nakata, T Nakanishi, T Nishida, A Kawai, H Doi, H Inoue, M Takigawa

    JOURNAL OF BONE AND MINERAL RESEARCH   17   S224 - S224   2002.9

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  • CTGF/Hcs24 induces chondrocyte differentiation through p38 mitogen-activated protein kinase (p38MAPK), and proliferation through p44/42 MAPK/extracellular-signal regulated kinase (ERK).

    G Yosimichi, T Nakanishi, T Nishida, T Hattori, T Takano-Yamamoto, M Takigawa

    JOURNAL OF BONE AND MINERAL RESEARCH   17   S222 - S223   2002.9

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  • Suppression of urokinase receptor expression by bikunin is associated with inhibition of upstream targets of extracellular signal-regulated kinase-dependent cascade

    H Kobayashi, P Suzuki, N Kanayama, T Nishida, M Takigawa, T Terao

    EUROPEAN JOURNAL OF BIOCHEMISTRY   269 ( 16 )   3945 - 3957   2002.8

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    Our laboratory showed that bikunin, a Kunitz-type protease inhibitor, suppresses 4beta-phorbol 12-myristate 13-acetate (PMA)- or tumor necrosis factor-alpha (TNFalpha)-induced urokinase-type plasminogen activator (uPA) expression in different cell types. In addition to its effects on protease inhibition, bikunin could be modulating other cellular events associated with the metastatic cascade. To test this hypothesis, we examined whether bikunin was able to suppress the expression of uPA receptor (uPAR) mRNA and protein in a human chondrosarcoma cell line, HCS-2/8, and two human ovarian cancer cell lines, HOC-1 and HRA. The present study showed that (a) bikunin suppresses the expression of constitutive and PMA-induced uPAR mRNA and protein in a variety of cell types; (b) an extracellular signal-regulated kinase (ERK) activation system is necessary for the PMA-induced increase in uPAR expression, as PD098059 and U0126, which prevent the activation of MEK1, reduce the uPAR expression; (c) bikunin markedly suppresses PMA-induced phosphorylation of ERK1/2 at the concentration that prevents uPAR expression, but does not reduce total ERK1/2 antigen level; (d) bikunin has no ability to inhibit overexpression of uPAR in cells treated with sodium vanadate; and (e) we further studied the inhibition of uPAR expression by stable transfection of HRA cells with bikunin gene, demonstrating that bikunin secretion is necessary for inhibition of uPAR expression. We conclude that bikunin downregulates constitutive and PMA-stimulated uPAR mRNA and protein possibly through suppression of upstream targets of the ERK-dependent cascade, independent of whether cells were treated with exogenous bikunin or transfected with bikunin gene.

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  • CD44 stimulation by fragmented hyaluronic acid induces upregulation and tyrosine phosphorylation of c-Met receptor protein in human chondrosarcoma cells

    M Suzuki, H Kobayashi, N Kanayama, T Nishida, M Takigawa, T Terao

    BIOCHIMICA ET BIOPHYSICA ACTA-MOLECULAR CELL RESEARCH   1591 ( 1-3 )   37 - 44   2002.8

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    Hepatocyte growth factor/scatter factor (HGF/SF) can induce proliferation and motility and promote invasion of tumor cells. Since HGF/SF receptor, c-Met, is expressed by tumor cells, and since stimulation of CD44, a transmembrane glycoprotein known to bind hyaluronic acid (HA) in its extracellular domain, is involved in activation of c-Met, we have studied the effects of CD44 stimulation by ligation with HA upon the expression and tyrosine phosphorylation of c-Met on human chondrosarcoma cell line HCS-2/8. The current study indicates that (a) CD44 stimulation by fragmented HA upregulates expression of c-Met proteins; (b) fragmented HA also induces tyrosine phosphorylation of c-Met protein within 30 min, an early event in this pathway as shown by the early time course of stimulation; (c) the effects of HA fragments are critically HA size-dependent. High molecular weight HA is inactive, but lower molecular weight fragments (M(r) 3.5 kDa) are active with maximal effect in the mug/ml range; (d) the standard form of CD44 (CD44s) is critical for the response because the effect on c-Met, both in terms of upregulation and phosphorylation, is inhibited by preincubation with an anti-CD44 monoclonal antibody; and (e) phosphorylation of c-Met induced by CD44 stimulation is inhibited by protein tyrosine kinase inhibitor, tyrphostin. Therefore, our study represents the first report that CD44 stimulation induced by fragmented HA enhances c-Met expression and tyrosine phosphorylation in human chondrosarcoma cells. Taken together, these studies establish a signal transduction cascade or cross-talk emanating from CD44 to c-Met. (C) 2002 Elsevier Science B.V. All rights reserved.

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  • CTGF/Hcs24, a hypertrophic chondrocyte-specific gene product, stimulates proliferation and differentiation, but not hypertrophy of cultured articular chondrocytes

    T Nishida, S Kubota, T Nakanishi, T Kuboki, G Yosimichi, S Kondo, M Takigawa

    JOURNAL OF CELLULAR PHYSIOLOGY   192 ( 1 )   55 - 63   2002.7

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    We previously reported that connective tissue growth factor/hypertrophic chondrocyte-specific gene product 24 (CTCF/Hcs24) stimulated the proliferation and differentiation of rabbit growth cartilage (RGC) cells in vitro. In this study, we investigated the effects of CTGF/Hcs24 on the proliferation and differentiation of rabbit articular cartilage (RAC) cells in vitro. RAC cells transduced by recombinant adenoviruses generating mRNA for CTGF/Hcs24 synthesized more proteoglycan than the control cells. Also, treatment of RAC cells with recombinant CTGF/Hcs24 (rCTGF/Hcs24) increased DNA and proteoglycan syntheses in a dose-dependent manner. Northern blot analysis revealed that the rCTGF/Hcs24 stimulated the gene expression of type II collagen and aggrecan core protein, which are markers of chondrocyte maturation, in both RGC and RAC cells. However, the gene expression of type X collagen, a marker of hypertrophic chondrocytes, was stimulated by rCTGF/Hcs24 only in RGC cells, but not in RAC cells. Oppositely, gene expression of tenascin-C, a marker of articular chondrocytes, was stimulated by rCTGF/Hcs24 in RAC cells, but not in RGC cells. Moreover, rCTGF/Hcs24 effectively increased both alkaline phosphatase (ALPase) activity and matrix calcification of RGC cells, but not of RAC cells. These results indicate that CTGF/Hcs24 promotes the proliferation and differentiation of articular chondrocytes, but does not promote their hypertrophy or calcification. Taken together, the data show that CTCF/Hcs24 is a direct growth and differentiation factor for articular cartilage, and suggest that it may be useful for the repair of articular cartilage. (C) 2002 Wiley-Liss, Inc.

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  • CTGF/Hcs24, a hypertrophic chondrocyte-specific gene product, stimulates proliferation and differentiation, but not hypertrophy of cultured articular chondrocytes

    T Nishida, S Kubota, T Nakanishi, T Kuboki, G Yosimichi, S Kondo, M Takigawa

    JOURNAL OF CELLULAR PHYSIOLOGY   192 ( 1 )   55 - 63   2002.7

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    We previously reported that connective tissue growth factor/hypertrophic chondrocyte-specific gene product 24 (CTCF/Hcs24) stimulated the proliferation and differentiation of rabbit growth cartilage (RGC) cells in vitro. In this study, we investigated the effects of CTGF/Hcs24 on the proliferation and differentiation of rabbit articular cartilage (RAC) cells in vitro. RAC cells transduced by recombinant adenoviruses generating mRNA for CTGF/Hcs24 synthesized more proteoglycan than the control cells. Also, treatment of RAC cells with recombinant CTGF/Hcs24 (rCTGF/Hcs24) increased DNA and proteoglycan syntheses in a dose-dependent manner. Northern blot analysis revealed that the rCTGF/Hcs24 stimulated the gene expression of type II collagen and aggrecan core protein, which are markers of chondrocyte maturation, in both RGC and RAC cells. However, the gene expression of type X collagen, a marker of hypertrophic chondrocytes, was stimulated by rCTGF/Hcs24 only in RGC cells, but not in RAC cells. Oppositely, gene expression of tenascin-C, a marker of articular chondrocytes, was stimulated by rCTGF/Hcs24 in RAC cells, but not in RGC cells. Moreover, rCTGF/Hcs24 effectively increased both alkaline phosphatase (ALPase) activity and matrix calcification of RGC cells, but not of RAC cells. These results indicate that CTGF/Hcs24 promotes the proliferation and differentiation of articular chondrocytes, but does not promote their hypertrophy or calcification. Taken together, the data show that CTCF/Hcs24 is a direct growth and differentiation factor for articular cartilage, and suggest that it may be useful for the repair of articular cartilage. (C) 2002 Wiley-Liss, Inc.

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  • Connective tissue growth factor increased by hypoxia may initiate angiogenesis in collaboration with matrix metalloproteinases

    S Kondo, S Kubota, T Shimo, T Nishida, G Yosimichi, T Eguchi, T Sugahara, M Takigawa

    CARCINOGENESIS   23 ( 5 )   769 - 776   2002.5

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    Connective tissue growth factor (CTGF) is known to be a potent angiogenic factor. Here we investigated how CTGF and matrix metalloproteinases (MMPs) are involved in the early stage of hypoxia-induced angiogenesis using human breast cancer cell line, MDA231, and vascular endothelial cells. Hypoxic stimulation (5% O-2) of MDA231 cells increased their steady-state level of ctgf mRNA by similar to2-fold within 1.5 h, and the levels remained at a plateau up to 6 h, and then decreased by 12 h as compared with the cells cultured under the normoxic condition. Membrane-type 1 MMP (MT1-MMP) mRNA levels was also increased within a few hours of the exposure to hypoxia. Indeed, ELISA revealed that the CTGF protein/cell in medium conditioned by MDA231 cells exposed to hypoxia was maximally greater at 24 h than in the medium from normoxic cultures and that the secretion rate (supernatant CTGF/cell layer CTGF) increased in a time-dependent manner from 24 to 72 h of hypoxic exposure. Hypoxic induction of CTGF was also confirmed by immunohistochemical analyses. Furthermore, zymogram analysis revealed that the production of active MMP-9 was also induced in MDA231 cells incubated under hypoxic conditions. Finally, we found that recombinant CTGF also increased the expression of a number of metalloproteinases that play a role in the vascular invasive processes and decreased the expression of tissue inhibitors of metalloproteinases by vascular endothelial cells. These findings suggest that hypoxia stimulates MDA231 cells to release CTGF as an angiogenic modulator, which initiates the invasive angiogenesis cascade by modulating the balance of extracellular matrix synthesis and degradation via MMPs secreted by endothelial cells in response to CTGF. This cascade may play critical roles in the hypoxia-induced neovascularization that accompanies tumor invasion in vivo.

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  • Kunitz-type protease inhibitor bikunin disrupts phorbol ester-induced oligomerization of CD44 variant isoforms containing epitope v9 and subsequently suppresses expression of urokinase-type plasminogen activator in human chondrosarcoma cells. (vol 277, pg 8022, 2002)

    M Suzuki, H Kobayashi, M Fujie, T Nishida, M Takigawa, N Kanayama, T Terao

    JOURNAL OF BIOLOGICAL CHEMISTRY   277 ( 18 )   16346 - 16346   2002.5

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  • Kunitz-type protease inhibitor bikunin disrupts phorbol ester-induced oligomerization of CD44 variant Isoforms containing epitope v9 and subsequently suppresses expression of urokinase-type plasminogen activator in human chondrosarcoma cells

    M Suzuki, H Kobayashi, M Fujie, T Nishida, M Takigawa, N Kanayama, T Terao

    JOURNAL OF BIOLOGICAL CHEMISTRY   277 ( 10 )   8022 - 8032   2002.3

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    We previously found that bikunin (bik), a Kunitz-type protease inhibitor, suppresses phorbol ester (PMA)-stimulated expression of urokinase-type plasminogen activator (uPA). In the present study, we tried to answer this mechanism using human chondrosarcoma HCS-2/8 cells. Our results showed the following novel findings: (a) the standard form of CD44 (CD44s; 85 kDa) is expressed in both unstimulated and PMA-stimulated cells, while CD44v isoforms containing epitope v9 (110 kDa) are strongly up-regulated in response to treatment with PMA, (b) CD44v isoforms containing epitope v9 present on the same cell exclusively form aggregates in stimulated cells; (c) induction of uPA mRNA expression could be achieved by using a second cross-linker antibody to cross-link Fab monomers of anti-CD44; (d) co-treatment of stimulated cells with anti-CD44 mAb alone or anti-CD44v9 mAb alone suppresses PMA-induced clustering of CD44, which results in inhibition of uPA overexpression; (e) bikunin efficiently disrupts PMA-induced clustering of CD44, but does not prevent PMA-induced up-regulation of CD44v isoforms containing epitope v9; and (f) after exposure to bik, similar to150-kDa band is mainly detected with immunoprecipitation and this band is shown to be a heterodimer composed of the 110-kDa v9-containing CD44v isoforms and a 45-kDa bik receptor (bik-R). In conclusion, we provide, for the first time, evidence that the bik-R can physically interact with the CD44v isoforms containing epitope v9 and function as a repressor to down-regulate PMA-stimulated uPA expression, at least in part, by preventing clustering of CD44v isoforms containing epitope v9.

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  • Kunitz-type protease inhibitor bikunin disrupts phorbol ester-induced oligomerization of CD44 variant Isoforms containing epitope v9 and subsequently suppresses expression of urokinase-type plasminogen activator in human chondrosarcoma cells

    M Suzuki, H Kobayashi, M Fujie, T Nishida, M Takigawa, N Kanayama, T Terao

    JOURNAL OF BIOLOGICAL CHEMISTRY   277 ( 10 )   8022 - 8032   2002.3

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    We previously found that bikunin (bik), a Kunitz-type protease inhibitor, suppresses phorbol ester (PMA)-stimulated expression of urokinase-type plasminogen activator (uPA). In the present study, we tried to answer this mechanism using human chondrosarcoma HCS-2/8 cells. Our results showed the following novel findings: (a) the standard form of CD44 (CD44s; 85 kDa) is expressed in both unstimulated and PMA-stimulated cells, while CD44v isoforms containing epitope v9 (110 kDa) are strongly up-regulated in response to treatment with PMA, (b) CD44v isoforms containing epitope v9 present on the same cell exclusively form aggregates in stimulated cells; (c) induction of uPA mRNA expression could be achieved by using a second cross-linker antibody to cross-link Fab monomers of anti-CD44; (d) co-treatment of stimulated cells with anti-CD44 mAb alone or anti-CD44v9 mAb alone suppresses PMA-induced clustering of CD44, which results in inhibition of uPA overexpression; (e) bikunin efficiently disrupts PMA-induced clustering of CD44, but does not prevent PMA-induced up-regulation of CD44v isoforms containing epitope v9; and (f) after exposure to bik, similar to150-kDa band is mainly detected with immunoprecipitation and this band is shown to be a heterodimer composed of the 110-kDa v9-containing CD44v isoforms and a 45-kDa bik receptor (bik-R). In conclusion, we provide, for the first time, evidence that the bik-R can physically interact with the CD44v isoforms containing epitope v9 and function as a repressor to down-regulate PMA-stimulated uPA expression, at least in part, by preventing clustering of CD44v isoforms containing epitope v9.

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  • Development of Dentin Regeneration Therapy : Expression of Type I Collagen and Alkaline Phosphatase Induced by CTGF in Human Cultured Dental Pulp

    Hirotoshi SHIMIZU, Yoshihiro NISHITANI, Tomiko YAMADA, Takashi NISHIDA, Masaharu TAKIGAWA, Masahiro YOSHIYAMA, Department of Operative Dentistry Okayama University Graduate School of Medicine and Dentistry, Department of Operative Dentistry Okayama University Graduate School of Medicine and Dentistry, Department of Operative Dentistry Okayama University Graduate School of Medicine and Dentistry, Department of Biochemistry and Molecular Dentistry Okayama University Graduate School of Medicine and Dentistry, Department of Biochemistry and Molecular Dentistry Okayama University Graduate School of Medicine and Dentistry, Department of Operative Dentistry Okayama University Graduate School of Medicine and Dentistry

    Journal of hard tissue biology = Journal of hard tissue biology   11 ( 2 )   62 - 67   2002

  • 骨軟骨組織修復における結合組織成長因子CTGF/Ecogeninの役割.

    西田 崇, 小島俊司, 久保田聡, 窪木拓男, 田畑泰彦, 櫛引俊宏, 中西 徹, 滝川正春

    第4回大阪組織工学研究セミナー.   2002

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  • CTGF/Hcs24 induces chondrocyte differentiation through a p38 mitogen-activated protein kinase (p38MAPK), and proliferation through a p44/42 MAPK/extracellular-signal regulated kinase (ERK)

    G Yosimichi, T Nakanishi, T Nishida, T Hattori, T Takano-Yamamoto, M Takigawa

    EUROPEAN JOURNAL OF BIOCHEMISTRY   268 ( 23 )   6058 - 6065   2001.12

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    Connective tissue growth factor/hypertrophic chondrocyte specific gene product 24 (CTGF/Hcs24) promotes proliferation and differentiation of chondrocytes in culture. We investigated the roles of two major types of mitogen activated protein kinase (MAPK) in the promotion of proliferation and differentiation by CTGF/Hcs24. Here we report the effects of the MAPKK/MEK 1/2 inhibitor, PD098059, and p38 MAPK inhibitor, SB203580, in a human chondrosarcoma-derived chondrocytic cell line (HCS-2/8) and rabbit growth cartilage (RGC) cells treated with CTGF/Hcs24. In the proliferation phase, CTGF/Hcs24 induced a approximate to fivefold increase in the phosphorylation of p44/42 MAPK/ERK and a approximate to twofold increase in that of p38 MAPK in an in vivo kinase assay. These inhibitors of MAPKK and MAPK suppressed phosphorylation of ets-like gene-1 (Elk-1) and nuclear activating transcription factor-2 (Atf-2) induced by CTGF/Hcs24 in a dose-dependent manner, respectively. Western blot analysis showed that phosphorylation of ERK was induced from 30 to 60 min and phosphorylation of p38 MAPK from 10 to 15 min after the addition of CTGF/Hcs24 in confluence HCS-2/8 cells. PD098059 suppressed the DNA synthesis of HCS-2/8 cells and RGC cells, while SB203580 did not. On the other hand, the p38 MAPK inhibitor, SB203580, completely inhibited the CTGF/Hcs24-induced synthesis of proteoglycans in HCS-2/8 cells and RGC cells but the MEK1/2 inhibitor, PD098059, did not. These results suggest that ERK mediates the CTGF/Hcs24-induced proliferation of chondrocytes, and that p38 MAPK mediates the CTGF/Hcs24-induced differentiation of chondrocytes.

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  • CTGF/Hcs24 induces chondrocyte differentiation through a p38 mitogen-activated protein kinase (p38MAPK), and proliferation through a p44/42 MAPK/extracellular-signal regulated kinase (ERK)

    G Yosimichi, T Nakanishi, T Nishida, T Hattori, T Takano-Yamamoto, M Takigawa

    EUROPEAN JOURNAL OF BIOCHEMISTRY   268 ( 23 )   6058 - 6065   2001.12

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    Connective tissue growth factor/hypertrophic chondrocyte specific gene product 24 (CTGF/Hcs24) promotes proliferation and differentiation of chondrocytes in culture. We investigated the roles of two major types of mitogen activated protein kinase (MAPK) in the promotion of proliferation and differentiation by CTGF/Hcs24. Here we report the effects of the MAPKK/MEK 1/2 inhibitor, PD098059, and p38 MAPK inhibitor, SB203580, in a human chondrosarcoma-derived chondrocytic cell line (HCS-2/8) and rabbit growth cartilage (RGC) cells treated with CTGF/Hcs24. In the proliferation phase, CTGF/Hcs24 induced a approximate to fivefold increase in the phosphorylation of p44/42 MAPK/ERK and a approximate to twofold increase in that of p38 MAPK in an in vivo kinase assay. These inhibitors of MAPKK and MAPK suppressed phosphorylation of ets-like gene-1 (Elk-1) and nuclear activating transcription factor-2 (Atf-2) induced by CTGF/Hcs24 in a dose-dependent manner, respectively. Western blot analysis showed that phosphorylation of ERK was induced from 30 to 60 min and phosphorylation of p38 MAPK from 10 to 15 min after the addition of CTGF/Hcs24 in confluence HCS-2/8 cells. PD098059 suppressed the DNA synthesis of HCS-2/8 cells and RGC cells, while SB203580 did not. On the other hand, the p38 MAPK inhibitor, SB203580, completely inhibited the CTGF/Hcs24-induced synthesis of proteoglycans in HCS-2/8 cells and RGC cells but the MEK1/2 inhibitor, PD098059, did not. These results suggest that ERK mediates the CTGF/Hcs24-induced proliferation of chondrocytes, and that p38 MAPK mediates the CTGF/Hcs24-induced differentiation of chondrocytes.

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  • Expression of connective tissue growth factor/hypertrophic chrondrocyte-specific gene product 24 (CTGF/Hcs24) during fracture healing.

    E Nakata, T Nakanishi, A Kawai, K Asaumi, T Nishida, H Inoue, M Takigawa

    JOURNAL OF BONE AND MINERAL RESEARCH   16   S326 - S326   2001.9

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  • 低酸素によるヒト乳癌細胞における結合組織成長因子CTGF及びマトリクスメタロプロテアーゼの発現誘導

    近藤 誠二, 久保田 聡, 志茂 剛, 西田 崇, 吉道 玄, 江口 傑徳, 菅原 利夫, 滝川 正春

    日本癌学会総会記事   60回   183 - 183   2001.9

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  • 低酸素による結合組織成長因子(CTGF)及びマトリクスメタロプロテアーゼ(MMP)活性の協調的発現誘導

    近藤 誠二, 久保田 聡, 志茂 剛, 西田 崇, 吉道 玄, 江口 傑徳, 菅原 利夫, 滝川 正春

    歯科基礎医学会雑誌   43 ( 5 )   632 - 632   2001.8

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  • Novel mode of processing and secretion of connective tissue growth factor/ecogenin (CTGF/Hcs24) in chondrocytic HCS-2/8 cells

    S Kubota, T Eguchi, T Shimo, T Nishida, T Hattori, S Kondo, T Nakanishi, M Takigawa

    BONE   29 ( 2 )   155 - 161   2001.8

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    The synthesis, processing, and secretion of human connective tissue growth factor (CTGF/Hcs24) in a human chondrocytic cell line, HCS-2/8, were analyzed immunochemically. By metabolic pulse-labeling, chasing, and subsequent immunoprecipitation analyses, active synthesis of CTGF was observed not only in growing HCS-2/8 cells, but also in confluent cells. However, secretion and processing of CTGF were found to be regulated differentially, depending upon the growth status. During phases of growth, HCS-2/8 cells released CTGF molecules immediately without sequestering them within the cell layer. In contrast, after the cells reached confluence, the secretion slowed, resulting in an accumulation of CTGF in the cells or extracellular matrices (ECMs). Also, in confluent cell layers, a 10 kDa protein that was reactive to an anti-CTGF serum was observed. This CTGF-related small protein was not detected immediately after labeling, but gradually appeared within 6 h after chase, which suggests its entity as a processed subfragment of CTGF. Surprisingly, the 10 kDa protein was stable even 48 h after synthesis, and was not released by ECM digestion, suggesting an intracellular maintenance and function. Taken together, the behavior of CTGF in HCS-2/8 cells is remarkably different from that reported in fibroblasts, which may represent unique roles for CTGF in the growth and differentiation of chondrocytes. (C) 2001 by Elsevier Science Inc. All rights reserved.

    DOI: 10.1016/S8756-3282(01)00492-6

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  • 軟骨由来成長因子CTGF/Hcs24のヒト軟骨細胞株HCS-2/8におけるプロセシングと分泌の様態

    久保田 聡, 江口 傑徳, 志茂 剛, 西田 崇, 服部 高子, 近藤 誠二, 中西 徹, 滝川 正春

    日本骨代謝学会雑誌   19 ( 2 )   104 - 104   2001.7

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  • Characterization of binding properties of urinary trypsin inhibitor to cell-associated binding sites on human chondrosarcoma cell line HCS-2/8

    Y Hirashima, H Kobayashi, M Suzuki, Y Tanaka, N Kanayama, M Fujie, T Nishida, M Takigawa, T Terao

    JOURNAL OF BIOLOGICAL CHEMISTRY   276 ( 17 )   13650 - 13656   2001.4

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    Urinary trypsin inhibitor (UTI) forms membrane complexes with UTI-binding proteins (UTI-BPs) and initiates modulation of urokinase-type plasminogen activator (uPA) expression, which results in UTI-mediated suppression of cell invasiveness, It has been established that suppression of uPA expression and invasiveness by UTI is mediated through inhibition of protein kinase C-dependent signaling pathways and that human chondrosarcoma cell line HCS-2/8 expresses two types of UTI-BPs; a 40-kDa UTI-BP (UTI-BP(40)), which:is identical to link protein (LP), and a 45-kDa UTI-BP (UTI-BP(40)). Here we characterize binding properties of UTI-BPs UTI complexes in the cells, In vitro ligand blot, cell binding and competition assays, and Scatchard analyses demonstrate that both UTI-BP(40) and UTP-BP(45) bind (125)I-UTL A deglycosylated form of UTI (NG-UTI), from which the chondroitin-sulfate side chain has been removed, binds only to UTI-BP(40) Additional experiments, using various reagents to block binding of (125)I-UTI and NG-UTI to the UTI-BP(40) and UTI-BP(45) confirm that the chondroitin sulfate Side chain of UTI is required for its binding to UTI-BP(45) analysis of binding of (125)I-UTI and NG-UTI to the cells suggests that low affinity binding sites are the UTI-BP(40) (which can bind NG-UTI), and the high affinity sites are the UTI-BP(45), In addition, UTI-induced suppression of phorbol ester stimulated up-regulation of uPA is inhibited by reagents that were shown to prevent binding of UTI to the 40- and 45-kDa proteins. We conclude that UTI must bind to both of the UTI-BPs to suppress uPA up-regulation.

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  • Characterization of binding properties of urinary trypsin inhibitor to cell-associated binding sites on human chondrosarcoma cell line HCS-2/8

    Y Hirashima, H Kobayashi, M Suzuki, Y Tanaka, N Kanayama, M Fujie, T Nishida, M Takigawa, T Terao

    JOURNAL OF BIOLOGICAL CHEMISTRY   276 ( 17 )   13650 - 13656   2001.4

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    Urinary trypsin inhibitor (UTI) forms membrane complexes with UTI-binding proteins (UTI-BPs) and initiates modulation of urokinase-type plasminogen activator (uPA) expression, which results in UTI-mediated suppression of cell invasiveness, It has been established that suppression of uPA expression and invasiveness by UTI is mediated through inhibition of protein kinase C-dependent signaling pathways and that human chondrosarcoma cell line HCS-2/8 expresses two types of UTI-BPs; a 40-kDa UTI-BP (UTI-BP(40)), which:is identical to link protein (LP), and a 45-kDa UTI-BP (UTI-BP(40)). Here we characterize binding properties of UTI-BPs UTI complexes in the cells, In vitro ligand blot, cell binding and competition assays, and Scatchard analyses demonstrate that both UTI-BP(40) and UTP-BP(45) bind (125)I-UTL A deglycosylated form of UTI (NG-UTI), from which the chondroitin-sulfate side chain has been removed, binds only to UTI-BP(40) Additional experiments, using various reagents to block binding of (125)I-UTI and NG-UTI to the UTI-BP(40) and UTI-BP(45) confirm that the chondroitin sulfate Side chain of UTI is required for its binding to UTI-BP(45) analysis of binding of (125)I-UTI and NG-UTI to the cells suggests that low affinity binding sites are the UTI-BP(40) (which can bind NG-UTI), and the high affinity sites are the UTI-BP(45), In addition, UTI-induced suppression of phorbol ester stimulated up-regulation of uPA is inhibited by reagents that were shown to prevent binding of UTI to the 40- and 45-kDa proteins. We conclude that UTI must bind to both of the UTI-BPs to suppress uPA up-regulation.

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  • 骨形成(骨吸収)因子 肥大軟骨細胞由来の成長因子CTGF/Hcs24の骨芽細胞の増殖と分化に与える影響

    滝川 正春, 西田 崇, 中西 徹, 浅野 将宏, 志茂 剛

    厚生労働省特定疾患対策研究事業研究報告書 脊柱靭帯骨化症に関する調査研究班   平成12年度   54 - 60   2001.3

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    骨芽細胞様細胞株,MC3T3-E1細胞とSaOs-2細胞を組換えCTGF/Hcs24蛋白質(rCTGF/Hcs24)で刺激し,骨芽細胞に対するCTGF/Hcs24の作用を解析した.その結果,コラーゲン合成及びALP活性の促進効果が認められた.又,rCTGF/Hcs24はMC3T3-E1細胞の石灰化を促進し,その効果はBMP-2と同程度であった.これらの結果は,肥大軟骨細胞から産生されたCTGF/Hcs24が骨形成過程にも重要な因子であることを示唆している

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  • Involvement of CTGF, a hypertrophic chondrocyte-specific gene product, in tumor angiogenesis

    T Shimo, T Nakanishi, T Nishida, M Asano, A Sasaki, M Kanyama, T Kuboki, T Matsumura, M Takigawa

    ONCOLOGY   61 ( 4 )   315 - 322   2001

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    Connective tissue growth factor (CTGF) is a potent secreted signaling factor which functions in multiple stages of angiogenesis. In the present study, we examined the role of CTGF in tumor angiogenesis and made the following observations: (1) Histological analysis of human breast cancer (MDA231) cell and human fibrosarcoma (HT1080) cell xenografts in BALB/c nude mice showed a high level of neovascularization. Human squamous cell carcinoma (A431) xenografts induced only a low level of neovascularization. (2) CTGF mRNA was strongly expressed in MDA231 and in HT1080 cells in vivo and in vitro, but not in A431 cells. (3) CTGF protein was markedly produced in MDA231 cells and HT1080 cells and secreted into culture medium, and its production was greater during phases of growth rather than confluency. (4) Production of CTGF in bovine aorta endothelial cells was induced by CTGF, VEGF, bFGF and TGF-beta. (5) Neovascularization induced by HT1080 cells or MDA231 cells on chicken chorioallantoic membrane was suppressed in the presence of neutralizing CTGF-specific polyclonal antibody. These results suggest that CTGF regulates progression in tumor angiogenesis and the release or secretion of CTGF from tumor cells is essential for the angiogenesis. Copyright (C) 2001 S. Karger AG, Basel.

    DOI: 10.1159/000055339

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  • 結合組織成長因子(CTGF/Hcs24)を応用した関節軟骨再生療法の可能性の検討-in vitroおよびin vivoにおける検討-

    西田 崇, 小島俊司, 窪木拓男, 中西 徹, 久保田聡, 滝川正春

    第3回生体組織工学シンポジウム   2001

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  • 軟骨由来の成長因子(Connective Tissue Growth Factor,CTGF/Hcs24)の軟骨細胞増殖,分化促進作用における情報伝達機構の解析

    吉道玄, 中西徹, 西田崇, 服部高子, 山本照子, 滝川正春

    日本骨代謝学会雑誌   19 ( 2 )   2001

  • Expression of Connective Tissue Growth Factor (CTGF/Hcs24) in Angiogenesis with Rheumatoid Arthritis

    SHIBAHARA M.

    74 ( 8 )   S1477   2000.8

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  • Effects of CTGF/Hcs24, a hypertrophic chondrocyte-specific gene product, on the proliferation and differentiation of osteoblastic cells in vitro

    T Nishida, T Nakanishi, M Asano, T Shimo, M Takigawa

    JOURNAL OF CELLULAR PHYSIOLOGY   184 ( 2 )   197 - 206   2000.8

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    Connective tissue growth factor/hypertrophic chondrocyte-specific gene product Hcs24 (CTGF/Hcs24) promotes the proliferation and differentiation of chondrocytes and endothelial cells which are involved in endochondral ossification (Shimo et al., 1998, J Biochem 124:130-140; Shimo el al., 1999, J Biochem 126:137-145; Nakanishi et at., 2000, Endocrinology 141:264-273). To further clarify the role of CTGF/Hcs24 in endochondral ossification, here we investigated the effects of CTGF/Hcs24 on the proliferation and differentiation of osteoblastic cell lines in vitro. A binding study using I-125-labeled recombinant CTGF/Hcs24 (rCTGF/Hcs24) disclosed two classes of specific binding sites on a human osteosarcoma cell line, Saos-2. The apparent dissociation constant (Kd) value of each binding sire was 17.2 and 391 nM, respectively. A cross-linking study revealed the formation of I-125-rCTGF/Hcs24-receptor complex with an apparent molecular weight of 280 kDa. The intensity of I-125-rCTGF/Hcs24-receptor complex decreased on the addition of increasing concentrations of unlabeled rCTGF/Hcs24, but not platelet-derived growth factor-BB homodimer or basic fibroblast growth factor. These findings suggest that osteoblastic cells have specific receptor molecules for CTGF/Hcs24. rCTGF/Hcs24 promoted the proliferation of Saos-2 cells and a mouse osteoblast cell line MC3T3-E1 in a dose- and time-dependent manner. rCTGF/Hcs24 also increased mRNA expression of type I collagen, alkaline phosphatase, osteopontin, and osteocalcin in both Saos-2 cells and MC3T3-E1 cells. Moreover, rCTGF/Hcs24 increased alkaline phosphatase activity in both cells, it also stimulated collagen synthesis in MC3T3-E1 cells. Furthermore, rCTGF/Hcs24 stimulated the matrix mineralization on MC3T3-E1 cells and its stimulatory effect was comparable to that of bone morphogenetic protein-2. These findings indicate that CTGF/Hcs24 is a novel, potent stimulator for the proliferation and differentiation of osteoblasts in addition to chondrocytes and endothelial cells. Because of these functions, we are re-defining CTGF/Hcs24 as a major factor to promote endochondral ossification to be called "ecogenin: endochondral ossification genetic factor." J. Cell. Physiol. 184:197-206, 2000. (C) 2000 Wiley-Liss, Inc.

    DOI: 10.1002/1097-4652(200008)184:2<197::AID-JCP7>3.0.CO;2-R

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  • Effects of CTGF/Hcs24, a hypertrophic chondrocyte-specific gene product, on the proliferation and differentiation of osteoblastic cells in vitro

    T Nishida, T Nakanishi, M Asano, T Shimo, M Takigawa

    JOURNAL OF CELLULAR PHYSIOLOGY   184 ( 2 )   197 - 206   2000.8

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    Connective tissue growth factor/hypertrophic chondrocyte-specific gene product Hcs24 (CTGF/Hcs24) promotes the proliferation and differentiation of chondrocytes and endothelial cells which are involved in endochondral ossification (Shimo et al., 1998, J Biochem 124:130-140; Shimo el al., 1999, J Biochem 126:137-145; Nakanishi et at., 2000, Endocrinology 141:264-273). To further clarify the role of CTGF/Hcs24 in endochondral ossification, here we investigated the effects of CTGF/Hcs24 on the proliferation and differentiation of osteoblastic cell lines in vitro. A binding study using I-125-labeled recombinant CTGF/Hcs24 (rCTGF/Hcs24) disclosed two classes of specific binding sites on a human osteosarcoma cell line, Saos-2. The apparent dissociation constant (Kd) value of each binding sire was 17.2 and 391 nM, respectively. A cross-linking study revealed the formation of I-125-rCTGF/Hcs24-receptor complex with an apparent molecular weight of 280 kDa. The intensity of I-125-rCTGF/Hcs24-receptor complex decreased on the addition of increasing concentrations of unlabeled rCTGF/Hcs24, but not platelet-derived growth factor-BB homodimer or basic fibroblast growth factor. These findings suggest that osteoblastic cells have specific receptor molecules for CTGF/Hcs24. rCTGF/Hcs24 promoted the proliferation of Saos-2 cells and a mouse osteoblast cell line MC3T3-E1 in a dose- and time-dependent manner. rCTGF/Hcs24 also increased mRNA expression of type I collagen, alkaline phosphatase, osteopontin, and osteocalcin in both Saos-2 cells and MC3T3-E1 cells. Moreover, rCTGF/Hcs24 increased alkaline phosphatase activity in both cells, it also stimulated collagen synthesis in MC3T3-E1 cells. Furthermore, rCTGF/Hcs24 stimulated the matrix mineralization on MC3T3-E1 cells and its stimulatory effect was comparable to that of bone morphogenetic protein-2. These findings indicate that CTGF/Hcs24 is a novel, potent stimulator for the proliferation and differentiation of osteoblasts in addition to chondrocytes and endothelial cells. Because of these functions, we are re-defining CTGF/Hcs24 as a major factor to promote endochondral ossification to be called "ecogenin: endochondral ossification genetic factor." J. Cell. Physiol. 184:197-206, 2000. (C) 2000 Wiley-Liss, Inc.

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  • Identity of urinary trypsin inhibitor-binding protein to link protein

    Hiroshi Kobayashi, Yasuyuki Hirashima, Guang Wei Sun, Michio Fujie, Takashi Nishida, Masaharu Takigawa, Toshihiko Terao

    Journal of Biological Chemistry   275 ( 28 )   21185 - 21191   2000.7

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    Urinary trypsin inhibitor (UTI), a Kunitz-type protease inhibitor, directly binds to some types of cells via cell-associated UTI-binding proteins (UTI-BPs). Here we report that the 49-kDa protein (UTI-BP40) was purified from the cultured human chondrosarcoma cell line HCS-2/8 by UTI affinity chromatography. Purified UTI- BP40 was digested with trypsin, and the amino acid sequences of the peptide fragments were determined. The sequences of six tryptic fragments of UTI-BP40 were identical to subsequences present in human link protein (LP). Authentic bovine LP and UTI- BP40 displayed identical electrophoretic and chromatographic behavior. The UTI-binding properties of UTI-BP40 and LP were indistinguishable. Direct binding and competition studies strongly demonstrated that the NH2-terminal fragment is the UTI-binding part of the LP molecule, that the COOH-terminal UTI fragment (HI-8) failed to bind the NH2-terminal subdomain of the LP molecule, and that LP and UTI-BP40 exhibited significant hyaluronic acid binding. These results demonstrate that UTI-BP40 is identical to LP and that the NH2-terminal domain of UTI is involved in the interaction with the NH2-terminal fragment of LP, which is bound to hyaluronic acid in the extracellular matrix.

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  • Identity of urinary trypsin inhibitor-binding protein to link protein

    Hiroshi Kobayashi, Yasuyuki Hirashima, Guang Wei Sun, Michio Fujie, Takashi Nishida, Masaharu Takigawa, Toshihiko Terao

    Journal of Biological Chemistry   275 ( 28 )   21185 - 21191   2000.7

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    Urinary trypsin inhibitor (UTI), a Kunitz-type protease inhibitor, directly binds to some types of cells via cell-associated UTI-binding proteins (UTI-BPs). Here we report that the 49-kDa protein (UTI-BP40) was purified from the cultured human chondrosarcoma cell line HCS-2/8 by UTI affinity chromatography. Purified UTI- BP40 was digested with trypsin, and the amino acid sequences of the peptide fragments were determined. The sequences of six tryptic fragments of UTI-BP40 were identical to subsequences present in human link protein (LP). Authentic bovine LP and UTI- BP40 displayed identical electrophoretic and chromatographic behavior. The UTI-binding properties of UTI-BP40 and LP were indistinguishable. Direct binding and competition studies strongly demonstrated that the NH2-terminal fragment is the UTI-binding part of the LP molecule, that the COOH-terminal UTI fragment (HI-8) failed to bind the NH2-terminal subdomain of the LP molecule, and that LP and UTI-BP40 exhibited significant hyaluronic acid binding. These results demonstrate that UTI-BP40 is identical to LP and that the NH2-terminal domain of UTI is involved in the interaction with the NH2-terminal fragment of LP, which is bound to hyaluronic acid in the extracellular matrix.

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  • Identity of urinary trypsin inhibitor-binding protein to link protein

    H Kobayashi, Y Hirashima, GW Sun, M Fujie, T Nishida, M Takigawa, T Terao

    JOURNAL OF BIOLOGICAL CHEMISTRY   275 ( 28 )   21185 - 21191   2000.7

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    Urinary trypsin inhibitor (UTI), a Kunitz-type protease inhibitor, directly binds to some types of cells via cell-associated UTI-binding proteins (UTI-BPs). Here we report that the 40-kDa protein (UTI-BP(40)) was purified from the cultured human chondrosarcoma cell line HCS-2/8 by UTI affinity chromatography. Purified UTI-BP(40) was digested with trypsin, and the amino acid sequences of the peptide fragments were determined. The sequences of six tryptic fragments of UTI-BP(40) were identical to subsequences present in human link protein (LP). Authentic bovine LP and UTI-BP(40) displayed identical electrophoretic and chromatographic behavior. The UTI-binding properties of UTI-BP(40) and LP were indistinguishable. Direct binding and competition studies strongly demonstrated that the NH(2)-terminal fragment is the UTI-binding part of the LP molecule, that the COOH-terminal UTI fragment (HI-8) failed to bind the NH(2)-terminal subdomain of the LP molecule, and that LP and UTI-BP(40) exhibited significant hyaluronic acid binding. These results demonstrate that UTI-BP(40) is identical to LP and that the NH(2)-terminal domain of UTI is involved in the interaction with the NH(2)-terminal fragment of LP, which is bound to hyaluronic acid in the extracellular matrix.

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  • 肥大軟骨由来の成長因子CTGF/Hcs24による細胞外基質構成タンパク質及び細胞外基質分解酵素発現の制御

    西田 崇, 中西 徹, 志茂 剛, 吉道 玄, 滝川 正春

    日本骨代謝学会雑誌   18 ( 2 )   1 - 1   2000.6

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  • Effects of CTGF/Hcs24, a product of a hypertrophic chondrocyte-specific gene, on the proliferation and differentiation of chondrocytes in culture

    T Nakanishi, T Nishida, T Shimo, K Kobayashi, T Kubo, T Tamatani, K Tezuka, M Takigawa

    ENDOCRINOLOGY   141 ( 1 )   264 - 273   2000.1

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    Recently, we cloned a messenger RNA (mRNA) predominantly expressed in chondrocytes from a human chondrosarcoma-derived chondrocytic cell line, HCS-2/8, by differential display PCR and found that its gene, named hcs24, was identical with that of connective tissue growth factor (CTGF). Here we investigated CTGF/Hcs24 func- tion in the chondrocytic cell line HCS-2/8 and rabbit growth cartilage (RGC) cells. HCS-2/8 cells transfected with recombinant adenoviruses that generate CTGF/Hcs24 sense RNA (mRNA) proliferated more rapidly than HCS-2/8 cells transfected with control adenoviruses. HCS-2/8 cells transfected with recombinant adenoviruses that generate CTGF/Hcs24 sense RNA expressed more mRNA of aggrecan and type X collagen than the control cells. To elucidate the direct action of CTGF/Hcs24 on the cells, we transfected HeLa cells with CTGF/Hcs24 expression vectors, obtained stable transfectants, and purified recombinant CTGF/Hcs24 protein from conditioned medium of the transfectants. The recombinant CTGF/Hcs24 effectively promoted the proliferation of HCS-2/8 cells and RGC cells in a dose-dependent manner and also dose dependently increased proteoglycan synthesis in these cells. In addition, these stimulatory effects of CTGF/Hcs24 were neutralized by the addition of anti-CTGF antibodies. Furthermore, the recombinant CTGF/Hcs24 effectively increased alkaline phosphatase activity in RGC cells in culture. Moreover, RT-PCR analysis revealed that the recombinant CTGF/Hcs24 stimulated gene expression of aggrecan and collagen types II and X in RGC cells in culture. These results indicate that CTGF/Hcs24 directly promotes the proliferation and differentiation of chondrocytes.

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  • Effects of CTGF/Hcs 24, a hypertrophic chondrocyte-specific gene product, on the proliferation and differentiation of osteoblastic cells in vitro

    Takashi Nishida, Tohru Nakanishi, Masahiro Asano, Tsuyoshi Shimo, Masaharu Takigawa

    Journal of Cellular Physiology   184 ( 2 )   197 - 206   2000

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    Connective tissue growth factor/hypertrophic chondrocyte-specific gene product Hcs24 (CTGF/Hcs24) promotes the proliferation and differentiation of chondrocytes and endothelial cells which are involved in endochondral ossification (Shimo et al., 1998, J Biochem 124:130-140
    Shimo et al., 1999, J Biochem 126:137-145
    Nakanishi et al., 2000, Endocrinology 141:264-273). To further clarify the role of CTGF/Hcs24 in endochondral ossification, here we investigated the effects of CTGF/Hcs24 on the proliferation and differentiation of osteoblastic cell lines in vitro. A binding study using 125I-labeled recombinant CTGF/Hcs24 (rCTGF/Hcs24) disclosed two classes of specific binding sites on a human osteosarcoma cell line, Saos-2. The apparent dissociation constant (Kd) value of each binding site was 17.2 and 391 nM, respectively. A cross-linking study revealed the formation of 125I-rCTGF/Hcs24-receptor complex with an apparent molecular weight of 280 kDa. The intensity of 125&gt
    I-rCTGF/Hcs24-receptor complex decreased on the addition of increasing concentrations of unlabeled rCTGF/Hcs24, but not platelet-derived growth factor-BB homodimer or basic fibroblast growth factor. These findings suggest that osteoblastic cells have specific receptor molecules for CTGF/Hcs24. rCTGF/Hcs24 promoted the proliferation of Saos-2 cells and a mouse osteoblast cell line MC3T3-E1 in a dose- and time-dependent manner. rCTGF/Hcs24 also increased mRNA expression of type I collagen, alkaline phosphatase, osteopontin, and osteocalcin in both Saos-2 cells and MC3T3-E1 cells. Moreover, rCTGF/Hcs24 increased alkaline phosphatase activity in both cells. It also stimulated collagen synthesis in MC3T3-E1 cells. Furthermore, rCTGF/Hcs24 stimulated the matrix mineralization on MC3T3-E1 cells and its stimulatory effect was comparable to that of bone morphogenetic protein-2. These findings indicate that CTGF/Hcs24 is a novel, potent stimulator for the proliferation and differentiation of osteoblasts in addition to chondrocytes and endothelial cells. Because of these functions, we are re-defining CTGF/Hcs24 as a major factor to promote endochondral ossification to be called 'ecogenin: endochondral ossification genetic factor.' (C) 2000 Wiley-Liss, Inc.

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  • Effects of CTGF/Hcs 24, a hypertrophic chondrocyte-specific gene product, on the proliferation and differentiation of osteoblastic cells in vitro

    Takashi Nishida, Tohru Nakanishi, Masahiro Asano, Tsuyoshi Shimo, Masaharu Takigawa

    Journal of Cellular Physiology   184 ( 2 )   197 - 206   2000

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    Connective tissue growth factor/hypertrophic chondrocyte-specific gene product Hcs24 (CTGF/Hcs24) promotes the proliferation and differentiation of chondrocytes and endothelial cells which are involved in endochondral ossification (Shimo et al., 1998, J Biochem 124:130-140
    Shimo et al., 1999, J Biochem 126:137-145
    Nakanishi et al., 2000, Endocrinology 141:264-273). To further clarify the role of CTGF/Hcs24 in endochondral ossification, here we investigated the effects of CTGF/Hcs24 on the proliferation and differentiation of osteoblastic cell lines in vitro. A binding study using 125I-labeled recombinant CTGF/Hcs24 (rCTGF/Hcs24) disclosed two classes of specific binding sites on a human osteosarcoma cell line, Saos-2. The apparent dissociation constant (Kd) value of each binding site was 17.2 and 391 nM, respectively. A cross-linking study revealed the formation of 125I-rCTGF/Hcs24-receptor complex with an apparent molecular weight of 280 kDa. The intensity of 125&gt
    I-rCTGF/Hcs24-receptor complex decreased on the addition of increasing concentrations of unlabeled rCTGF/Hcs24, but not platelet-derived growth factor-BB homodimer or basic fibroblast growth factor. These findings suggest that osteoblastic cells have specific receptor molecules for CTGF/Hcs24. rCTGF/Hcs24 promoted the proliferation of Saos-2 cells and a mouse osteoblast cell line MC3T3-E1 in a dose- and time-dependent manner. rCTGF/Hcs24 also increased mRNA expression of type I collagen, alkaline phosphatase, osteopontin, and osteocalcin in both Saos-2 cells and MC3T3-E1 cells. Moreover, rCTGF/Hcs24 increased alkaline phosphatase activity in both cells. It also stimulated collagen synthesis in MC3T3-E1 cells. Furthermore, rCTGF/Hcs24 stimulated the matrix mineralization on MC3T3-E1 cells and its stimulatory effect was comparable to that of bone morphogenetic protein-2. These findings indicate that CTGF/Hcs24 is a novel, potent stimulator for the proliferation and differentiation of osteoblasts in addition to chondrocytes and endothelial cells. Because of these functions, we are re-defining CTGF/Hcs24 as a major factor to promote endochondral ossification to be called 'ecogenin: endochondral ossification genetic factor.' (C) 2000 Wiley-Liss, Inc.

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  • 軟骨由来成長因子CTGF/Hcs24による軟骨分化マーカーII型コラーゲンおよびX型コラーゲンの発現促進に対するMAPキナーゼ経路阻害剤の効果

    吉道玄, 中西徹, 服部高子, 西田崇, 山本照子, 滝川正春

    日本骨代謝学会雑誌   18 ( 2 )   2000

  • 骨折治癒過程における軟骨由来成長因子Hcs24/CTGFの発現 : IN VIVO STUDY

    浅海 浩二, 中西 徹, 浅野 将宏, 西田 崇, 川井 章, 三谷 茂, 浅原 弘嗣, 井上 一, 滝川 正春

    日本整形外科學會雜誌 = The Journal of the Japanese Orthopaedic Association   73 ( 8 )   S1781   1999.8

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  • 軟骨由来成長因子CTGF/Hcs24のマウス発生過程での遺伝子発現のパターン解析

    山合 友一朗, 浅野 将宏, 中西 徹, 西田 崇, 吉道 玄, 服部 高子, 杉本 朋貞, 滝川 正春

    歯科基礎医学会雑誌   41 ( 5 )   464 - 464   1999.8

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  • 骨生物学の進展,細胞分化と組織形成 軟骨由来の成長因子CTGF/Hcs24の骨形成における役割

    滝川 正春, 中西 徹, 志茂 剛, 西田 崇

    日本細胞生物学会大会講演要旨集   52回   26 - 26   1999.8

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  • 骨芽細胞の増殖と分化に与える軟骨由来成長因子CTGF/Hcs24の作用

    西田 崇, 中西 徹, 浅野 将宏, 志茂 剛, 玉谷 卓也, 手塚 克成, 滝川 正春

    生化学   71 ( 8 )   892 - 892   1999.8

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  • 軟骨由来成長因子Hcs24/CTGFはヒト歯根膜由来線維芽細胞の増殖と分化を促進する

    浅野 将宏, 西田 崇, 中西 徹, 坪井 佳子, 吉道 玄, 山本 照子, 滝川 正春

    日本骨代謝学会雑誌 = Japanese journal of bone metabolism   17 ( 2 )   174 - 174   1999.6

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  • 軟骨由来成長因子Hcs24/CTGFのマウス胎生期における発現とCbfa1による制御

    中西 徹, 浅野 将宏, 山合 友一朗, 小守 寿文, 西田 崇, 吉道 玄, 服部 高子, 滝川 正春

    日本骨代謝学会雑誌 = Japanese journal of bone metabolism   17 ( 2 )   5 - 5   1999.6

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  • 軟骨由来成長因子Hcs24/CTGFはヘパラン硫酸に結合し軟骨細胞の接着を促進する

    西田 崇, 中西 徹, 志茂 剛, 浅野 将宏, 吉道 玄, 滝川 正春

    日本骨代謝学会雑誌 = Japanese journal of bone metabolism   17 ( 2 )   82 - 82   1999.6

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  • マウス肋骨骨折モデルにおける軟骨由来成長因子Hcs24/CTGFの発現

    浅海 浩二, 中西 徹, 浅野 将宏, 西田 崇, 浅原 弘嗣, 川井 章, 井上 一, 滝川 正春

    日本骨代謝学会雑誌 = Japanese journal of bone metabolism   17 ( 2 )   11 - 11   1999.6

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  • Connective tissue growth factor induces the proliferation, migration, and tube formation of vascular endothelial cells in vitro, and angiogenesis in vivo

    Tsuyoshi Shimo, Tohru Nakanishi, Takashi Nishida, Masahiro Asano, Manabu Kanyama, Takuo Kuboki, Takuya Tamatani, Katsunari Tezuka, Motohide Takemura, Tomohiro Matsumura, Masaharu Takigawa

    Journal of Biochemistry   126 ( 1 )   137 - 145   1999

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    Connective tissue growth factor (CTGF) is a novel cysteine-rich, secreted protein. Recently, we found that inhibition of the endogenous expression of CTGF by its antisense oligonucleotide and antisense RNA suppresses the proliferation and migration of vascular endothelial cells. In the present study, the following observations demonstrated the angiogenic function of CTGF in vitro and in vivo: (i) purified recombinant CTGF (rCTGF) promoted the adhesion, proliferation and migration of vascular endothelial cells in a dose-dependent manner under serum-free conditions, and these effects were inhibited by anti-CTGF antibodies
    (ii) rCTGF markedly induced the tube formation of vascular endothelial cells, and this effect was stronger than that of basic fibroblast growth factor or vascular endothelial growth factor
    (iii) application of rCTGF to the chicken chorioallantoic membrane resulted in a gross angiogenic response, and this effect was also inhibited by anti-CTGF antibodies. (iv) rCTGF injected with collagen gel into the backs of mice induced strong angiogenesis in vivo. These findings indicate that CTGF is a novel, potent angiogenesis factor which functions in multi-stages in this process.

    DOI: 10.1093/oxfordjournals.jbchem.a022414

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  • Connective tissue growth factor induces the proliferation, migration, and tube formation of vascular endothelial cells in vitro, and angiogenesis in vivo

    Tsuyoshi Shimo, Tohru Nakanishi, Takashi Nishida, Masahiro Asano, Manabu Kanyama, Takuo Kuboki, Takuya Tamatani, Katsunari Tezuka, Motohide Takemura, Tomohiro Matsumura, Masaharu Takigawa

    Journal of Biochemistry   126 ( 1 )   137 - 145   1999

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    Connective tissue growth factor (CTGF) is a novel cysteine-rich, secreted protein. Recently, we found that inhibition of the endogenous expression of CTGF by its antisense oligonucleotide and antisense RNA suppresses the proliferation and migration of vascular endothelial cells. In the present study, the following observations demonstrated the angiogenic function of CTGF in vitro and in vivo: (i) purified recombinant CTGF (rCTGF) promoted the adhesion, proliferation and migration of vascular endothelial cells in a dose-dependent manner under serum-free conditions, and these effects were inhibited by anti-CTGF antibodies
    (ii) rCTGF markedly induced the tube formation of vascular endothelial cells, and this effect was stronger than that of basic fibroblast growth factor or vascular endothelial growth factor
    (iii) application of rCTGF to the chicken chorioallantoic membrane resulted in a gross angiogenic response, and this effect was also inhibited by anti-CTGF antibodies. (iv) rCTGF injected with collagen gel into the backs of mice induced strong angiogenesis in vivo. These findings indicate that CTGF is a novel, potent angiogenesis factor which functions in multi-stages in this process.

    DOI: 10.1093/oxfordjournals.jbchem.a022414

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  • The role of chondrocyte-derived growth factor CTGF (Ecogenin) in osteogenesis

    ASANO Masahiro, NAKANISHI Thru, NISHIDA Takashi, ASAUMI Koji, TAMATANI Takuya, TEZUKA Katsunari, TAKIGAWA Masaharu

    21   488 - 488   1998.12

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  • Molecular function of chondrocyte-derived growth factor CTGF (Ecogenin)

    NAKANISHI Thru, SHIMO Tsuyoshi, NISHIDA Takashi, ASANO Masahiro, YOSHIMICHI Gen, TAMATANI Takuya, TEZUKA Katsunari, TAKIGAWA Masaharu

    21   488 - 488   1998.12

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  • 変形性関節症軟骨におけるCTGFの局在

    柴原 基, 西田 圭一郎, 土井 武, 浅原 弘嗣, 井上 一, 中西 徹, 浅野 将宏, 志茂 剛, 西田 崇, 滝川 正春

    岡山医学会雑誌   110 ( 7〜10 )   165 - 165   1998.10

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  • 軟骨由来成長因子Hcs24/CTGF組換え蛋白質の軟骨細胞及び血管内皮細胞に対する増殖・分化促進作用

    浅野 将宏, 中西 徹, 志茂 剛, 西田 崇, 服部 高子, 滝川 正春

    歯科基礎医学会雑誌   40 ( 抄録 )   389 - 389   1998.9

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  • 軟骨由来成長因子Hcs24/CTGF受容体の同定と軟骨細胞の分化による受容体数の変動

    西田 崇, 中西 徹, 志茂 剛, 浅野 将宏, 服部 高子, 滝川 正春

    歯科基礎医学会雑誌   40 ( 抄録 )   389 - 389   1998.9

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  • 軟骨由来成長因子Hcs24/CTGF組換え蛋白質の内軟骨性骨化促進作用

    中西 徹, 志茂 剛, 西田 崇, 浅野 将宏, 服部 高子, 玉谷 卓也, 手塚 克成, 滝川 正春

    生化学   70 ( 8 )   975 - 975   1998.8

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  • CTGFの慢性関節リウマチ(RA),変形性関節症(OA)膝関節における局在

    柴原 基, 西田 圭一郎, 中西 徹, 浅原 弘嗣, 土井 武, 志茂 剛, 浅野 将宏, 西田 崇, 井上 一, 滝川 正春

    日本整形外科学会雑誌   72 ( 8 )   s1686 - s1686   1998.8

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  • 細胞膜受容体 軟骨由来成長因子Hcs24/CTGF受容体の同定と軟骨細胞の分化に伴う変動

    西田 崇, 中西 徹, 志茂 剛, 浅野 将宏, 服部 高子, 玉谷 卓也, 手塚 克成, 滝川 正春

    生化学   70 ( 8 )   805 - 805   1998.8

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  • 軟骨由来成長因子Hcs24/CTGFの組換え蛋白質は軟骨細胞と血管内皮細胞に働いて内軟骨性骨化を促進する

    中西 徹, 志茂 剛, 西田 崇, 浅野 将宏, 服部 高子, 玉谷 卓也, 手塚 克成, 滝川 正春

    日本骨代謝学会雑誌 = Japanese journal of bone metabolism   16 ( 2 )   28 - 28   1998.7

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  • 軟骨由来成長因子Hcs24/CTGFの特異的受容体の同定と内軟骨性骨化における意義

    西田 崇, 中西 徹, 志茂 剛, 浅野 将宏, 服部 高子, 玉谷 卓也, 手塚 克成, 滝川 正春

    日本骨代謝学会雑誌 = Japanese journal of bone metabolism   16 ( 2 )   27 - 27   1998.7

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  • Demonstration of receptors specific for connective tissue growth factor on a human chondrocytic cell line (HCS-2/8)

    Takashi Nishida, Tohru Nakanishi, Tsuyoshi Shimo, Masahiro Asano, Takako Hattori, Takuya Tamatani, Katsunari Tezuka, Masaharu Takigawa

    Biochemical and Biophysical Research Communications   247 ( 3 )   905 - 909   1998.6

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    The presence of receptors specific for connective tissue growth factor (CTGF) was demonstrated on a human chondrosarcoma-derived chondrocytic cell line, HCS-2/8. The binding of 125I-labeled recombinant CTGF to HCS-2/8 cells was inhibited by unlabeled CTGF but not by PDGF-BB or bFGF. Scatchard analysis revealed the presence of two classes of binding sites with Kd values of 18.6 and 259 nM on cells. A cross-linking study revealed the formation of 125I-CTGF-receptor complex with an apparent molecular weight of 280 kDa. The 125I-CTGF-receptor complex disappeared almost completely on the addition of unlabeled CTGF but not PDGF-BB or bFGF. In addition, the 125I-CTGF-receptor complex was immunoprecipitated with anti-CTGF antiserum but not with anti-PDGF receptor antiserum. These findings suggest that CTGF directly binds to specific receptor molecules on HCS-2/8 cells.

    DOI: 10.1006/bbrc.1998.8895

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  • Induction of in vitro angiogenesis by recombinant chondrocyte-derived growth factor Hcs24 / CTGF

    Shimo T., Nakanishi T., Nishida T., Asano M., Hattori T., Matsumura T., Takigawa M.

    Connective tissue   30 ( 2 )   153 - 153   1998.6

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  • The role of osteogenesis for chondrocyte-derived chondrocyte growth factor Hcs24/CTGF

    NISHIDA Takashi, ASANO Masahiro, MURAYAMA Yoji

    41   118 - 118   1998.5

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  • Inhibition of endogenous expression of connective tissue growth factor by its antisense oligonucleotide and antisense RNA suppresses proliferation and migration of vascular endothelial cells

    Tsuyoshi Shimo, Tohru Nakanishi, Yusuke Kimura, Takashi Nishida, Kiyoto Ishizeki, Tomohiro Matsumura, Masaharu Takigawa

    Journal of Biochemistry   124 ( 1 )   130 - 140   1998

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    Previously, we cloned an mRNA predominantly expressed in hypertrophic chondrocytes by differential display-PCR from a human chondrosarcoma-derived chondrocytic cell line (HCS-2/8) that is identical to that of connective tissue growth factor (CTGF). In the present study, we investigated the roles of CTGF in the proliferation and migration of vascular endothelial cells using its antisense oligonucleotide and antisense RNA, because angiogenesis into the hypertrophic zone of cartilage occurs at the final step of endochondral ossification. Immunohistochemical and immunofluorescence techniques revealed that not only hypertrophic chondrocytes but also endothelial cells in the cost-chondral junctions of mouse ribs were stained with an anti-CTGF antibody in vivo. Northern blot analysis revealed that CTGF was strongly expressed in chondrocytic cells as well as bovine aorta endothelial (BAE) cells in culture, but not in other types of cells such as osteoblastic: cells. Its expression in BAE cells was greater in the growing phase than in the confluent phase. When one-half of a monolayer of a confluent culture of BAE cells had been peeled off, only the cells proliferating and extending into the vacant area were stained with the anti-CTGF antibody. The addition of an antisense oligonucleotide inhibited the proliferation and extension of the BAE cells into the vacant area. The antisense oligonucleotide also inhibited the proliferation of BAE cells in the rapidly proliferating phase. In a Boyden chamber assay, pretreatment with the antisense oligonucleotide markedly inhibited the migration of BAE cells. Furthermore, the abilities to proliferate and migrate of BAE cells, which were stably transfected with expression vectors that generate the antisense RNA of CTGF cDNA, were markedly lower than those of the control. These findings suggest that endogenous CTGF expression is involved in the proliferation and migration of BAE cells.

    DOI: 10.1093/oxfordjournals.jbchem.a022071

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  • Inhibition of endogenous expression of connective tissue growth factor by its antisense oligonucleotide and antisense RNA suppresses proliferation and migration of vascular endothelial cells

    Tsuyoshi Shimo, Tohru Nakanishi, Yusuke Kimura, Takashi Nishida, Kiyoto Ishizeki, Tomohiro Matsumura, Masaharu Takigawa

    Journal of Biochemistry   124 ( 1 )   130 - 140   1998

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    Previously, we cloned an mRNA predominantly expressed in hypertrophic chondrocytes by differential display-PCR from a human chondrosarcoma-derived chondrocytic cell line (HCS-2/8) that is identical to that of connective tissue growth factor (CTGF). In the present study, we investigated the roles of CTGF in the proliferation and migration of vascular endothelial cells using its antisense oligonucleotide and antisense RNA, because angiogenesis into the hypertrophic zone of cartilage occurs at the final step of endochondral ossification. Immunohistochemical and immunofluorescence techniques revealed that not only hypertrophic chondrocytes but also endothelial cells in the cost-chondral junctions of mouse ribs were stained with an anti-CTGF antibody in vivo. Northern blot analysis revealed that CTGF was strongly expressed in chondrocytic cells as well as bovine aorta endothelial (BAE) cells in culture, but not in other types of cells such as osteoblastic: cells. Its expression in BAE cells was greater in the growing phase than in the confluent phase. When one-half of a monolayer of a confluent culture of BAE cells had been peeled off, only the cells proliferating and extending into the vacant area were stained with the anti-CTGF antibody. The addition of an antisense oligonucleotide inhibited the proliferation and extension of the BAE cells into the vacant area. The antisense oligonucleotide also inhibited the proliferation of BAE cells in the rapidly proliferating phase. In a Boyden chamber assay, pretreatment with the antisense oligonucleotide markedly inhibited the migration of BAE cells. Furthermore, the abilities to proliferate and migrate of BAE cells, which were stably transfected with expression vectors that generate the antisense RNA of CTGF cDNA, were markedly lower than those of the control. These findings suggest that endogenous CTGF expression is involved in the proliferation and migration of BAE cells.

    DOI: 10.1093/oxfordjournals.jbchem.a022071

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  • Possible roles of connective tissue growth factor (CTGF)-related gene in angiogenesis.

    T Endo, T Nakanishi, Y Kimura, T Hatton, T Nishida, T Matsumura, M Takigawa

    FASEB JOURNAL   11 ( 9 )   A1451 - A1451   1997.7

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  • 軟骨由来多機能成長因子CTGF/Hcs24の内軟骨性骨形成における役割 : 軟骨・血管・神経における発現と作用機構

    中西 徹, 遠藤 剛, 西田 崇, 服部 高子, 竹林 俊明, 松村 智弘, 石関 清人, 滝川 正春

    日本骨代謝学会雑誌 = Japanese journal of bone metabolism   15 ( 2 )   23 - 23   1997.6

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  • Connective Tissue Growth Factor Mediates TGF-β-stimulated DNA Synthesis in a Human Chondrocytic Cell Line Acting Through Its Specific Receptors.

    西田崇, 中西徹, 志茂剛, 服部高子, 浅野将宏, 玉谷卓也, 手塚克成, 滝川正春

    日本分子生物学会年会プログラム・講演要旨集   20th   1997

  • IL-1 Induces Release of Chondrocyte-associated b-FGF and Production of b-FGF by Chondrocytes

    SASAKI K.

    70 ( 8 )   S1194   1996.8

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  • 軟骨細胞増殖因子Hcs24/CTGFのヒト軟骨細胞様細胞株(HCS-2/8)に対する作用機序

    西田 崇, 中西 徹, 木村 祐輔, 遠藤 剛, 服部 高子, 高橋 浩二郎, 滝川 正春

    日本分子生物学会年会プログラム・講演要旨集   19   171 - 171   1996.8

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  • 軟骨細胞増殖因子Hcs24/CTGFの血管新生における作用

    遠藤 剛, 中西 徹, 木村 祐輔, 服部 高子, 西田 崇, 村上 崇子, 滝川 正春

    日本分子生物学会年会プログラム・講演要旨集   19   171 - 171   1996.8

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  • 軟骨特異的CTGF関連遺伝子hcs24の単離とその機能解析

    中西 徹, 木村 祐輔, 田村 知雄, 遠藤 剛, 西田 崇, 村上 崇子, 服部 高子, 滝川 正春

    日本骨代謝学会雑誌 = Japanese journal of bone metabolism   14 ( 2 )   51 - 51   1996.6

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  • Isolation of a CTGF-related gene from chondrocytes and analysis of its function.

    中西徹, 木村祐輔, 田村知雄, 遠藤剛, 西田崇, 村上崇子, 服部高子, 高橋浩二郎, 滝川正春

    日本分子生物学会年会プログラム・講演要旨集   18th   1995

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  • Expression and function of CCN2-derived circRNAs in chondrocytes.

    2023.12.7 

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    Event date: 2023.12.6 - 2023.12.8

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  • 軟骨細胞におけるCCN2由来circRNAの発現とその機能の可能性

    加藤壮真, 河田かずみ, 西田 崇, 滝川正春, 久保田聡

    第65回歯科基礎医学会  2023.9.18 

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    Event date: 2023.9.16 - 2023.9.18

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  • 軟骨細胞におけるCCN2の核移行の意義

    西田 崇, 滝川正春, 久保田聡

    第14回日本CCNファミリー研究会  2023.9.2 

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    Event date: 2023.9.2

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  • CCN6はBMP2による口腔がん細胞の上皮・間葉転換をコントロールする

    芳地浩彰, 久保田聡, 滝川正春, 西田 崇

    第14回日本CCNファミリー研究会  2023.9.2 

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    Event date: 2023.9.2

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  • 線維化におけるCCN2の転写共役因子としての作用

    西田 崇, 辰川ひなた, 滝川正春, 久保田聡

    第55回日本結合組織学会  2023.6.25 

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    Event date: 2023.6.24 - 2023.6.25

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  • 軟骨細胞におけるメトホルミンによるlong non-coding RNA, UCA1およびCCN2の発現制御。

    近藤 星, 服部高子, 桑原実穂, Fu Shanqi, 西田 崇, 薬師寺翔太, 吉岡洋祐, 森谷徳文, 飯田征二, 滝川正春, 久保田聡

    第45回日本分子生物学会  2022.11.30 

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    Event date: 2022.11.30 - 2022.12.2

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  • 線維化を制御するPU.1とCCN2発現に対するCCN2のイントラクリン作用。

    西田 崇, 滝川正春, 久保田聡

    第95回日本生化学会  2022.11.11 

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    Event date: 2022.11.9 - 2022.11.11

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  • Do not overwork: CCN3 for life in cartilage.

    Kubota S, Kawaki, H, Perbal, B, Takigawa, M, Kawata, K, Hattori1 T, Nishida, T

    The 11th International Workshop on the CCN family of Genes 

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    Event date: 2022.10.20 - 2022.10.24

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  • CCN6はSmad1/5/8のリン酸化を阻害してBMP2促進性の口腔がん細胞の上皮間葉転換を抑制する。

    芳地浩彰, 西田 崇, 滝川正春, 久保田聡

    第64回 歯科基礎医学会  2022.9.17 

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    Event date: 2022.9.17 - 2022.9.18

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  • 線維化を制御するPU.1発現に対する核移行したCCN2の作用。

    西田 崇, 滝川正春, 久保田聡

    第64回 歯科基礎医学会  2022.9.17 

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    Event date: 2022.9.17 - 2022.9.18

    Language:Japanese   Presentation type:Oral presentation (general)  

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  • 口腔がん細胞の上皮間葉転換に与えるCCN6の抑制作用。

    芳地浩彰, 西田 崇, 滝川正春, 久保田聡

    第13回日本CCNファミリー研究会  2022.9.3 

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    Event date: 2022.9.3

    Language:Japanese   Presentation type:Oral presentation (general)  

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  • メトホルミンの軟骨細胞におけるlong non-coding RNA, UCA1およびCCN2の発現制御と代謝における意義。

    近藤 星, 服部高子, 桑原実穂, Fu Shanqi, 西田 崇, 薬師寺翔太, 吉岡洋祐, 森谷徳文, 飯田征二, 滝川正春, 久保田聡

    第13回日本CCNファミリー研究会  2022.9.3 

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    Event date: 2022.9.3

    Language:Japanese   Presentation type:Oral presentation (general)  

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  • 筋線維芽細胞分化における細胞内CCN2の作用。

    西田 崇, 辰川ひなた, 滝川正春, 久保田聡

    第13回日本CCNファミリー研究会  2022.9.3 

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    Event date: 2022.9.3

    Language:Japanese   Presentation type:Symposium, workshop panel (nominated)  

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  • 軟骨細胞におけるCCN2由来環状RNAの発現とその機能の探索。

    加藤壮真, 河田かずみ, 西田 崇, 水川朋美, 飯田征二, 久保田聡

    第13回日本CCNファミリー研究会  2022.9.3 

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    Event date: 2022.9.3

    Language:Japanese   Presentation type:Oral presentation (general)  

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  • CCN6のBMP2とRANKLとの結合を介したEMT及び破骨細胞形成に対する抑制作用。

    芳地浩彰, 西田 崇, 滝川正春, 久保田聡

    第40回日本骨代謝学会  2022.7.23 

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    Event date: 2022.7.22 - 2022.7.23

    Language:Japanese   Presentation type:Oral presentation (general)  

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  • メトホルミンによる非コードRNA誘導と軟骨細胞分化促進作用。

    近藤 星, 服部高子, 桑原実穂, Fu Shanqi, 西田 崇, 薬師寺翔太, 吉岡洋祐, 森谷徳文, 飯田征二, 滝川正春, 久保田聡

    第34回日本軟骨代謝学会  2022.2.18 

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    Event date: 2022.2.18 - 2022.2.19

    Language:Japanese   Presentation type:Oral presentation (general)  

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  • 軟骨細胞における転写因子RFX1を介したCCN3の発現制御機構とその役割。

    水川朋美, 西田 崇, 明石 翔, 河田かずみ, 菊池 菫, 川木晴美, 滝川正春, 上岡 寛, 久保田聡

    第34回日本軟骨代謝学会 

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    Event date: 2022.2.18 - 2022.2.19

    Language:Japanese   Presentation type:Oral presentation (general)  

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  • non-coding RNAを介したメトホルミンの抗線維化作用の解析

    近藤 星、服部高子、桑原実穂、Fu Shanqi、西田 崇、吉岡洋祐、森谷徳文、飯田征二、滝川正春、久保田聡

    第44回日本分子生物学会年会 

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    Event date: 2021.12.2 - 2021.12.4

    Language:Japanese   Presentation type:Poster presentation  

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  • メトホルミンの軟骨細胞におけるUCA1誘導をともなった分化促進作用。

    近藤 星, 服部高子, 桑原実穂, Fu Shanqi, 西田 崇, 吉岡洋祐, 森谷徳文, 飯田征二, 滝川正春, 久保田聡

    第44回日本分子生物学会年会  2021.12.1 

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    Event date: 2021.12.1 - 2021.12.3

    Language:Japanese   Presentation type:Oral presentation (general)  

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  • フッ化ナトリウムによるCCNファミリー遺伝子制御を介した歯肉線維化抑制作用の検討。

    水川朋美, 西田 崇, 明石 翔, 大杉綾花, 大森一弘, 中山真彰, 高柴正悟, 上岡 寛, 滝川正春, 久保田聡

    第42回岡山歯学会  2021.11.28 

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    Event date: 2021.11.28

    Language:Japanese   Presentation type:Oral presentation (general)  

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  • メトホルミンによるUCA1を介した軟骨保護作用の解析。

    近藤 星, 服部高子, 桑原実穂, Fu Shanqi, 西田 崇, 薬師寺翔太, 吉岡洋祐, 森谷徳文, 飯田征二, 滝川正春, 久保田聡

    第42回岡山歯学会  2021.11.28 

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    Event date: 2021.11.28

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  • 口腔がん細胞のEMTと破骨細胞形成におけるCellular Communication Network factor 6 (CCN6)の抑制作用。

    芳地浩彰, 久保田聡, 滝川正春, 西田 崇

    第42回岡山歯学会  2021.11.28 

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    Event date: 2021.11.28

    Language:Japanese   Presentation type:Oral presentation (general)  

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  • 軟骨細胞におけるRFX1を介したCCN3の発現制御機構の解明。

    水川朋美, 西田 崇, 明石 翔, 河田かずみ, 菊池 菫, 川木晴美, 滝川正春, 上岡 寛, 久保田聡

    第94回日本生化学会大会  2021.11.3 

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    Event date: 2021.11.3 - 2021.11.5

    Language:Japanese   Presentation type:Oral presentation (general)  

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  • CCN6 は口腔がん細胞の上皮間葉転換と破骨細胞形成を抑制する。

    芳地浩彰, 西田 崇, 滝川正春, 久保田聡

    第63回歯科基礎医学会  2021.10.9 

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    Event date: 2021.10.9 - 2021.10.17

    Language:Japanese   Presentation type:Poster presentation  

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  • CCN6の破骨細胞形成における阻害作用。

    西田 崇, 芳地浩彰, 青山絵理子, 滝川正春, 久保田聡

    第39回日本骨代謝学会  2021.10.8 

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    Event date: 2021.10.8 - 2021.11.30

    Language:Japanese   Presentation type:Oral presentation (general)  

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  • Circadian production of melatonin and ita receptor influence metabolism and rhythmic gene expression in chondrocytes.

    2021.9.10 

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    Event date: 2021.9.10 - 2021.9.11

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  • 軟骨細解糖阻害剤NaFの線維化抑制効果とCCNファミリー遺伝子の関与。

    水川朋美, 西田 崇, 明石 翔, 堀 彩花, 高柴正悟, 上岡 寛, 滝川正春, 久保田聡

    第62回日本生化学会 中国・四国支部例会  2021.9.10 

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    Event date: 2021.9.10 - 2021.9.11

    Language:Japanese   Presentation type:Oral presentation (general)  

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  • 軟骨細胞でのRFX1によるCCNファミリータンパク質3遺伝子制御メカニズム。

    水川朋美, 西田 崇, 明石 翔, 河田かずみ, 菊池 菫, 川木晴美, 滝川正春, 上岡 寛, 久保田聡

    第12回日本CCNファミリー研究会  2021.9.4 

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    Event date: 2021.9.4

    Language:Japanese   Presentation type:Oral presentation (general)  

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  • Cellular Communication Network factor 6 (CCN6)のEMT 及び破骨細胞形成に対する抑制作用。

    芳地浩彰, 西田 崇, 滝川正春, 久保田聡

    第12回日本CCNファミリー研究会  2021.9.4 

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    Event date: 2021.9.4

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  • メトホルミンの軟骨細胞分化促進作用におけるUCA1とCCN2の役割。

    近藤 星, 服部高子, 桑原実穂, Fu Shanqi, 西田 崇, 吉岡洋祐, 森谷徳文, 飯田征二, 滝川正春, 久保田聡

    第12回日本CCNファミリー研究会  2021.9.4 

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    Event date: 2021.9.4

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  • non-coding RNAを介したメトホルミンの抗線維化作用の解析。

    近藤 星, 服部高子, 桑原実穂, Fu Shanqi, 西田 崇, 吉岡洋祐, 森谷徳文, 飯田征二, 滝川正春, 久保田聡

    第75回日本口腔科学会  2021.5.12 

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    Event date: 2021.5.12 - 2021.5.14

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  • 軟骨細胞における解糖系によるCCN3遺伝子発現制御メカニズム。

    水川朋美, 西田 崇, 明石 翔, 上岡 寛, 滝川正春, 久保田聡

    第33回日本軟骨代謝学会  2021.3.27 

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    Event date: 2021.3.27 - 2021.4.12

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  • LIPUSによる脂肪細胞分化の抑制と骨芽細胞分化への影響

    西田 崇、滝川正春、久保田聡

    第38回日本骨代謝学会学術集会 

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    Event date: 2020.10.9 - 2020.10.11

    Language:Japanese   Presentation type:Oral presentation (general)  

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  • Effect of melatonin on rhythmic gene expression in human articular cartilage

    Fu, S., Kuwahara, M., Uchida, Y., Kondo, S., Hyashi, D., Shimomura, Y., Takagaki, A., Nishida, T., Maruyama, Y., Ikegami, M., Hattori, A., Kubota, S., Hattori, T.

    第38回日本骨代謝学会学術集会 

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    Event date: 2020.10.9 - 2020.10.11

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  • フッ素イオンによるCCNファミリー遺伝子の制御を介した歯肉線維化抑制効果の検証。

    水川朋美、西田 崇、上岡 寛、久保田聡

    第79回日本矯正歯科学会 

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    Event date: 2020.10.9 - 2020.10.11

    Language:Japanese   Presentation type:Oral presentation (general)  

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  • Regulation of CCN3 gene expression by glycolytic activity in chondrocytes. International conference

    Mizukawa, T., Nishida, T., Akashi, S., Kamioka, H., Takigawa, M., Kubota, S.

    The 9th International Orthodontic Congress (9th IOC) 

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    Event date: 2020.10.4 - 2020.10.7

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  • Effect of melatonin on rhythmic gene expression in human articular chondrocytes.

    Fu, S., Kuwahara, M., Uchida, Y., Hyashi, D., Shimomura, Y., Takagaki, A., Nishida, T., Nakata, E., Furumatsu, T., Kondo, S., Maruyama, Y., Hattori, A., Kubota, S., Hattori, T.

    第93回日本生化学会大会 

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    Event date: 2020.9.14 - 2020.9.16

    Language:English   Presentation type:Oral presentation (general)  

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  • CCN2の核移行による線維化の制御。

    西田 崇、滝川正春、久保田聡

    第62回歯科基礎医学会 

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    Event date: 2020.9.11 - 2020.9.13

    Language:Japanese   Presentation type:Oral presentation (general)  

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  • 軟骨細胞での解糖活性によるCCN3遺伝子の発現調節

    水川朋美、西田 崇、明石 翔、掘 綾花、高柴正悟、上岡 寛、滝川正春、久保田聡

    第61回日本生化学会 中国・四国支部例会 

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    Event date: 2020.5.23 - 2020.5.24

    Language:Japanese  

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  • フッ素イオンによるCCNファミリー遺伝子の制御。

    水川朋美、西田 崇、明石 翔、堀 彩花、高柴正悟、上岡 寛、滝川正春、久保田聡

    第40回岡山歯学会 

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    Event date: 2019.12.15

    Language:Japanese   Presentation type:Oral presentation (general)  

    Venue:岡山  

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  • Long noncoding RNAs that regulate CCN2. International conference

    Kubota, S., Ishikawa, T., Mizukawa, T., Kondo, S., El-Seoudi, A., Nishida, T., Hattori, T., Kawata, K., Furumatsu, T., Takarada, T., Ono, M., Takigawa, M.

    The 10th International Workshop of CCN Family of Genes 

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    Event date: 2019.10.21 - 2019.10.23

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  • Role of CCN2 produced by osteocytes in bone remodeling. International conference

    Nishida, T., Kubota, S., Yokoi, H., Mukoyama, M., Takigawa, M.

    The 10th International Workshop of CCN Family of Genes 

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    Event date: 2019.10.21 - 2019.10.23

    Language:English   Presentation type:Oral presentation (general)  

    Venue:Niagara Falls, Canada,  

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  • Circadian production of melatonin in cartilage infuluences chondrocyte rhythmic gene expression.

    Fu, S., Kuwahara, M., Uchida, Y., Kondo, S., Nishida, T., Ikegame, M., Kubota, S., Hattori, T.

    第37回日本骨代謝学会学術集会 

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    Event date: 2019.10.12 - 2019.10.14

    Language:English   Presentation type:Oral presentation (general)  

    Venue:神戸  

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  • 低出力パルス超音波(LIPUS)の半月板修復効果とその作用機序 -CCN2/CTGFの関与。

    青山絵理子、西田 崇、久保田聡、滝川正春

    第61回歯科基礎医学会 

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    Event date: 2019.10.12 - 2019.10.14

    Language:Japanese   Presentation type:Oral presentation (general)  

    Venue:東京  

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  • Angiotensin IIによる軟骨変性作用とそのCCN2による制御機構。

    西田 崇、滝川正春、久保田聡

    第37回日本骨代謝学会学術集会 

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    Event date: 2019.10.12 - 2019.10.14

    Language:Japanese   Presentation type:Oral presentation (general)  

    Venue:神戸  

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  • 脂肪細胞分化に対する低出力パルス超音波(LIPUS)の抑制メカニズムの解明。

    橋谷智子、西田 崇、長尾有里香、滝川正春、久保田聡

    第61回歯科基礎医学会 

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    Event date: 2019.10.12 - 2019.10.14

    Language:Japanese   Presentation type:Poster presentation  

    Venue:東京  

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  • 低出力性パルス超音波(LIPUS)による脂肪細胞分化の多面的抑制機構。

    西田 崇、長尾有里香、橋谷智子、山中信康、滝川正春、久保田聡

    第92回日本生化学会大会 

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    Event date: 2019.9.18 - 2019.9.20

    Language:English   Presentation type:Poster presentation  

    Venue:横浜  

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  • 長鎖(約6kb) lssODNおよびCRISPER/Cas9を用いたヒト科霊長類特異的lncRNAのマウス受精卵へのエレクトロポレーションによるノックインの試み。

    近藤 星、桑原実穂、Fu Shanqi, 池田健司、石川崇典、大野充昭、西田 崇、久保田聡、服部高子

    第92回日本生化学会大会 

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    Event date: 2019.9.18 - 2019.9.20

    Language:Japanese   Presentation type:Oral presentation (general)  

    Venue:横浜  

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  • 長鎖(約6kb) lssODNおよびCRISPER/Cas9を用いたヒト科霊長類特異的lncRNAのマウス受精卵へのエレクトロポレーションによるノックインの試み。

    近藤 星、桑原実穂、Fu Shanqi、武内聡子、池田健司、石川崇典、大野充昭、西田 崇、 久保田聡、服部高子

    Brainstorming- 2019 at Carillon House, 

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    Event date: 2019.9.15 - 2019.9.16

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  • 低出力性パルス超音波(LIPUS)による脂肪細胞分化の抑制機構の解明。

    西田 崇、長尾有里香、橋谷智子、山中信康、滝川正春、久保田聡

    第11回日本CCNファミリー研究会 

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    Event date: 2019.8.31

    Language:Japanese   Presentation type:Oral presentation (general)  

    Venue:岡山  

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  • 軟骨細胞におけるCCNファミリー遺伝子のエネルギー代謝による制御。

    明石 翔、西田 崇、El-Seoudi A、滝川正春、飯田征二、久保田聡

    第32回日本軟骨代謝学会 

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    Event date: 2019.3.1 - 2019.3.2

    Language:Japanese   Presentation type:Oral presentation (general)  

    Venue:大阪  

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  • 軟骨細胞におけるAngiotensin IIの産生調節とその作用

    西田 崇、明石 翔、滝川正春、久保田聡

    第32回日本軟骨代謝学会 

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    Event date: 2019.3.1 - 2019.3.2

    Language:Japanese   Presentation type:Oral presentation (general)  

    Venue:大阪  

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  • 軟骨細胞におけるCCNファミリー遺伝子のエネルギー代謝による制御

    明石 翔、西田 崇、El-Seoudi A、滝川正春、飯田征二、久保田聡

    第32回日本軟骨代謝学会 

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    Event date: 2019.3.1 - 2019.3.2

    Language:Japanese   Presentation type:Oral presentation (general)  

    Venue:大阪  

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  • 軟骨細胞におけるAngiotensin IIの産生調節とその作用。

    西田 崇、明石 翔、滝川正春、久保田聡

    第32回日本軟骨代謝学会 

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    Event date: 2019.3.1 - 2019.3.2

    Language:Japanese   Presentation type:Oral presentation (general)  

    Venue:大阪  

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  • Regenerative repairing effect of low-intensity pulsed ultrasound (LIPUS) on meniscus. International conference

    Kamatsuki, Y., Aoyama, E., Furumatsu, T., Miyazawa, S., Maehara, A., Nishida, T., Kubota, S., Takikgawa, M., Ozaki, T.

    ORS Annual meeting, 

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    Event date: 2019.2.2 - 2019.2.5

    Language:English   Presentation type:Oral presentation (general)  

    Venue:Austin, TX, USA  

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  • Regenerative repairing effect of low-intensity pulsed ultrasound (LIPUS) on meniscus. International conference

    Kamatsuki, Y., Aoyama, E., Furumatsu, T., Miyazawa, S., Maehara, A., Nishida, T., Kubota, S., Takikgawa, M., Ozaki, T.

    ORS Annual meeting 

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    Event date: 2019.2.2 - 2019.2.5

    Language:English   Presentation type:Oral presentation (general)  

    Venue:Austin, TX.  

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  • 軟骨細胞におけるCCNファミリー遺伝子のエネルギー代謝による制御

    明石 翔、西田 崇、El-Seoudi A、滝川正春、飯田征二、久保田聡

    第41回日本分子生物学会年会 

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    Event date: 2018.11.28 - 2018.11.30

    Language:Japanese   Presentation type:Oral presentation (general)  

    Venue:横浜  

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  • 長鎖(約6kb)ssODNおよびCRISPER/Cas9を用いたヒト科霊長類特異的lncRNAのマウス受精卵へのエレクトロポレーションによる高効率ノックインの試み

    近藤 星、桑原実穂、Shanqi, F., 池田健司、石川崇典、大野充昭、西田 崇、久保田聡、服部高子

    第41回日本分子生物学会年会 

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    Event date: 2018.11.28 - 2018.11.30

    Language:English   Presentation type:Poster presentation  

    Venue:横浜  

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  • Effect of Fibroblast growth factor 1 (FGF-1) on connective tissue growth factor (CCN2/CTGF) gene expression in chondrocytic cells and its possible role in osteoarthritis.

    El-Seoudi, A., Abd El Kader, T., Nishida T., Aoyama, E., Eguch, T., Takigawa, M., Kubota, S

    第39回岡山歯学会 

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    Event date: 2018.10.21

    Language:English   Presentation type:Oral presentation (general)  

    Venue:岡山  

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  • LIPUSが半月板修復に与える影響

    釜付祐輔、青山絵理子、古松毅之、前原亜美、山中信康、西田 崇、久保田聡、滝川正春、尾崎敏文

    第33回日本整形外科学会基礎学術集会 

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    Event date: 2018.10.11 - 2018.10.12

    Language:Japanese   Presentation type:Oral presentation (general)  

    Venue:奈良  

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  • Fibroblast Growth Factor 1 (FGF-1) impinges on Chondrocyte Degradation in OA through Matrix Metalloproteinase 13 (MMP-13) and Connective Tissue Growth Factor (CCN2). International conference

    El-Seoudi, A., Abd El Kader, T., Nishida, T., Aoyama, E., Eguchi, T., Takigawa, M. and Kubota, S.

    ASBMR annual meeting 

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    Event date: 2018.9.28 - 2018.10.1

    Language:English   Presentation type:Oral presentation (general)  

    Venue:Montreal, Canada  

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  • Circadian production of melatonin and its receptors in cartilage influences chondrocyte rhythmic gene expression.

    Shanqi Fu、桑原実穂、内田瑶子、林 大智、下村侑司、高垣安紗美、西田 崇、丸山雄介、池亀美華、服部淳彦、服部高子、久保田聡:

    第91回日本生化学会 

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    Event date: 2018.9.24 - 2018.9.26

    Language:English   Presentation type:Oral presentation (general)  

    Venue:京都  

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  • 軟骨細胞におけるCCN3遺伝子の糖代謝を介した制御

    明石 翔、西田 崇、Abdellatif El-Seoudi、滝川正春、飯田征二、久保田聡

    第91回日本生化学会 

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    Event date: 2018.9.24 - 2018.9.26

    Language:English   Presentation type:Poster presentation  

    Venue:京都  

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  • ヒト科霊長類特異的lncRNAのエレクトロポレーションによる マウス受精卵への効率的なノックインの試み

    近藤 星、桑原実穂、Fu Shanqi、池田健司、石川崇典、大野充昭 、西田 崇 、 久保田聡 、服部高子

    ブレインストーミング2018 

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    Event date: 2018.9.15

    Language:English   Presentation type:Poster presentation  

    Venue:瀬戸内市  

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  • CCN2 と Rab14 の相互作用が骨・軟骨細胞の小胞輸送に及ぼす役割 〜軟骨分化促進因子 CCN2 の新たな細胞内機能〜

    星島光博、服部高子、青山絵理子、西田 崇、久保田聡、上岡 寛、滝川正春

    第60回歯科基礎医学会 

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    Event date: 2018.9.5 - 2018.9.7

    Language:Japanese   Presentation type:Oral presentation (general)  

    Venue:福岡  

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  • 培養軟骨細胞においてアンジオテンシン II は CCN2 と MMP9 の産生を制御する

    西田 崇、堀 彩花、滝川正春、久保田聡

    第60回歯科基礎医学会 

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    Event date: 2018.9.5 - 2018.9.7

    Language:Japanese   Presentation type:Oral presentation (general)  

    Venue:福岡  

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  • 低出力性パルス超音波(LIPUS)による脂肪細胞分化抑制機構の解明

    長尾有里香、西田 崇、滝川正春、久保田聡

    第60回歯科基礎医学会 

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    Event date: 2018.9.5 - 2018.9.7

    Language:English   Presentation type:Poster presentation  

    Venue:福岡  

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  • LIPUSによる半月板修復効果の検討

    釜付祐輔、青山絵理子、古松毅之、前原亜美、山中信康、西田 崇、久保田聡、 尾?敏文、滝川正春

    第10回日本CCNファミリー研究会 

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    Event date: 2018.8.25

    Language:Japanese   Presentation type:Oral presentation (general)  

    Venue:岡山  

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  • 軟骨細胞によるCCN2とMMP9産生に対するアンジオテンシンIIの作用 International conference

    西田 崇、堀 彩花、滝川正春、久保田聡

    第10回日本CCNファミリー研究会 

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    Event date: 2018.8.25

    Language:Japanese   Presentation type:Oral presentation (general)  

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  • 軟骨細胞におけるCCN3遺伝子の糖代謝を介した制御

    明石 翔、西田 崇、Abdellatif El-Seoudi、滝川正春、飯田征二、久保田聡

    第10回日本CCNファミリー研究会 

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    Event date: 2018.8.25

    Language:Japanese   Presentation type:Oral presentation (general)  

    Venue:岡山  

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  • 軟骨細胞におけるCCN3遺伝子の糖代謝を介した制御

    明石 翔、西田 崇、El-Seoudi A、滝川正春、飯田征二、久保田聡

    第36回日本骨代謝学会 

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    Event date: 2018.7.26 - 2018.7.28

    Language:English   Presentation type:Poster presentation  

    Venue:長崎  

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  • 局所性Renin-Angiotensin System を介したAngiotensin IIが軟骨基質産生に与える影響

    西田 崇、堀 綾花、滝川正春、久保田聡

    第36回日本骨代謝学会 

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    Event date: 2018.7.26 - 2018.7.28

    Language:English   Presentation type:Poster presentation  

    Venue:長崎  

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  • 低出力パルス超音波(LIPUS)が半月板に与える影響

    釜付祐輔、青山絵理子、古松毅之、前原亜美、山中信康、西田 崇、久保田聡、尾崎敏文、滝川正春

    第36回日本骨代謝学会 

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    Event date: 2018.7.26 - 2018.7.28

    Language:Japanese   Presentation type:Oral presentation (general)  

    Venue:長崎  

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  • 軟骨細胞、骨芽細胞分化にUCA1長鎖ノンコーディングRNAが与える影響

    石川崇典、西田 崇、大野充昭、上岡 寛、滝川正春、久保田聡

    第36回日本骨代謝学会 

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    Event date: 2018.7.26 - 2018.7.28

    Language:English   Presentation type:Poster presentation  

    Venue:長崎  

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  • LIPUSが半月板に与える効果

    釜付祐輔、青山絵理子、古松毅之、前原亜美、山中信康、西田 崇、久保田聡、尾崎敏文、滝川正春

    第50回日本結合組織学会 

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    Event date: 2018.6.29 - 2018.6.30

    Language:Japanese   Presentation type:Oral presentation (general)  

    Venue:福岡  

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  • ヒト軟骨細胞分化におけるUCA1長鎖非コードRNAの役割。

    石川崇典、西田 崇、大野充昭、古松毅之、村瀬友里香、大橋俊孝、滝川正春、久保田聡

    第31回日本軟骨代謝学会  2018 

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    Event date: 2018.3.2 - 2018.3.3

    Language:Japanese   Presentation type:Oral presentation (general)  

    Venue:名古屋  

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  • FGF-1 affects the expression of MMP-13 and CCN2 in chondrocytes: possible role in osteoarthritis

    El-Seoudi, A., Abd El Kader, T., Nishida T., Aoyama, E., Eguch, T., Takigawa, M., Kubota, S.

    第31回日本軟骨代謝学会 

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    Event date: 2018.3.2 - 2018.3.3

    Language:English   Presentation type:Oral presentation (general)  

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  • 半月板に対する低出力パルス超音波(LIPUS)の効果

    釜付祐輔、青山絵理子、古松毅之、前原亜美、山中信康、西田 崇、久保田聡、尾崎敏文、滝川正春

    第31回日本軟骨代謝学会 

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    Event date: 2018.3.2 - 2018.3.3

    Language:Japanese   Presentation type:Oral presentation (general)  

    Venue:名古屋  

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  • 培養軟骨細胞におけるCCN2及びMMP9の産生に対するアンジオテンシンIIの作用

    西田 崇、滝川正春、久保田聡

    第31回日本軟骨代謝学会 

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    Event date: 2018.3.2 - 2018.3.3

    Language:Japanese   Presentation type:Oral presentation (general)  

    Venue:名古屋  

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  • 軟骨細胞におけるCCN3遺伝子の糖代謝を介した制御

    明石 翔、西田 崇、El-Seoudi A、滝川正春、飯田征二、久保田聡

    第31回日本軟骨代謝学会 

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    Event date: 2018.3.2 - 2018.3.3

    Language:Japanese   Presentation type:Oral presentation (general)  

    Venue:名古屋  

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  • 低出力パルス超音波(LIPUS)によりCCN2の発現・産生は増加する。

    釜付祐輔、青山絵理子、古松毅之、前原亜美、山中信康、西田 崇、久保田聡、滝川正春、尾崎敏文

    第40回日本分子生物学会 第90回日本生化学会大会  2017 

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    Event date: 2017.12.6 - 2017.12.9

    Language:English   Presentation type:Poster presentation  

    Venue:神戸  

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  • CCN2とRab14の相互作用が骨・軟骨細胞の小胞輸送に及ぼす役割。2

    星島光博、服部高子、青山絵理子、西田 崇、田中智代、久保田聡、上岡 寛、滝川正春

    第40回日本分子生物学会 第90回日本生化学会大会  2017 

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    Event date: 2017.12.6 - 2017.12.9

    Language:English   Presentation type:Poster presentation  

    Venue:神戸  

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  • 軟骨組織におけるメラトニン合成とその受容体発現は概日リズムを持ち、軟骨細胞の代謝に影響を及ぼす。

    服部高子、Shanqi Fu、桑原実穂、内田瑶子、近藤 星、林 大智、下村 侑司、高垣安紗美、西田 崇、丸山 雄介、池亀 美華、服部 淳彦、久保田聡

    第40回日本分子生物学会 第90回日本生化学会大会  2017 

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    Event date: 2017.12.6 - 2017.12.9

    Language:English   Presentation type:Poster presentation  

    Venue:神戸  

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  • CCN proteins as targets for skeletal regulation theraphy. International conference

    Takigawa, M., Hara, C., Kamatsuki, Y., Aoyama, E., Janune, D., Furumatsu, T., Nishida, T., Hattori, T., Yamanaka, N., Kamioka, H., Ozaki, T., Kubota, S

    Ninth International Workishop on the CCN Family of Genes  2017 

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    Event date: 2017.11.2 - 2017.11.7

    Language:English   Presentation type:Symposium, workshop panel (public)  

    Venue:Saint-Malo, France  

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  • Small compounds that turn on CCN family genes International conference

    Kubota, S., Hara, E. S., Akashi, S., Ono, M., Nishida, T., Hattori, T., Kuboki, T., Takigawa M.

    inth International Workishop on the CCN Family of Genes  2017 

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    Event date: 2017.11.2 - 2017.11.7

    Language:English   Presentation type:Symposium, workshop panel (public)  

    Venue:Saint-Malo, France  

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  • 軟骨細胞におけるCCN3遺伝子の糖代謝を介した制御。

    明石 翔、西田 崇、El-Seoudi A、滝川正春、飯田征二、久保田聡

    第38回岡山歯学会  2017 

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    Event date: 2017.10.1

    Language:Japanese   Presentation type:Oral presentation (general)  

    Venue:岡山  

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  • LIPUSにより半月板でのCCN2の発現・産生は増加する。

    釜付祐輔、青山絵理子、古松毅之、前原亜美、山中信康、西田 崇、久保田聡、滝川正春、尾崎敏文

    第36回日本運動器移植・再生医学研究会  2017 

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    Event date: 2017.9.29 - 2017.9.30

    Language:Japanese   Presentation type:Oral presentation (general)  

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  • 老齢期の破骨細胞形成における骨細胞由来のCCN2の役割。

    西田 崇、久保田聡、滝川正春

    第59回歯科基礎医学会  2017 

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    Event date: 2017.9.16 - 2017.9.17

    Presentation type:Oral presentation (general)  

    Venue:松本  

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  • 軟骨細胞におけるセロトニンによるCCN2の産生制御機構の解明。

    堀 綾花、西田 崇、高柴正悟、久保田聡、滝川正春

    第9回日本CCNファミリー研究会  2017 

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    Event date: 2017.8.26

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    Venue:岡山  

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  • Catabolic effects of FGF-1 on chondrocytes with reduced CCN2 production and its possible role in osteoarthritis.

    El-Seoudi, A., Abd El Kader, T., Nishida T., Aoyama, E., Eguch, T., Takigawa, M., Kubota, S.

    Ninth International Workishop on the CCN Family of Genes,  2017 

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    Event date: 2017.8.26

    Language:English   Presentation type:Oral presentation (general)  

    Venue:岡山  

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  • Catabolic effects of FGF-1 on chondrocytes with reduced CCN2 production and its possible role in osteoarthritis.

    El-Seoudi, A., Abd El Kader, T., Nishida T., Aoyama, E., Eguch, T., Takigawa, M., Kubota, S.

    第9回日本CCNファミリー研究会  2017 

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    Event date: 2017.8.26

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    Venue:岡山  

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  • 培養軟骨細胞のCCN2産生における低出力性パルス超音波(LIPUS)処置の作用メカニズムの解明。

    西田 崇、久保田聡、青山絵理子、山中信康、Karen M. Lyons、滝川正春

    第9回日本CCNファミリー研究会 

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    Event date: 2017.8.26

    Language:Japanese   Presentation type:Symposium, workshop panel (nominated)  

    Venue:岡山  

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  • Catabolic effects of FGF-1 on chondrocytes with reduced CCN2 production that promotes cartilage regeneration: Possible role in osteoarthritis.

    El-Seoudi, A., Abd El Kader, T., Nishida T., Aoyama, E., Eguch, T., Takigawa, M., Kubota, S.

    第35回日本骨代謝学会  2017 

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    Event date: 2017.7.27 - 2017.7.29

    Language:English   Presentation type:Oral presentation (general)  

    Venue:福岡  

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  • 老齢マウスにおいて骨細胞由来CCN2は骨髄細胞由来CCN2よりも破骨細胞形成と骨リモデリングに重要である。

    田 崇、久保田聡、横井秀基、向山政志、滝川正春

    第35回日本骨代謝学会  2017 

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    Event date: 2017.7.27 - 2017.7.29

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    Venue:福岡  

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  • 軟骨細胞分化に関わる長鎖非コードRNAの骨形成における役割。

    石川崇典、村瀬友里香、西田 崇、服部高子、大野充昭、上岡 寛、滝川正春、久保田聡

    第35回日本骨代謝学会  2017 

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    Event date: 2017.7.27 - 2017.7.29

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    Venue:福岡  

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  • 低出力パルス超音波(LIPUS)が半月板中のCCN2, CCN3に与える効果。

    釜付祐輔、青山絵理子、古松毅之、前原亜美、山中信康、西田 崇、久保田聡、滝川正春、尾崎敏文

    第35回日本骨代謝学会  2017 

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    Event date: 2017.7.27 - 2017.7.29

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    Venue:福岡  

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  • 関節?成長板軟骨細胞におけるセロトニン (5-HT)によるCCN2産生の差別的制御メカニズム。

    堀 綾花、西田 崇、高柴正悟、久保田聡、滝川正春

    第35回日本骨代謝学会 

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    Event date: 2017.7.27 - 2017.7.29

    Language:Japanese   Presentation type:Oral presentation (general)  

    Venue:福岡  

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  • 半月板におけるCCN2, CCN3に与える低出力パルス超音波(LIPUS)の効果。

    釜付祐輔、青山絵理子、古松毅之、前原亜美、山中信康、西田 崇、久保田聡、滝川正春、尾崎敏文:

    第49回日本結合組織学会学術大会  2017 

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    Event date: 2017.6.16 - 2017.6.17

    Language:Japanese   Presentation type:Oral presentation (general)  

    Venue:津  

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  • 細胞外情報を統合するCCNファミリー遺伝子の糖代謝を介した制御。

    明石 翔、西田 崇、El-Seoudi A、滝川正春、飯田征二、久保田聡

    第58回日本生化学会中国・四国支部例会  2017 

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    Event date: 2017.5.20 - 2017.5.21

    Language:Japanese   Presentation type:Oral presentation (general)  

    Venue:香川  

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  • 軟骨細胞のCCN2産生に対するセロトニン(5-HT)の制御機構の解明。

    堀 綾花、西田 崇、高柴正悟、久保田聡、滝川正春

    第30回日本軟骨代謝学会  2017 

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    Event date: 2017.3.3 - 2017.3.4

    Language:Japanese   Presentation type:Oral presentation (general)  

    Venue:京都  

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  • 軟骨細胞分化に関わる長鎖ノンコーディングRNAの解析。

    石川崇典、村瀬友里香、西田 崇、服部高子、大野充昭、古松毅之、滝川正春、久保田聡

    第30回日本軟骨代謝学会  2017 

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    Event date: 2017.3.3 - 2017.3.4

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    Venue:京都  

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  • 軟骨細胞におけるCCN2産生に対するセロトニン(5-HT)の作用。

    堀 綾花、西田 崇、高柴正悟、久保田聡、滝川正春

    第37回岡山歯学会  2016 

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    Event date: 2016.10.16

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    Venue:岡山  

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  • 軟骨細胞におけるセロトニン(5−HT)のCCN2産生促進機構の解明。

    堀 綾花、西田 崇、高柴正悟、久保田聡、滝川正春

    第8回日本CCNファミリー研究会  2016 

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    Event date: 2016.8.27

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    Venue:岡山  

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  • 骨のリモデリング期のCCN2欠損は骨細胞由来の破骨細胞形成を抑制する。

    西田 崇、久保田聡、横井秀基、向山政志、滝川正春

    第8回日本CCNファミリー研究会  2016 

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    Event date: 2016.8.27

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    Venue:岡山  

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  • Mechanism of the catabolic effects of Fibroblast Growth Factor (FGF-1) on chondrocytes and its role in CCN2 regulation.

    Elseoudi, A., Abd El Kader, T., Nishida T., Aoyama, E., Eguch, T., Takigawa, M., Kubota, S.

    第8回日本CCNファミリー研究会  2016 

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    Event date: 2016.8.27

    Language:English   Presentation type:Oral presentation (general)  

    Venue:岡山  

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  • 軟骨組織におけるメラトニンの作用。

    服部高子、西田 崇、久保田聡

    第58回歯科基礎医学会学術大会  2016 

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    Event date: 2016.8.24 - 2016.8.26

    Language:Japanese   Presentation type:Oral presentation (general)  

    Venue:札幌  

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  • タモキシフェン誘導性CCN2欠損マウス由来の骨細胞様細胞の破骨細胞形成能。

    西田 崇、久保田聡、滝川正春

    第58回歯科基礎医学会学術大会  2016 

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    Event date: 2016.8.24 - 2016.8.26

    Language:Japanese   Presentation type:Oral presentation (general)  

    Venue:札幌  

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  • 骨細胞様細胞におけるCCN2の欠損は破骨細胞形成を抑制する。

    西田 崇、久保田聡、横井秀基、向山政志、滝川正春

    第34回日本骨代謝学会学術集会 第3回アジア太平洋骨代謝学会議  2016 

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    Event date: 2016.7.20 - 2016.7.23

    Language:Japanese   Presentation type:Oral presentation (general)  

    Venue:大阪  

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  • 軟骨細胞形質に関わる長鎖非コードRNAの探索。

    石川崇典、村瀬友里香、西田 崇、服部高子、滝川正春、上岡 寛、久保田聡

    第34回日本骨代謝学会学術集会 第3回アジア太平洋骨代謝学会議  2016 

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    Event date: 2016.7.20 - 2016.7.23

    Language:Japanese   Presentation type:Oral presentation (general)  

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  • セロトニン(5-HT)による軟骨細胞におけるCCN2産生の作用機構の解明。

    堀 綾花、西田 崇、久保田聡、滝川正春

    第34回日本骨代謝学会学術集会 第3回アジア太平洋骨代謝学会議  2016 

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    Event date: 2016.7.20 - 2016.7.23

    Language:Japanese   Presentation type:Oral presentation (general)  

    Venue:大阪  

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  • Investigation on long non-coding RNAs that are associated with chondrocytic phenotype. International conference

    Ishikawa, T., Murase, Y., Nishida, T., Hattori, T., Takigawa, M., Kubota, S.

    RNA 2016  2016 

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    Event date: 2016.6.28 - 2016.7.2

    Language:English   Presentation type:Poster presentation  

    Venue:Kyoto  

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  • 軟骨細胞形成を支える長鎖非コードRNA。

    石川崇典、久保田聡、村瀬有里香、西田 崇、服部高子、滝川正春

    第29回日本軟骨代謝学会  2016 

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    Event date: 2016.2.19 - 2016.2.20

    Language:Japanese   Presentation type:Oral presentation (general)  

    Venue:広島  

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  • CCN2産生を誘導するセロトニンの軟骨細胞内でのシグナル伝達機構の解析。

    堀 綾花、西田 崇、高柴正悟、久保田聡、滝川正春

    第29回日本軟骨代謝学会  2016 

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    Event date: 2016.2.19 - 2016.2.20

    Language:English   Presentation type:Poster presentation  

    Venue:広島  

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  • 骨細胞の作用を介した破骨細胞形成におけるCCN2の役割。

    西田 崇、久保田聡、服部高子、Lynda F Bonewald, 滝川正春

    第38回分子生物学会年会・第88回生化学会大会合同大会 BMB2015  2015 

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    Event date: 2015.12.1 - 2015.12.4

    Language:Japanese   Presentation type:Oral presentation (general)  

    Venue:神戸  

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  • Regenerative effects of CCN2 ondependent modules and CCN3 on articular chondrocytes/cartilage. International conference

    Takigawa, M., Abd El Kader, T., Janune, D., Aoyama, E., Nishida, T., Hattori, T., Hara, E. S., One, M., Tabata, Y., Kuboki, T., Kubota, S.:

    Eight International Workishop on the CCN Family of Genes  2015 

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    Event date: 2015.11.3 - 2015.11.8

    Language:English   Presentation type:Oral presentation (general)  

    Venue:Nice, France  

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  • Role of interaction between CCN2 and Rab14 in vesicle trafficking in chondrocytes novel intracellular function of CCN2. International conference

    Hoshijima, M., Hattori, T., Aoyama, E., Nishida, T., Kubota, S., Kamioka, H., Takigawa, M

    Eight International Workishop on the CCN Family of Genes  2015 

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    Event date: 2015.11.3 - 2015.11.8

    Language:English   Presentation type:Oral presentation (general)  

    Venue:Nice, France  

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  • Metabolic impacts of CCN2 in chondrocytes. International conference

    Kubota, S., Murase, Y., Maeda-Uematsu, A., Hattori, T., Aoyama, E., Nishida, T., Kawaki, H., Lyons, K. M., Takigawa, M.

    Eight International Workshop on the CCN Family of Genes  2015 

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    Event date: 2015.11.3 - 2015.11.8

    Language:English   Presentation type:Oral presentation (general)  

    Venue:Nice, France  

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  • Induction of CCN2 by low-intensity pulsed ultrasound (LIPUS) in cultured chondrocytes and its biological significance. International conference

    Nishida, T., Kubota, S., Aoyama, E., Yamanaka, N., Lyons, K. M., Takigawa, M

    Eight International Workshop on the CCN Family of Genes  2015 

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    Event date: 2015.11.3 - 2015.11.8

    Language:English   Presentation type:Oral presentation (general)  

    Venue:Nice, France  

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  • CCN2は骨細胞を介して破骨細胞形成を制御する。

    西田 崇、久保田聡、服部高子、滝川正春

    第57回歯科基礎医学会  2015 

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    Event date: 2015.9.11 - 2015.9.13

    Language:Japanese   Presentation type:Oral presentation (general)  

    Venue:新潟  

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  • CCN2とRab14の相互作用が軟骨細胞の小胞輸送に及ぼす役割 〜軟骨分化促進因子CCN2の新たな細胞内機能〜。

    星島光博、服部高子、青山絵理子、西田 崇、久保田聡、上岡 寛、滝川正春

    第57回歯科基礎医学会  2015 

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    Event date: 2015.9.11 - 2015.9.13

    Presentation type:Oral presentation (general)  

    Venue:新潟  

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  • 関節軟骨におけるCCN3の新機能。

    ジャヌネ ダニーロ、Abd El-Kader, T., 青山絵理子、西田 崇、久保田聡、滝川正春

    第7回日本CCNファミリー研究会  2015 

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    Event date: 2015.8.29

    Language:English   Presentation type:Oral presentation (general)  

    Venue:岡山  

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  • CCN2による軟骨細胞アミノ酸代謝制御機構の解明。

    村瀬有里香、服部高子、青山絵理子、西田 崇、前田 彩、川木晴美、Lyons, K. M., 佐々木朗、滝川正春、久保田聡

    第7回日本CCNファミリー研究会  2015 

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    Event date: 2015.8.29

    Presentation type:Oral presentation (general)  

    Venue:岡山  

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  • CCN2 とRab14の相互作用が軟骨細胞の小胞輸送に及ぼす役割。

    星島光博、服部高子、青山絵理子、西田 崇、久保田聡、上岡 寛、滝川正春

    第7回日本CCNファミリー研究会  2015 

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    Event date: 2015.8.29

    Language:Japanese   Presentation type:Oral presentation (general)  

    Venue:岡  

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  • Introducing CCN2 independent modules as a regenerative therapy for osteoarthritis and futher selecting the most suitable among them.

    Abd El-Kader, T., Nishida, T., Hattori, T., Aoyama, E., Janune, D., Hara, E. S., Ono M., Tabata, Y., Kuboki, T., Kubota, S., Takigawa, M:

    第7回日本CCNファミリー研究会  2015 

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    Event date: 2015.8.29

    Language:English   Presentation type:Oral presentation (invited, special)  

    Venue:岡山  

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  • CCN2は骨細胞に作用し、破骨細胞を正に制御する。

    西田 崇、久保田聡、服部高子、Bonewald, L. F., 滝川正春

    第7回日本CCNファミリー研究会  2015 

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    Event date: 2015.8.29

    Language:Japanese   Presentation type:Oral presentation (general)  

    Venue:岡山  

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  • 破骨細胞形成を制御する骨細胞に与えるCCN2の作用。

    西田 崇、久保田聡、滝川正春

    第33回日本骨代謝学会  2015 

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    Event date: 2015.7.23 - 2015.7.25

    Language:Japanese   Presentation type:Oral presentation (general)  

    Venue:東京  

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  • CCN2による軟骨細胞のアミノ酸代謝制御。

    村瀬有里香、服部高子、青山絵理子、西田 崇、前田 彩、川木晴美、佐々木朗、滝川正春、久保田聡

    第33回日本骨代謝学会  2015 

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    Event date: 2015.7.23 - 2015.7.25

    Language:Japanese   Presentation type:Oral presentation (general)  

    Venue:東京  

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  • 軟骨細胞アミノ酸代謝とCCN2。

    村瀬有里香、服部高子、青山絵理子、西田 崇、前田 彩、川木晴美、Karen M Lyons、佐々木朗、滝川正春、久保田聡

    第6回骨バイオサイエンス研究会  2015 

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    Event date: 2015.7.4

    Language:Japanese   Presentation type:Oral presentation (general)  

    Venue:岡山  

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  • E6-AP/UBE3A Protein, a Ubiquitin Ligase toward SOX9 Protein is essential to endochondral ossification International conference

    Hattori, T., Kishino, T., Stephen, S., Eberspaecher, H., Maki, S., Takigawa, M., Nishida, T., Kubota, S., de Crombrugghe, B.and Yasuda, H.

    Gordon Research Conference, Cartilage Biology & Pathology  2015 

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    Event date: 2015.3.22 - 2015.3.27

    Language:English   Presentation type:Oral presentation (general)  

    Venue:Galveston, TX.  

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  • 軟骨細胞分化に与えるセロトニンの作用。

    西田 崇、久保田聡、滝川正春

    第28回日本軟骨代謝学会  2015 

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    Event date: 2015.3.6 - 2015.3.7

    Language:Japanese   Presentation type:Oral presentation (general)  

    Venue:東京  

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  • Assessment of the regenerative effects of CCN2 independent modules on chondrocytes in vitro and osteoarturiritis models in vivo.

    Abd El Kdaer, T., Kubota, S., Nishida, T., Hattori, T., Aoyama, E., Janune, D., Hara, E. S., Ono, M., Tabata, Y., Kuboki, T., Takigawa, M.

    第37回日本分子生物学会  2014 

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    Event date: 2014.11.25 - 2014.11.27

    Language:English   Presentation type:Poster presentation  

    Venue:横浜  

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  • CCN2は筋芽細胞の初期分化を促進するが、後期分化を抑制する。

    西田 崇、久保田聡、青山絵理子、ダニーロ ジャヌネ、カレン ライアン、滝川正春

    第87回日本生化学会  2014 

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    Event date: 2014.10.15 - 2014.10.18

    Language:Japanese   Presentation type:Poster presentation  

    Venue:京都  

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  • 高分化型および低分化型ヒト口腔癌細胞株におけるCCNファミリータンパク質の発現。

    高嶋荘一朗、西田 崇、久保田聡、滝川正春

    第6回CCNファミリー研究会  2014 

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    Event date: 2014.8.30

    Language:Japanese   Presentation type:Oral presentation (general)  

    Venue:岡山  

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  • CCN2に依存した低出力超音波(LIPUS)の軟骨細胞への作用メカニズムの解明

    西田 崇、久保田聡、青山絵理子、山中信康、Lyons, K. M., 滝川正春

    第6回CCNファミリー研究会  2014 

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    Event date: 2014.8.30

    Language:Japanese   Presentation type:Oral presentation (general)  

    Venue:岡山  

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  • RANKデコイレセプターOPGとCCN2の相互作用。

    青山絵理子、西田 崇、久保田聡、滝川正春

    第6回CCNファミリー研究会  2014 

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    Event date: 2014.8.30

    Language:Japanese   Presentation type:Oral presentation (general)  

    Venue:岡山  

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  • The regenerative effect of CCN2 independent modules on chondrocytes in vitro and osteoarturiritis models in vivo.

    Abd El Kdaer, T., Kubota, S., Nishida, T., Hattori, T., Aoyama, E., Janune, D., Hara, E. S., Ono, M., Tabata, Y., Kuboki, T., Takigawa, M

    第6回CCNファミリー研究会  2014 

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    Event date: 2014.8.30

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    Venue:岡山  

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  • トランスオーミックアプローチによるCCN2の代謝支持機能の解明。

    久保田聡、村瀬友里香、植松-前田 彩、服部高子、西田 崇、滝川正春

    第6回CCNファミリー研究会  2014 

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    Event date: 2014.8.30

    Language:Japanese   Presentation type:Symposium, workshop panel (nominated)  

    Venue:岡山  

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  • 培養軟骨細胞における低出力性超音波(LIPUS)によるCCN2産生亢進機構の解明

    西田 崇、久保田聡、青山絵理子、山中信康、Lyons, K. M., 滝川正春

    第32回日本骨代謝学会  2014 

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    Event date: 2014.7.24 - 2014.7.26

    Language:Japanese   Presentation type:Oral presentation (general)  

    Venue:大阪  

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  • 軟骨分化促進因子CCN2の新たな細胞内機能:CCN2とRab14GTPaseの相互作用が軟骨細胞の小胞輸送に及ぼす役割

    星島光博、服部高子、青山絵理子、西田崇、上岡 寛、滝川正春

    第32回日本骨代謝学会  2014 

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    Event date: 2014.7.24 - 2014.7.26

    Language:Japanese   Presentation type:Oral presentation (general)  

    Venue:大阪  

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  • LIPUS promotes CCN2-mediated cartilage matrix gene expression via MAPK pathways. International conference

    Nishida, T., Kubota, S., Aoyama, E., Yamanaka, N. and Takigawa, M.

    92nd IADR  2014 

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    Event date: 2014.6.25 - 2014.6.28

    Language:English   Presentation type:Poster presentation  

    Venue:Cape Town, South Africa  

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  • CCN2 induces osteoclastogenesis by regulating RANK/RANKL/OPG system. International conference

    Aoyama E, Kubota S, Nishida T, and Takigawa M

    ECTS Congress 2014  2014 

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    Event date: 2014.5.17 - 2014.5.20

    Language:English   Presentation type:Poster presentation  

    Venue:Prague, Czech Republic  

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  • CCN2とRab14の相互作用が軟骨細胞の小胞輸送に及ぼす役割。

    星島光博、服部高子、青山絵理子、西田 崇、上岡 寛、滝川正春

    第28回日本軟骨代謝学会  2014 

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    Event date: 2014.3.6 - 2014.3.7

    Language:Japanese   Presentation type:Oral presentation (general)  

    Venue:東京  

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  • Fibroblast growth factor-1が軟骨代謝に及ぼす多彩な影響。

    Abd El Kdaer, Tarek、久保田聡、西田 崇、古松毅之、青山絵理子、窪木拓男、滝川正春

    第27回日本軟骨代謝学会  2014 

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    Event date: 2014.2.28 - 2014.3.1

    Language:English   Presentation type:Oral presentation (general)  

    Venue:京都  

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  • 軟骨細胞における低出力超音波(LIPUS)とROCK阻害剤によるCCN2の相加的産生。

    西田 崇、久保田聡、青山絵理子、山中信康、Karen M Lyons、滝川正春

    第27回日本軟骨代謝学会  2014 

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    Event date: 2014.2.28 - 2014.3.1

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    Venue:京都  

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  • CCN2とRab14 GTPaseの相互作用が軟骨細胞の小胞輸送に及ぼす役割

    星島光博, 服部高子, 青山絵理子, 西田崇, 滝川正春

    第36回 日本分子生物学会年会  2013 

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    Event date: 2013.12.3 - 2013.12.6

    Language:Japanese   Presentation type:Poster presentation  

    Venue:神戸  

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  • The novel role of CCN2 as a regeratory factor in RANK/RANKL/OPG system. International conference

    Seventh International Workishop on the CCN Family of Genes  2013 

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    Event date: 2013.10.16 - 2013.10.19

    Language:English   Presentation type:Symposium, workshop panel (nominated)  

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  • CCN2 inhibits BMP2-induced heterotopic ossification International conference

    Nishida, T.

    Okayama Univ – Harvard Univ.-Helsinki Univ.-NUS- Calcified Tissue Joint Seminar  2013 

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    Event date: 2013.9.24

    Language:English   Presentation type:Symposium, workshop panel (nominated)  

    Venue:岡山  

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  • Anti-fibrotic role of CCN3 through regulation of CCN family genes. International conference

    Abd El Kdaer, T., Kubota, S., Janune, D., Nishida, T., Hattori, T., Aoyama, E., Perbal, B., Takigawa, M.

    The third international symposium of medical-dental-pharmaceutical education and research in Okayama  2013 

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    Event date: 2013.9.22 - 2013.9.23

    Language:English   Presentation type:Poster presentation  

    Venue:岡山  

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  • CCN2は軟骨細胞のエネルギー代謝に重要である。

    前田 彩、久保田聡、川木晴美、河田かずみ、三宅由晃、服部高子、西田 崇、森谷徳文、飯田征二、滝川正春

    第55回歯科基礎医学会学術大会、サテライトシンポジウム9  2013 

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    Event date: 2013.9.20 - 2013.9.22

    Language:Japanese   Presentation type:Oral presentation (general)  

    Venue:岡山  

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  • 軟骨細胞と変形性関節症モデルを用いたCCN2各モジュールの組織再生効果の評価。

    Abd El Kdaer, Tarek、久保田聡、西田 崇、服部高子、青山絵理子、Janune Danilo、窪木拓男、滝川正春

    第55回歯科基礎医学会  2013 

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    Event date: 2013.9.20 - 2013.9.22

    Language:English   Presentation type:Oral presentation (general)  

    Venue:岡山  

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  • 軟骨細胞におけるCCN2発現及び産生量に与える低出力性超音波(LIPUS)の効果。

    西田 崇、久保田聡、青山絵理子、山中信康、滝川正春

    第55回歯科基礎医学会学術大会、サテライトシンポジウム4  2013 

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    Event date: 2013.9.20 - 2013.9.22

    Language:Japanese   Presentation type:Symposium, workshop panel (nominated)  

    Venue:岡山  

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  • メトロボミクスとインタラミクスが描き出すCCN2の新たな機能

    久保田聡、前田 彩、西田 崇、滝川正春

    第55回歯科基礎医学会学術大会  2013 

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    Event date: 2013.9.20 - 2013.9.22

    Language:Japanese   Presentation type:Symposium, workshop panel (nominated)  

    Venue:岡山  

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  • マウス筋芽細胞においてCCN2はBMP2による骨芽細胞様変化を抑制する。

    西田 崇、久保田聡、Janune Danilo、滝川正春

    第55回歯科基礎医学会  2013 

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    Event date: 2013.9.20 - 2013.9.22

    Language:Japanese   Presentation type:Oral presentation (general)  

    Venue:岡山  

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  • Identification of Rab14 GTPase as a CCN2/CTGF binding protein and the role of this interaction in vesicle trafficking in chondrocytes

    星島光博, 服部高子, 青山絵理子, 西田崇, 山城隆, 滝川正春

    第55回歯科基礎医学会  2013 

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    Event date: 2013.9.20 - 2013.9.22

    Language:Japanese   Presentation type:Poster presentation  

    Venue:岡山  

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  • Essential role of CCN2 that supports the basal energy metabolism in chondrocytes

    Maeda, A., Kubota, S., Miyake, Y., Kawata, K., Hattori, T., Nishida, T., Norifumi Moritani, N., Kawaki, H., Lyons, K. M., Iida, S., Takigawa, M.

    第86回日本生化学会大会  2013 

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    Event date: 2013.9.11 - 2013.9.13

    Language:Japanese   Presentation type:Oral presentation (general)  

    Venue:横浜  

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  • 軟骨細胞のエネルギー代謝におけるCCN2の役割。

    前田 彩、久保田聡、三宅由晃、河田かずみ、西田 崇、服部高子、森谷徳文、川木晴美、Karen M Lyons、飯田征二、滝川正

    第4回骨バイオサイエンス研究会  2013 

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    Event date: 2013.6.29

    Language:Japanese   Presentation type:Oral presentation (general)  

    Venue:岡山  

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  • CCN2 is up-regulated in cultured chondrocytes treated with low-intensity plused ultrasound (LIPUS). International conference

    Nishida, T., Kubota, S., Aoyama, E., Yamanaka, N., Takigawa, M.

    2nd joint meeting of IBMS-JSBMR  2013 

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    Event date: 2013.5.28 - 2013.6.1

    Language:English   Presentation type:Poster presentation  

    Venue:Kobe, Japan,  

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  • Identification and characterization of chondrocytic fibroblast growth factor 1 as a molecular counterpart of CCN family member 2 International conference

    Abd El Kader, T., Kubota, S., Nishida, T., Hattori, T., Aoyama, E., Furumatsu, T., Kuboki, T., Takigawa, M.

    2nd joint meeting of IBMS-JSBMR  2013 

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    Event date: 2013.5.28 - 2013.6.1

    Language:English   Presentation type:Poster presentation  

    Venue:Kobe, Japan,  

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  • Crucial role of CCN2 in energy metabolism in chondrocytes. International conference

    Maeda, A., Kubota, S., Miyake, Y., Kawata, K., Hattori, T., Nishida, T., Moritani, N., Kawaki, H., Lyons, K., Iida, S., Takigawa, M

    2nd joint meeting of IBMS-JSBMR  2013 

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    Event date: 2013.5.28 - 2013.6.1

    Language:English   Presentation type:Poster presentation  

    Venue:Kobe, Japan,  

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  • 軟骨細胞におけるCCN2発現の低出力超音波 (LIPUS) による誘導。

    西田 崇、久保田聡、青山絵理子、山中信康、滝川正春

    第12回日本再生医療学会総会  2013 

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    Event date: 2013.3.21 - 2013.3.23

    Language:Japanese   Presentation type:Oral presentation (general)  

    Venue:横浜  

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  • A novel role of CCN2 in RANK/RANKL/OPG signaling. International conference

    Aoyama, E., Kubota, S., Nishida, T., Takigawa, M.

    91 th IADR General Session,  2013 

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    Event date: 2013.3.20 - 2013.3.23

    Language:English   Presentation type:Poster presentation  

    Venue:Seattle, Washinton, USA  

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  • Roles of the heterotypic CCN2-CCN3 and homotypic CCN2-CCN2 interactions in matrix synthesis in chondrocytes. International conference

    Hoshijima, M., Hattori, T., Aoyama, E., Nishida, T., Yamashiro, T., Takigawa, M.

    The American Society for Cell Biology Annual Meeting  2012 

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    Event date: 2012.12.15 - 2012.12.19

    Language:English   Presentation type:Poster presentation  

    Venue:San Francisco, California,  

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  • Roles of CCN2 in energy metabolism in chondrocytes. International conference

    Maeda, A., Kubota, S., Miyake, Y., Kawata, K., Nishida, T., Hattori, T., Moritani, N., Kawaki, H., Lyons, K.M., Iida, S., Takigawa, M.

    The American Society for Cell Biology Annual Meeting,  2012 

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    Event date: 2012.12.15 - 2012.12.19

    Language:English   Presentation type:Poster presentation  

    Venue:San Francisco, California  

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  • CCN2とOPGの分子間相互作用による新たな破骨細胞分化制御機構。

    青山絵理子、久保田聡、西田 崇、滝川正春

    第85回日本生化学会大会  2012 

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    Event date: 2012.12.12 - 2012.12.16

    Language:Japanese   Presentation type:Oral presentation (general)  

    Venue:福岡  

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  • 軟骨細胞のエネルギー代謝におけるCCN2/CTGFの役割。

    前田 彩、久保田聡、三宅由晃、河田かずみ、西田 崇、服部高子、森谷徳文、川木晴美、Karen M Lyons、飯田征二、滝川正春

    第35回日本分子生物学会年会  2012 

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    Event date: 2012.12.11 - 2012.12.14

    Language:Japanese   Presentation type:Poster presentation  

    Venue:福岡  

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  • 軟骨細胞の代謝システムにおけるCCN2の役割。

    前田 彩、久保田聡、三宅由晃、河田かずみ、服部高子、西田 崇、森谷徳文、川木晴美、Karen M Lyons、飯田征二、滝川正春

    第33回岡山歯学会学術集会  2012 

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    Event date: 2012.11.25

    Language:Japanese   Presentation type:Oral presentation (general)  

    Venue:岡山  

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  • CCN2-OPG間相互作用による破骨細胞形成新規制御機構の解明。

    青山絵理子、久保田聡、西田 崇、滝川正春

    第54回歯科基礎医学会  2012 

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    Event date: 2012.9.14 - 2012.9.16

    Language:Japanese   Presentation type:Oral presentation (general)  

    Venue:郡山  

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  • CCN2/CTGF欠損が軟骨細胞のエネルギー代謝に及ぼす影響。

    前田 彩、久保田聡、服部高子、西田 崇、飯田征二、滝川正春

    第54回歯科基礎医学会  2012 

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    Event date: 2012.9.14 - 2012.9.16

    Language:Japanese   Presentation type:Oral presentation (general)  

    Venue:郡山  

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  • Effect of CCN2 on FGF2-induced proliferation of and MMP-9 and -13 productions by chondrocytes. International conference

    Nishida, T., Kubota, S., Aoyama, E., Janune, D., Maeda, A., Takigawa, M.

    22nd IUBMB-37th FEBS Congress  2012 

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    Event date: 2012.9.4 - 2012.9.9

    Language:English   Presentation type:Oral presentation (general)  

    Venue:Sevilla, Spain  

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  • 乳酸共存下での細胞内ATP量の減少は軟骨細胞の肥大化を引き起こす。

    西田 崇、久保田聡、高嶋壮一朗、滝川正春

    第30回日本骨代謝学会  2012 

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    Event date: 2012.7.19 - 2012.7.21

    Language:Japanese   Presentation type:Oral presentation (general)  

    Venue:東京  

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  • 乳酸共存下での細胞内ATP量の減少は軟骨細胞の肥大化を引き起こす。

    西田 崇、久保田聡、高嶋壮一朗、滝川正春

    第54回歯科基礎医学会  2012 

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    Event date: 2012.7.19 - 2012.7.21

    Language:Japanese   Presentation type:Oral presentation (general)  

    Venue:東京  

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  • Effect of CCN2 independent modules on chondrogenic and osteoblastic cells.

    Abd El Kdaer, T., Kubota, S., Nishida, T., Hattori, T., Aoyama, E., Janune, D., Kuboki, T., Takigawa, M

    第30回日本骨代謝学会  2012 

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    Event date: 2012.7.19 - 2012.7.21

    Language:English   Presentation type:Poster presentation  

    Venue:東京  

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  • CCN2 modules; Independent and combinational effect on chondrocytic cells.

    Abd El Kdaer, T., Kubota, S., Nishida, T., Hattori, T., Aoyama, E., Janune, D., Kuboki, T., Takigawa, M.

    第3回骨バイオサイエンス研究会  2012 

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    Event date: 2012.7.14

    Language:English   Presentation type:Oral presentation (general)  

    Venue:岡山  

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  • The CCN2-inducer Harmine promotes chondrogenesis and protection against TNFα-induced inflammation. International conference

    90 th IADR General Session  2012 

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    Event date: 2012.6.20 - 2012.6.23

    Language:English   Presentation type:Oral presentation (general)  

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  • Effect of CCN2 independent modules on chondrocytic cells. International conference

    Abd El Kader, T., Kubota, S., Nishida, T., Hattori, T., Aoyama, E., Janune, D., Kuboki, T., Takigawa, M.

    90 th IADR General Session,  2012 

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    Event date: 2012.6.20 - 2012.6.23

    Language:English   Presentation type:Oral presentation (general)  

    Venue:Igua?u Falls, Brazil  

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  • 低密度リポタンパク受容体関連タンパク-1(LRP1)の軟骨細胞分化における作用機能。

    河田かずみ、久保田聡、江口傑徳、青山絵理子、志茂剛、森谷徳文、近藤誠二、西田崇、皆木省吾、滝川正春

    第32回日本分子生物学会年会  2009 

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    Event date: 2009.12.9 - 2009.12.12

    Language:Japanese   Presentation type:Oral presentation (general)  

    Venue:横浜  

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  • CCN2/CTGFとCCN2/CTGF,およびCCN3/NOVとの結合とそれらの相互作用の解析。

    星島光博、服部高子、青山絵理子、西田 崇、山城 隆、滝川正春

    第30回岡山歯学会  2009 

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    Event date: 2009.11.8

    Language:Japanese   Presentation type:Oral presentation (general)  

    Venue:岡山  

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  • 低密度リポタンパク受容体関連タンパク-1(LRP1)の軟骨細胞分化における多面的作用機構。

    河田かずみ、久保田聡、江口傑徳、青山絵里子、志茂 剛、森谷徳文、近藤誠二、西田崇、皆木省吾、滝川正春

    第82回日本生化学会大会  2009 

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    Event date: 2009.10.21 - 2009.10.24

    Language:Japanese   Presentation type:Oral presentation (general)  

    Venue:神戸  

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  • 破骨細胞分化に与えるCCNファミリー2/結合組織成長因子(CCN2/CTGF)の促進作用

    西田 崇、江村憲資、久保田聡、滝川正春

    第82回日本生化学会大会  2009 

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    Event date: 2009.10.21 - 2009.10.24

    Language:Japanese   Presentation type:Oral presentation (general)  

    Venue:神戸  

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  • CCN family 2/connective tissue growth factor (CCN2/CTGF) promotes osteoclastogenesis via interaction with dendritic cell-specific transmembrane protein (DC-STAMP) International conference

    Nishida, T., Emura, K., Kubota, S., Maeda, A., Takigawa, M

    31th Annual Meeting of the ASBMR  2009 

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    Event date: 2009.9.11 - 2009.9.15

    Language:English   Presentation type:Poster presentation  

    Venue:Denver, USA  

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  • 低密度リポタンパク受容体関連タンパク-1(LRP1)の軟骨細胞分化における多面的作用機構

    河田かずみ、久保田聡、江口傑徳、青山絵里子、志茂 剛、森谷徳文、近藤誠二、西田崇、皆木省吾、滝川正春

    第3回日本CCNファミリー研究会  2009 

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    Event date: 2009.8.28 - 2009.8.29

    Language:Japanese   Presentation type:Oral presentation (general)  

    Venue:岡山  

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  • 軟骨細胞においてCCN family2/connective tissue growth factor (CCN2/CTGF)は線維芽細胞増殖因子(FGF)-2に結合し、FGF-2によるマトリックスメタロプロテアーゼ(MMP)13発現を制御する。

    西田 崇、中辻和樹、前田あずさ、滝川正春

    第3回日本CCNファミリー研究会  2009 

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    Event date: 2009.8.28 - 2009.8.29

    Language:Japanese   Presentation type:Oral presentation (general)  

    Venue:岡山  

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  • 低密度リポタンパク受容体関連タンパク-1(LRP1)の軟骨細胞分化における機能 とその作用機構

    河田かずみ、久保田聡、江口傑徳、青山絵里子、森谷徳文、近藤誠二、西田崇、皆木省吾、滝川正春

    第27回日本骨代謝学会学術集会  2009 

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    Event date: 2009.7.23 - 2009.7.25

    Language:Japanese   Presentation type:Oral presentation (general)  

    Venue:大阪  

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  • CCNファミリー2/結合組織成長因子(CCN2/CTGF)はDC-STAMPの遺伝子発現レベルの上昇を介して破骨細胞形成を促進する。

    西田 崇、江村憲資、久保田聡、前田あずさ、滝川正春

    第27回日本骨代謝学会学術集会  2009 

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    Event date: 2009.7.23 - 2009.7.25

    Language:Japanese   Presentation type:Oral presentation (general)  

    Venue:大阪  

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  • CCN family 2/connective tissue growth factor modulates BMP signaling as a signal conductor, which action regulates the proliferation and differentiation of chondrocytes. International conference

    Maeda, A., Nishida, T., Aoyama, E., Kubota, S., Kuboki, T., Lyons, K. M., Takigawa, M.:

    第2回岡山医療教育国際シンポジウム  2009 

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    Event date: 2009.5.17 - 2009.5.18

    Language:English   Presentation type:Poster presentation  

    Venue:岡山  

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  • Role of the low-density lipoprotein receptor-related protein-1 in regulation of chondrocyte differentiation. International conference

    Kawata, K ., Kubota, S., Eguchi, T. , Moritani, N.H., Kondo, S., Nishida, T., Minagi, S. , Takigawa, M

    第2回岡山医療教育国際シンポジウム  2009 

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    Event date: 2009.5.17 - 2009.5.18

    Language:English   Presentation type:Poster presentation  

    Venue:岡山  

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  • CCNファミリー2/結合組織成長因子はBMPシグナルを修飾し,軟骨細胞増殖・分化を制御する。

    前田あずさ, 西田 崇, 青山絵理子, 久保田 聡, 窪木拓男, Karen M Lyons、 滝川正春

    第22回日本軟骨代謝学会  2009 

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    Event date: 2009.3.6 - 2009.3.7

    Language:Japanese   Presentation type:Oral presentation (general)  

    Venue:名古屋  

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  • CCN2/CTGFとBMP-2の相互作用が軟骨細胞の増殖と分化を制御する。

    西田 崇、前田あずさ、青山絵理子、 久保田 聡、 窪木拓男、 Karen M Lyons、滝川正春

    BMB2008 第31回日本分子生物学会年会・第81回日本生化学会大会 合同大会  2008 

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    Event date: 2008.12.9 - 2008.12.12

    Language:Japanese   Presentation type:Oral presentation (general)  

    Venue:神戸  

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  • CCN2/CTGFと結合するタンパク質の同定

    星島光博、服部高子、荒木大介、青山絵理子、西田 崇、滝川正春

    第29回岡山歯学会  2008 

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    Event date: 2008.11.24

    Language:Japanese   Presentation type:Oral presentation (general)  

    Venue:岡山  

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  • CCN2/CTGFによるBMP-2の軟骨細胞増殖、分化促進作用の制御

    前田あずさ、 西田 崇、 青山絵理子、 川木晴美、 久保田 聡、 窪木拓男、 Karen M. Lyons、滝川正春

    第26回日本骨代謝学会学術集会  2008 

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    Event date: 2008.10.29 - 2008.10.31

    Language:Japanese   Presentation type:Oral presentation (general)  

    Venue:大阪  

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  • CCN2/CTGFとBMP-2との結合による軟骨細胞増殖、分化促進作用の制御

    前田あずさ, 西田 崇, 青山絵理子, 川木晴美, 久保田 聡, 窪木拓男, Karen M Lyons, 滝川正春

    第二回日本CCNファミリー研究会  2008 

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    Event date: 2008.8.29 - 2008.8.30

    Language:Japanese   Presentation type:Oral presentation (general)  

    Venue:岡山  

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  • 破骨細胞形成におけるCCN2/CTGFの役割

    西田 崇、江村憲資、前田あずさ、滝川正春

    第二回日本CCNファミリー研究会  2008 

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    Event date: 2008.8.29 - 2008.8.30

    Language:Japanese   Presentation type:Oral presentation (general)  

    Venue:岡山  

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  • CCN2/CTGFとBMP-2との分子間相互作用はヒト軟骨細胞様細胞株 HCS-2/8の細胞分化を制御する.

    前田あずさ, 西田 崇, 青山絵理子, 川木晴美, 久保田 聡, 窪木拓男, Karen M Lyons, 滝川正春

    第21回日本軟骨代謝学会  2008 

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    Event date: 2008.3.21 - 2008.3.22

    Language:Japanese   Presentation type:Oral presentation (general)  

    Venue:京都  

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  • Interaction of CCN2/CTGFwith BMP-2 regulate the differentiation of human chondrocytic andosteoblastic cell line. International conference

    Maeda A., Nishida, T., Aoyama, E., Kawaki, H., Kubota, S., Kuboki, T., Lyons, K.M., Takigawa, M.

    The 1st International Symposium of Medical and Dental Education in Okayama  2008 

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    Event date: 2008.2.1

    Language:English   Presentation type:Poster presentation  

    Venue:Okayama  

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  • 軟骨細胞におけるCCNファミリー2/結合組織成長因子(CCN2/CTGF)のオートクリン発現メカニズムの解明。

    西田 崇、前田あずさ、久保田 聡、滝川正春

    第30回日本分子生物学会年会・第80回日本生化学会大会 合同大会  2007 

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    Event date: 2007.12.11 - 2007.12.15

    Language:Japanese   Presentation type:Oral presentation (general)  

    Venue:横浜  

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  • CCN2/CTGFと結合するタンパク質の同定

    星島光博、服部高子、荒木大介、青山絵理子、西田 崇、滝川正春

    第29回岡山歯学会総会、学術集会  2007 

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    Event date: 2007.11.24

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    Venue:岡山  

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  • 軟骨細胞におけるCCN2/CTGFの四つのモジュールの異なった役割。

    青山絵理子、服部高子、星島光博、荒木大介、西田崇、久保田聡、滝川正春

    第1回日本CCNファミリー研究会  2007 

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    Event date: 2007.10.26 - 2007.10.27

    Language:Japanese   Presentation type:Oral presentation (general)  

    Venue:岡山  

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  • CCNファミリー2/結合組織成長因子(CCN2/CTGF)と骨形成因子(BMP)-2の相互作用が軟骨細胞及び骨芽細胞分化に与える影響。

    前田あずさ、 西田 崇、青山絵理子、川木晴美、 久保田聡、 窪木拓男、滝川正春 第1回日本CCNファミリー研究会 2007. 10.26-27. 岡山 (O)

    第1回日本CCNファミリー研究会  2007 

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    Event date: 2007.10.26 - 2007.10.27

    Language:Japanese   Presentation type:Oral presentation (general)  

    Venue:岡山  

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  • 培養軟骨細胞株及び半月板細胞におけるCCNファミリー2/結合組織成長因子(CCN2/CTGF)発現に与えるメカニカルストレスの影響。

    西田 崇、前田あずさ、久保田聡、滝川正春:

    第1回日本CCNファミリー研究会  2007 

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    Event date: 2007.10.26 - 2007.10.27

    Language:Japanese   Presentation type:Oral presentation (general)  

    Venue:岡山  

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  • 癌顎骨切除標本におけるCCN2の臨床病理学的検討。

    志茂 剛、久保田聡、合田健志、吉濱泰斗、栗尾奈愛、西田 崇,黄 宝星、遠藤幸喜、滝川正春、佐々木 朗

    第1回日本CCNファミリー研究会  2007 

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    Event date: 2007.10.26 - 2007.10.27

    Presentation type:Oral presentation (general)  

    Venue:岡山  

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  • 圧負荷肥大心ではCCN2はBrain Natriuretic Peptideと拮抗して心臓線維化をもたらす。

    新井昌史、小板橋紀通、西田崇、久保田聡、滝川正春、倉林正彦

    第1回日本CCNファミリー研究会  2007 

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    Event date: 2007.10.26 - 2007.10.27

    Language:Japanese   Presentation type:Oral presentation (general)  

    Venue:岡山  

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  • CCNファミリー2/結合組織成長因子(CCN2/CTGF)が骨芽細胞において骨形成因子(BMP)-2刺激による骨芽細胞分化を修飾する。

    前田あずさ, 西田 崇, 川木晴美, 久保田聡, 窪木拓男, 滝川正春

    第28回岡山歯学会学術大会  2007 

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    Event date: 2007.8.18 - 2007.8.19

    Language:Japanese   Presentation type:Oral presentation (general)  

    Venue:岡山  

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  • ウサギ半月板細胞におけるCCNファミリー2/結合組織成長因子(CCN2/CTGF)発現に与えるメカニカルストレスの影響。

    前田あずさ, 西田 崇, 川木晴美, 久保田 聡, 窪木拓男, 滝川正春

    第25回日本骨代謝学会学術集会  2007 

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    Event date: 2007.7.19 - 2007.7.21

    Language:Japanese   Presentation type:Poster presentation  

    Venue:大阪  

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  • 軟骨細胞におけるCCNファミリー2/結合組織成長因子(CCN2/CTGF)によるVEGF遺伝子発現制御機構の解明。

    西田 崇、前田あずさ、川木晴美、久保田 聡、Karen Lyons、滝川正春

    第25回日本骨代謝学会学術集会  2007 

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    Event date: 2007.7.19 - 2007.7.21

    Language:Japanese   Presentation type:Oral presentation (general)  

    Venue:大阪  

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  • CCN2ノックアウトマウスを用いたCCN3の軟骨分化における機能解析

    川木晴美,久保田聡,鈴木晶子,*西田 崇、前田健康、Bernard Perbal, Karen M. Lyons, 滝川正春

    第20回日本軟骨代謝学会  2007 

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    Event date: 2007.3.2 - 2007.3.3

    Presentation type:Oral presentation (general)  

    Venue:岡山  

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  • 軟骨細胞において結合組織成長因子/CCNファミリー2 (CTGF/CCN2)はHIF-1aの発現を介してVEGF発現を制御する。

    西田 崇、久保田 聡、前田あずさ、服部高子、川木晴美、滝川正春

    第20回日本軟骨代謝学会  2007 

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    Event date: 2007.3.2 - 2007.3.3

    Language:Japanese   Presentation type:Oral presentation (general)  

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  • 関節軟骨細胞における結合組織成長因子(CCN2/CTGF)の生理的役割と関節軟骨再生療法への試み。

    西田 崇

    第27回岡山歯学会  2006 

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    Event date: 2006.11.12

    Venue:岡山  

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  • The role of CCN2 in the development of cardiac fibrosis and its clinical utility for the diagnosis of heart failure

    Arai, M., Koitabashi, N., Niwano, K., Watanabe, A., Nishida, T., Kubota, S., Takigawa, M., Kurabayashi, M.

    Fourth International Workishop on the CCN Family of Genes  2006 

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    Event date: 2006.10.18 - 2006.10.22

    Venue:Ushimado  

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  • CCN2 (Connective tissue growth factor) supports the binding of fibronectin to alpha5beta1 integrin and maintains integrin signaling

    Nishida, T., Deyoung, A., Kawaki, H., Takigawa, M. Lyons, K.

    Fourth International Workishop on the CCN Family of Genes  2006 

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    Event date: 2006.10.18 - 2006.10.22

    Venue:Ushimado  

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  • CCN1 and CCN2 are required for skeletal and vascular development.

    Lyons, K., Nishida, T., Deyoung, A., Baxter, R., Dornbach, L., Pacheco, M

    Fourth International Workishop on the CCN Family of Genes  2006 

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    Event date: 2006.10.18 - 2006.10.22

    Venue:Ushimado  

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  • Promotion of adhesion and migration of human bone marrow stromal cells by CCN2 ?Mechanism and Utility in bone regeneration-

    Ono, M., Kubota, S., Fujisawa, T., Sonoyama, W., Kawaki, H., Akiyama, K., Oshima, M., Nishida, T., Takigawa, M., Kuboki, T.

    Fourth International Workishop on the CCN Family of Genes 

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    Event date: 2006.10.18 - 2006.10.22

    Venue:Ushimado  

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  • Alveolar bone regeneration using human bone marrow stromal cells and CCN2 ?To attain reliable and sorhisticated dental implant therapy-

    Kuboki, T., Ono, M., Kubota, S., Fujisawa, T., Kanyama, M., Sonoyama, W., Kawaki, H., Akiyama, K., Oshima, M., Nawachi K, Nishida, T., Takigawa, M

    Fourth International Workishop on the CCN Family of Genes 

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    Event date: 2006.10.18 - 2006.10.22

    Venue:Ushimado  

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  • 骨髄由来間質細胞の接着・増殖・遊走に及ぼす結合組織成長因子CCN2/CTGFの効果 ?多孔質ハイドロキシアパタイトを用いた細胞移植治療に向けて?

    大野充昭,藤澤拓生,久保田聡 ,園山 亘,秋山謙太郎,西田 崇,滝川正春,窪木拓男

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    Event date: 2006.9.7 - 2006.9.8

    Venue:京都  

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  • CCNファミリータンパク質の内軟骨性骨化制御機構と骨・軟骨再生作用

    久保田 聡、椋代義樹、菊池 剛、大野充昭、川木晴美、柳田剛志、西田 崇、田畑泰彦、窪木拓男、滝川正春

    第24回日本骨代謝学会学術集会  2006 

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    Event date: 2006.7.6 - 2006.7.8

    Venue:東京  

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  • 結合組織成長因子CCN2/CTGFによる骨髄由来間質細胞の細胞接着,遊走の亢進とシグナル伝達経路の活性化

    大野充昭,藤澤拓生,久保田聡,園山 亘,秋山謙太郎,西田 崇,滝川正春,窪木拓男

    第24回日本骨代謝学会学術集会  2006 

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    Event date: 2006.7.6 - 2006.7.8

    Venue:東京  

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  • 結合組織成長因子(CTGF/CCN2)欠損マウス由来軟骨細胞における細胞接着活性の低下とIntegrin signalingの障害.

    西田 崇、R. Andrea Deyoung、川木晴美、滝川正春、Karen M Lyons

    第24回日本骨代謝学会学術集会  2006 

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    Event date: 2006.7.6 - 2006.7.8

    Venue:東京  

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  • CCN2/CTGF as a multifunctional factor for hBMSC toward bone formation.

    Ono, M., Kubota, S., Fugisawa, T., Sonoyama, W., Akiyama, K., Nishida, T., Takigawa, M., T. Kuboki, T

    IADR 81st General Session and Exhibition  2006 

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    Event date: 2006.6.29 - 2006.7.2

    Venue:Brisbane  

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  • CCN2 supports the binding of fibronectin to α5β1 integrin and maintains integrin signaling.

    Nishida, T., Deyoung, A., Lyons, K.M., Takigawa, M.

    53rd Annual Meeting of Japanese Association for Dental Research  2005 

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    Event date: 2005.11.26 - 2005.11.27

    Venue:岡山  

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  • Hypoxic regulation of hypertrophic chondrocyte specific gene product 24/connective tissue growth factor/CCN2 mRNA by 3'-untranslated region interacting with a cellular protein.

    Kondo, S., S. Kubota, Y. Mukudai, N. Moritani, T. Nishida, H. Matsushita, S. Matsumoto, T. Sugahara and M. Takigawa.

    第78回日本生化学会大会ワークショップ  2005 

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    Event date: 2005.10.19 - 2005.10.22

    Venue:神戸  

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  • 低酸素組織、軟骨における肥大軟骨特異的蛋白24/結合組織成長因子/CCNファミリー2mRNAの安定化機構〜核および細胞質タンパク結合を介した3'-非翻訳領域(UTR)の関与〜

    近藤誠二、久保田聡、椋代義樹、森谷徳文、西田崇、菅原利夫、滝川正春

    第23回日本骨代謝学会学術集会  2005 

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    Event date: 2005.7.21 - 2005.7.23

    Venue:大阪  

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  • 血小板に含まれる結合組織成長因子 (CTGF/CCN2) とその組織再生における役割

    久保田聡、西田崇、河田かずみ、柳田剛志、窪木拓男、田畑泰彦、滝川正春

    第37回日本結合組織学会  2005 

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    Event date: 2005.5

    Venue:富山  

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  • 変形性関節症モデルにおけるM-CSFの産生と修復における意義

    中尾匡志、久保田聡、西田崇、岡森彦、江口傑徳、滝川正春

    第18回日本軟骨代謝学会  2005 

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    Event date: 2005.3.18 - 2005.3.19

    Venue:豊中市  

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  • 軟骨細胞におけるチロシンキナーゼ型レセプターErbB4遺伝子の発現

    縄稚久美子、久保田 聡、井上美穂、西田 崇、吉道 玄、中西 徹、完山 学、窪木 拓男、矢谷 博文、滝川 正春

    第12回中国、四国骨代謝研究会  2002 

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    Event date: 2002.6.22

    Venue:岡山  

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  • 骨軟骨組織修復における結合組織成長因子CTGF/Ecogeninの役割

    *西田 崇、小島俊司、久保田 聡、窪木拓男、田畑泰彦、櫛引俊宏、中西 徹、滝川正春

    第4回生体組織工学シンポジウム  2002 

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    Event date: 2002.3.15

    Venue:大阪  

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  • チロシンキナーゼ型受容体ErbB4の軟骨組織における発現

    縄稚久美子、井上美穂、中西 徹、*西田 崇、窪木拓男、矢谷博文、滝川正春

    第15回日本軟骨代謝学会  2002 

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    Event date: 2002.3.9 - 2002.3.10

    Venue:岐阜  

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  • 軟骨由来成長因子CTGF/Hcs24/ecogeninの構成モジュール特異的抗体の解析とその応用。

    湊雅直,久保田聡,川木晴美,*西田崇,中西徹,滝川正春

    第15回日本軟骨代謝学会  2002 

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    Event date: 2002.3.8 - 2002.3.9

    Venue:前橋  

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  • 軟骨細胞においてヘパラン硫酸は肥大軟骨細胞由来の成長因子CTGF/Hcs24の作用を制御する

    *西田崇,久保田聡,中西徹,吉道玄,滝川正春

    第15回日本軟骨代謝学会  2002 

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    Event date: 2002.3.8 - 2002.3.9

    Venue:前橋  

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  • 軟骨由来成長因子CTGF/Hcs24/ecogeninの構成モジュール特異的抗体の解析とその応用

    湊雅直,久保田聡,川木晴美,*西田崇,中西徹,滝川正春

    第15回日本軟骨代謝学会  2002 

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    Event date: 2002.3.8 - 2002.3.9

    Venue:前橋  

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  • 軟骨細胞においてヘパラン硫酸は肥大軟骨細胞由来の成長因子CTGF/Hcs24の作用を制御する。

    *西田崇,久保田聡,中西徹,吉道玄,滝川正春

    第15回日本軟骨代謝学会  2002 

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    Event date: 2002.3.8 - 2002.3.9

    Venue:前橋  

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  • 低酸素によ る結合組織成長因子(CTGF)及びマトメリクスメタロプロテアーゼ(MMP)活性の協調的発現誘導

    近藤誠二,久保田聡,志茂剛,*西田崇,吉道玄,江口傑徳,菅原利夫,滝川正春

    第9回日本血管細胞生物学会  2001 

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    Event date: 2001.11.5 - 2001.11.6

    Venue:福岡  

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  • 低酸素によ る結合組織成長因子(CTGF)及びマトメリクスメタロプロテアーゼ(MMP)活性の協調的発現誘導。

    近藤誠二,久保田聡,志茂剛,*西田崇,吉道玄,江口傑徳,菅原利夫,滝川正春

    第9回日本血管細胞生物学会  2001 

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    Event date: 2001.11.5 - 2001.11.6

    Venue:福岡  

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  • 軟骨細胞においてヘパラン硫酸は軟骨細胞由来成長因子CTGF/Hcs24の作用を制御する

    *西田崇,中西徹,久保田聡,吉道玄,近藤誠二,滝川正春

    第74回日本生化学会大会  2001 

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    Event date: 2001.10.25 - 2001.10.28

    Venue:京都  

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  • 軟骨細胞においてヘパラン硫酸は軟骨細胞由来成長因子CTGF/Hcs24の作用を制御する。

    *西田崇,中西徹,久保田聡,吉道玄,近藤誠二,滝川正春

    第74回日本生化学会大会  2001 

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    Event date: 2001.10.25 - 2001.10.28

    Venue:京都  

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  • Expression of connective tissue growth factor/hypertrophic chondrocyte-specific gene product 24 (CTGF/Hcs24) during facture healing.

    Nakata, E., Nakanishi, T., Kawai, A., Asaumi, K., *Nishida, T., Inoue, H. and Takigawa, M. :

    The American society for bone and mineral research 23rd Annual Meeting  2001 

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    Event date: 2001.10.12 - 2001.10.16

    Venue:Phenix  

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  • Expression of connective tissue growth factor/hypertrophic chondrocyte-specific gene product 24 (CTGF/Hcs24) during facture healing.

    Nakata, E., Nakanishi, T., Kawai, A., Asaumi, K., *Nishida, T., Inoue, H. and Takigawa, M. :

    American society bone and mineral research 23rd Annual Meeting  2001 

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    Event date: 2001.10.12 - 2001.10.16

    Venue:Phenix  

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  • 低酸素に よるヒト乳癌細胞における結合組織成長因子CTGF及びマトメリクスメタロプロテアーゼの発現誘導

    近藤誠二,久保田聡,志茂 剛,*西田崇,吉道玄,江口傑徳,菅原利夫,滝川正春

    第60回日本癌学会総会  2001 

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    Event date: 2001.9.26 - 2001.9.28

    Venue:横浜  

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  • 低酸素に よるヒト乳癌細胞における結合組織成長因子CTGF及びマトメリクスメタロプロテアーゼの発現誘導。

    近藤誠二,久保田聡,志茂 剛,*西田崇,吉道玄,江口傑徳,菅原利夫,滝川正春

    第60回日本癌学会総会  2001 

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    Event date: 2001.9.26 - 2001.9.28

    Venue:横浜  

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  • 低酸素によ るヒト乳癌細胞における結合組織成長因子CTGF及びマトメリクスメタロプロテアーゼ(MMP)活性の協調的発現誘導

    近藤誠二,久保田聡,志茂剛,*西田崇,吉道玄,江口傑徳,菅原利夫,滝川正春

    第43回歯科基礎医学会  2001 

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    Event date: 2001.9.19 - 2001.9.21

    Venue:大宮  

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  • 低酸素によ るヒト乳癌細胞における結合組織成長因子CTGF及びマトメリクスメタロプロテアーゼ(MMP)活性の協調的発現誘導。

    近藤誠二,久保田聡,志茂剛,*西田崇,吉道玄,江口傑徳,菅原利夫,滝川正春

    第43回歯科基礎医学会  2001 

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    Event date: 2001.9.19 - 2001.9.21

    Venue:大宮  

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  • In vitro及びIn vivoにおける肥大軟骨細胞由来の成長因子CTGF/Hcs24の関節軟骨細胞に対する作用

    *西田崇,中西徹,久保田聡,吉道玄,近藤誠二,滝川正春

    第19回日本骨代謝学会  2001 

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    Event date: 2001.8.8 - 2001.8.11

    Venue:名古屋  

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  • 軟骨由来成長因子CTGF/Hcs24のヒト軟骨細胞株HCS-2/8におけるプロセシングと分泌の様態。

    久保田聡,江口傑徳,志茂剛,*西田崇,服部高子,近藤誠二,中西徹,滝川正春

    第19回日本骨代謝学会  2001 

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    Event date: 2001.8.8 - 2001.8.11

    Venue:名古屋  

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  • 軟骨由来の成長因子(Connective tissue growth factor, CTGF/Hcs24)の軟骨細胞増殖,分化促進作用における情報伝達機構の 解析。

    吉道玄,中西徹,*西田崇,服部高子,山本照子,滝川正春

    第19回日本骨代謝学会  2001 

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    Event date: 2001.8.8 - 2001.8.11

    Venue:名古屋  

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  • In vitro及びIn vivoにおける肥大軟骨細胞由来の成長因子CTGF/Hcs24の関節軟骨細胞に対する作用。

    *西田崇,中西徹,久保田聡,吉道玄,近藤誠二,滝川正春

    第19回日本骨代謝学会  2001 

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    Event date: 2001.8.8 - 2001.8.11

    Venue:名古屋  

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  • 軟骨由来成長因子CTGF/Hcs24のヒト軟骨細胞株HCS-2/8におけるプロセシングと分泌の様態

    久保田聡,江口傑徳,志茂剛,*西田崇,服部高子,近藤誠二,中西徹,滝川正春

    第19回日本骨代謝学会  2001 

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    Event date: 2001.8.8 - 2001.8.11

    Venue:名古屋  

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  • 軟骨由来の成長因子(Connective tissue growth factor, CTGF/Hcs24)の軟骨細胞増殖,分化促進作用における情報伝達機構の解析。

    吉道玄,中西徹,*西田崇,服部高子,山本照子,滝川正春

    第19回日本骨代謝学会  2001 

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    Event date: 2001.8.8 - 2001.8.11

    Venue:名古屋  

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  • Effect of CTGF/Hcs24 on proliferation/differentiotion of articular chondrocytes in culture.

    Mizushima, T., *Nishida, T., Kuboki, T., Komori, C., Kanyama, M.,Sonoyama, W., Fujisawa, T., Nakanishi, T., Yatani, H. and Takigawa, M.

    79th General Session of the IADR  2001 

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    Event date: 2001.6.27 - 2001.6.30

    Venue:Chiba  

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  • 結合組織成長因子(CTGF/Hcs24)を応用した関節軟骨再生療法の可能性の検討〜in vitro及びin vivoにおける検討〜

    *西田 崇、小島俊司、窪木拓男、中西 徹、久保田 聡、滝川正春

    第3回生体組織工学シンポジウム  2001 

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    Event date: 2001.3.16

    Venue:大阪  

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  • 肥大軟骨細胞由来成長因子CTGF/Hcs24の関節軟骨細胞に対する作用

    *西田 崇、中西 徹、柴原 基、久保田聡、吉道 玄、滝川正春

    第14回日本軟骨代謝学会  2001 

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    Event date: 2001.3.9 - 2001.3.10

    Venue:岐阜  

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  • 軟骨由来の成長因子CTGF/Hcs24の軟骨細胞増殖分化促進作用におけるシグナル伝達機構の解析

    吉道 玄、中西 徹、*西田 崇、服部高子、滝川正春

    第14回日本軟骨代謝学会  2001 

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    Event date: 2001.3.9 - 2001.3.10

    Venue:岐阜  

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  • チロシンキナーゼ型受容体ErbB4の軟骨組織における発現

    縄稚久美子、井上美穂、中西 徹、*西田 崇、窪木拓男、矢谷博文、滝川正春

    第14回日本軟骨代謝学会  2001 

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    Event date: 2001.3.9 - 2001.3.10

    Venue:岐阜  

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  • 軟骨由来の成長因子CTGF/Hcs24の軟骨細胞増殖分化促進作用におけるシグナル伝達機構の解析

    吉道 玄、中西 徹、*西田 崇、服部高子、滝川正春

    第14回日本軟骨代謝学会  2001 

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    Event date: 2001.3.9 - 2001.3.10

    Venue:岐阜  

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  • Physiological roles of CTGF/Hcs24, a hypertrophic chondrocyte-specific gene product:promotion of endochondral ossification and angiogenesis.

    Takigawa, M., Nakanishi, T., *Nishida, T., Asano, M. and Shimo, T.

    1st International Workshop on the CCN Family of Genes  2000 

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    Event date: 2000.10.17 - 2000.10.19

    Venue:Saint-Malo  

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  • Physiological roles of CTGF/Hcs24, a hypertrophic chondrocyte-specific gene product:promotion of endochondral ossification and angiogenesis.

    Takigawa, M., Nakanishi, T., *Nishida, T., Asano, M. and Shimo, T.

    1st International Workshop on the CCN Familiy of Genes  2000 

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    Event date: 2000.10.17 - 2000.10.19

    Venue:Saint-Malo  

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  • 軟骨由来成長因子CTGF/Hcs24の関節軟骨における作用

    *西田 崇、中西 徹、柴原 基、吉道 玄、滝川正春

    第73回日本生化学会  2000 

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    Event date: 2000.10.11 - 2000.10.14

    Venue:横浜  

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  • 軟骨由来成長因子CTGF/Hcs24による軟骨分化マーカーII型コラーゲンおよびX型コラーゲンの発現促進におけるMAPキナーゼ経路阻害剤の効果

    吉道 玄、中西 徹、服部高子、*西田 崇、山本照子、滝川正春

    第18回日本骨代謝学会  2000 

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    Event date: 2000.7.19 - 2000.7.22

    Venue:広島  

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  • 肥大軟骨由来の成長因子CTGF/Hcs24による細胞外基質構成タンパク質および細胞外基質分解酵素発現の制御

    *西田 崇、中西 徹、志茂 剛、吉道 玄、滝川正春

    第18回日本骨代謝学会  2000 

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    Event date: 2000.7.19 - 2000.7.22

    Venue:広島  

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  • 半月板に対する低出力パルス超音波(LIPUS)の効果。

    第31回日本軟骨代謝学会  2018 

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  • 軟骨細胞におけるCCN3遺伝子の糖代謝を介した制御。

    第31回日本軟骨代謝学会  2018 

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  • 培養軟骨細胞におけるCCN2及びMMP9の産生に対するアンジオテンシンIIの作用。

    第31回日本軟骨代謝学会  2018 

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  • FGF-1 affects the expression of MMP-13 and CCN2 in chondrocytes: possible role in osteoarthritis.

    第31回日本軟骨代謝学会  2018 

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  • 細胞外情報を統合するCCNファミリー遺伝子の糖代謝を介した制御。

    第9回日本CCNファミリー研究会  2017 

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  • 関節•成長板軟骨細胞におけるセロトニン (5-HT)によるCCN2産生の差別的制御メカニズム。

    第35回日本骨代謝学会  2017 

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  • 細胞外情報を統合するCCNファミリー遺伝子の糖代謝を介した制御。

    第40回日本分子生物学会 第90回日本生化学会大会  2017 

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  • CCNファミリー2/結合組織成長因子(CCN2/CTGF)と骨形成因子(BMP)-2の相互作用が軟骨細胞及び骨芽細胞分化に与える影響。

    第1回日本CCNファミリー研究会  2007 

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  • 培養軟骨細胞のCCN2産生における低出力性パルス超音波(LIPUS)処置の作用メカニズムの解明。

    第9回日本CCNファミリー研究会  2007 

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  • Alveolar bone regeneration using human bone marrow stromal cells and CCN2 -To attain reliable and sorhisticated dental implant therapy-

    Fourth International Workishop on the CCN Family of Genes  2006 

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  • 骨髄由来間質細胞の接着・増殖・遊走に及ぼす結合組織成長因子CCN2/CTGFの効果 -多孔質ハイドロキシアパタイトを用いた細胞移植治療に向けて-

    2006 

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  • Promotion of adhesion and migration of human bone marrow stromal cells by CCN2 -Mechanism and Utility in bone regeneration-

    Fourth International Workishop on the CCN Family of Genes  2006 

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  • 骨軟骨組織修復における結合組織成長因子CTGF/Ecogeninの役割

    第4回生体組織工学シンポジウム  2002 

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  • Effect of CTGF/Hcs24 on proliferation/differentiotion of articular chondrocytes in culture.

    79th General Session of the IADR  2001 

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  • 結合組織成長因子(CTGF/Hcs24)を応用した関節軟骨再生療法の可能性の検討〜in vitro及びin vivoにおける検討〜

    第3回生体組織工学シンポジウム  2001 

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  • 肥大軟骨由来の成長因子CTGF/Hcs24による細胞外基質構成タンパク質および細胞外基質分解酵素発現の制御

    第18回日本骨代謝学会  2000 

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  • 軟骨由来成長因子CTGF/Hcs24の関節軟骨における作用

    第73回日本生化学会  2000 

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Awards

  • 研究奨励賞

    2011.7   日本骨代謝学会  

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    Country:Japan

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Research Projects

  • Development of dropletomics that clarifies transcriptional regulation under liquid-liquid phase separation

    Grant number:23K17439  2023.06 - 2027.03

    Japan Society for the Promotion of Science  Grants-in-Aid for Scientific Research  Grant-in-Aid for Challenging Research (Pioneering)

    久保田 聡, 西田 崇, 服部 高子, 高江洲 かずみ, 滝川 正春, 青山 絵理子, 大野 充昭

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    Grant amount:\25740000 ( Direct expense: \19800000 、 Indirect expense:\5940000 )

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  • 象牙芽細胞の表面に突き出た細胞小器官の機能解析と象牙質再生への応用

    Grant number:22K10075  2022.04 - 2025.03

    日本学術振興会  科学研究費助成事業  基盤研究(C)

    高江洲 かずみ, 服部 高子, 青山 絵理子, 滝川 正春, 西田 崇, 久保田 聡

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    Grant amount:\4290000 ( Direct expense: \3300000 、 Indirect expense:\990000 )

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  • 非コードRNAを介した新たな軟骨ホメオスタシスとその変性メカニズムの解明

    Grant number:22K10218  2022.04 - 2025.03

    日本学術振興会  科学研究費助成事業  基盤研究(C)

    森谷 徳文, 滝川 正春, 久保田 聡, 服部 高子, 西田 崇, 近藤 星

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    Grant amount:\4160000 ( Direct expense: \3200000 、 Indirect expense:\960000 )

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  • Inverse genetics: A new methodology for the identification of key genes of somatic cell differentiation

    Grant number:21K19603  2021.07 - 2023.03

    Japan Society for the Promotion of Science  Grants-in-Aid for Scientific Research  Grant-in-Aid for Challenging Research (Exploratory)

    久保田 聡, 西田 崇, 服部 高子, 高江洲 かずみ, 青山 絵理子, 滝川 正春, 大野 充昭

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    Grant amount:\6500000 ( Direct expense: \5000000 、 Indirect expense:\1500000 )

    初年度である本年度は、本研究で提唱する「インバース・ジェネティクス方法論」を、軟骨細胞を用いて検証することを第一の目的と定め研究を進めた。当初の予定ではマウス肋軟骨細胞を用いる予定であったが、長鎖非コードRNA (lncRNA) 遺伝子の数がはるかに多いこと、およびフィーダー細胞としてマウス由来SNL細胞を使うことを考慮しヒト軟骨細胞を用いた検討から開始することとした。理論上は可能だが軟骨細胞からiPS細胞を作成できたという報告はまだない。したがってまず山中4因子 (OSKM) を強制発現するレンチウイルスベクターを作成し、ヒト軟骨細胞に導入、リプログラミングが起こるかどうかをコロニー形成を指標に検討した。その結果OSKM導入発現2週間後には多数のコロニーの形成が見られ、軟骨細胞もiPS細胞化しうることが確認された。この結果を受けて、iPS干渉法によって仮説の妥当性とSOX9遺伝子の軟骨細胞分化の機能確認に進んだ。すなわち軟骨細胞にOSKMに加えてSOX9を発現させることでリプログラミングが阻止されるかを検証した。その結果SOX9発現によって形成されるコロニーは減少したがゼロにはならなかった。これはSOX9が単独で軟骨細胞分化を決定しているのではないためと考えている。そして次にシングルセル解析に進むにあたっては、解析前にフィーダー細胞を除去する必要がある。そのため以上の研究に並行して、蛍光色素mCherryを発現するSNL細胞を新たに樹立し、フローサイトメトリーで除去するシステムを整えてきた。ここまでは順調であったが、この実験システムではリプログラミング効率が十分ではなく、シングルセル解析で有意な結果を得るために必要なOSKM導入細胞数の確保が難しいことが分かってきた。そこで最近開発された一体型山中因子発現ウイルスベクターを試したところ、予備実験で飛躍的に高い導入効率が得られた。来年度はこのシステムを用いて研究を先に進める予定である。

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  • Regulation of skeletogenesis by long noncoding RNAs through CCN2

    Grant number:21H03105  2021.04 - 2025.03

    Japan Society for the Promotion of Science  Grants-in-Aid for Scientific Research  Grant-in-Aid for Scientific Research (B)

    久保田 聡, 西田 崇, 服部 高子, 高江洲 かずみ, 滝川 正春, 青山 絵理子

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    Grant amount:\17160000 ( Direct expense: \13200000 、 Indirect expense:\3960000 )

    本研究を支える2つの柱は、cellular communication network factor 2 (CCN2) 遺伝子をトランスに制御する長鎖非コードRNA (lncRNA) であるurothelial cancer associated 1 (UCA1) と、シスに制御するanti-CCN2 3'-UTR RNA (ACUR) である。
    まずUCA1については、当該lncRNAの作動エレメント、つまり軟骨細胞分化を促進するRNA上の機能領域を突き止めるためin silicoでUCA1の構造を予測し、順に欠損させた3つの変異体を発現するシステムを、レンチウイルスベクターを用いて構築し、それらベクターを使って標的であるマウスATDC5細胞でこれら変異体を強制発現できることを確認できた。またUCA1が吸着しうるmiRNAを探索し、現在までに37のmiRNAをUCA1によって軟骨細胞内で制御されうる分子として特定できた。さらに新たな展開として、UCA1が骨芽細胞機能に与える影響を、軟骨細胞と同じ戦略、すなわちUCA1を持たないマウスMC3T3-E1細胞にレンチウイルスベクターで強制発現させ、骨芽細胞マーカー遺伝子の発現定量やアルカリホスファターゼ染色で評価した。しかしながら軟骨細胞とは異なり骨芽細胞形質はUCA1の影響を受けなかった。以前の研究で、間葉系幹細胞が骨芽細胞へ分化する際、UCA1発現は減少することも確認している。以上の所見は、UCA1が軟骨細胞において高度に特異的な機能を発揮していることを示唆している。
    そしてACURについては、センスRNA、つまりCCN2 RNA には影響を与えることなくアンチセンスRNAのみを、RNase H活性により特異的に分解するGapmeRを5種類設計・合成し、ヒト軟骨細胞様HCS-2/8細胞に導入して関連遺伝子発現量を評価した。その結果、5種のうち2種のGapmeRによって効率よくACURのサイレンシングが起こることが確認され、その状況下ではCCN2遺伝子ばかりでなく、軟骨細胞マーカー遺伝子も抑制される傾向にあった。つまり骨格形成に対してインパクトを与えている可能性が濃厚となった。

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  • 新規軟骨老化促進因子CCN3の加齢に伴った発現誘導と細胞周期停止機構の解明

    Grant number:21K09815  2021.04 - 2024.03

    日本学術振興会  科学研究費助成事業  基盤研究(C)

    服部 高子, 久保田 聡, 西田 崇, 高江洲 かずみ

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    Grant amount:\4160000 ( Direct expense: \3200000 、 Indirect expense:\960000 )

    1.胎生期から出生後37週(8.6ヶ月齢)までの様々な時期のマウス肋軟骨組織から初代培養軟骨細胞を単離し、遺伝子発現の変化を調べると、CCN family member 3 (CCN3) mRNAとともに細胞周期停止因子p21, p53、senescence-associated secretory phenotype (SASP)因子であるIL-6, IL-8 mRNAの発現レベルと軟骨細胞採取時のマウスの加齢状態との間に強い正の相関があることがわかった。また、CCN3抗体を用いた1ヶ月から7ヶ月齢のマウス膝関節の免疫染色でも、加齢とともに強い染色性が観察された。2.ヒト患者由来初代培養軟骨細胞、ラット培養軟骨細胞株RCSに酸化ストレスとしてH2O2を添加し、人工的に誘発した老化軟骨細胞においてCCN3 mRNAの有意な発現上昇とともに、p21,p53の発現上昇、肥大軟骨マーカーである10型コラーゲン、マトリックスメタロプロテナーゼ13、アグリカン分解酵素ADAMTS5 mRNAの発現誘導が認められ、CCN3、P53の誘導は蛋白レベルでも確かめられた。この時、senescence-associated (SA)-β galactosidaseの活性化も確認された。3.RCS細胞にCCN3を発現ベクターの導入により過剰発現させるとp21プロモータ活性が上昇した。4.2週齢マウス膝関節より単離された初代培養軟骨細胞およびRCS細胞に組換えCCN3蛋白を添加するとp21, p53 mRNAが誘導された。これらのことからCCN3の発現上昇によっても細胞周期停止因子の誘導による老化が誘発されることが明らかとなった。5.軟骨組織特異的にCCN3を発現するトランスジェニックマウスの関節軟骨では、早期に関節変性が誘導され、このマウスの肋軟骨組織から単離した初代培養軟骨細胞では細胞周期停止因子群、SASP因子群の発現が上昇していた。6.ヒト患者由来関節組織から単離した初代培養軟骨細胞においてCCN3, p21,p53 mRNAの発現レベルと年齢との間に強い正の相関が観察された。

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  • 長鎖非コードRNAによる骨細胞メカニカルストレス応答制御機構の解明

    Grant number:21K10189  2021.04 - 2024.03

    日本学術振興会  科学研究費助成事業  基盤研究(C)

    石川 崇典, 宮脇 正一, 前田 綾, 大賀 泰彦, 久保田 聡, 西田 崇, 服部 高子, 高江洲 かずみ

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    Grant amount:\4160000 ( Direct expense: \3200000 、 Indirect expense:\960000 )

    最近、タンパク質をコードしない長鎖非コードRNAが様々な生理的機能に関与していることが明らかとなっている。しかしながら、矯正歯科治療における歯の移動において極めて重要な生体反応である、骨細胞のメカニカルストレス応答に関与するとされる長鎖非コードRNAの報告はまだない。そこで、本研究では骨細胞のメカニカルストレス応答下で機能する長鎖非コードRNAを特定し、その詳細な分子機構を明らかにすることを目的とし、研究を実施している。
    目的とする長鎖非コードRNAを特定するため、マイクロアレイによる網羅的遺伝子発現解析を予定しており、初年度はまず実施するサンプルの条件を検討した。骨細胞様細胞株MLO-Y4細胞を培養し、同細胞に様々な種類のメカニカルストレスを負荷後、同サンプルを回収し、骨芽細胞マーカー遺伝子および骨芽細胞分化に関与しているとされる長鎖非コードRNAを定量RT-PCRにより評価し、マイクロアレイを実施するサンプルの選定を行った。初年度末の時点で概ね本作業は完了しており、今後はコントロール群と比較し遺伝子変動の大きかった方法でメカニカルストレスを付与したMLO-Y4細胞を準備し、網羅的遺伝子発現解析を実施していく。同サンプルの解析結果より、特定の長鎖非コードRNAの遺伝子発現の上昇もしくは低下が確認できると考えており、2年目以降では、その中で特に遺伝子発現の変動が多かったRNAをin vitroにてノックダウンおよび強制発現させ、骨代謝マーカー遺伝子の発現変動を確認し詳細な機能を調査することとしている。

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  • Pioneering chondroneutrigenomics research and its development into chondroneutrigenetics

    Grant number:20K20611  2020.07 - 2024.03

    Japan Society for the Promotion of Science  Grants-in-Aid for Scientific Research  Grant-in-Aid for Challenging Research (Pioneering)

    滝川 正春, 青山 絵理子, 星島 光博, 久保田 聡, 西田 崇, 江口 傑徳

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    Grant amount:\25870000 ( Direct expense: \19900000 、 Indirect expense:\5970000 )

    1.昨年度メチオニンの代謝産物であるS-アデノシルメチオニン(SAM)をヒト軟骨細胞様細胞株HCS-2/8の培養系に添加すると、まずCCN2の遺伝子発現が亢進し、次いで2型コラーゲンの遺伝子発現が上昇し、その後、アグリカンの蓄積量(アルシアンブルー染色)も増加すること、また、ポリアミンの前駆体の一つSAM脱炭酸物を合成するSAM 炭酸酵素AMD1の阻害剤、SardomizideをSAMと共に添加するとSAMによるアグリカンの蓄積が抑制されることを見いだした。今年度はこれらの知見を、染色の場合は生化学的手法で測定するなど他の手法を用いて再確認するとともに、1培養細胞株では不十分との考えのもと、ラット軟骨肉腫由来の軟骨細胞様細胞株RCS細胞を用いて確認した。これらの結果はSAMがCCN2の発現を誘導する機能分子であることを示している。また、同培養系にSAMを添加して、スペルミジン、スペルミン等のポリアミンレベルをHPLCで測定すると、両ポリアミン濃度の増加が見られた。従って、SAMは少なくとも一部はポリアミン合成を介して軟骨細胞の分化機能を亢進させることを示唆している。
    2.CCN2が関節軟骨形成因子GDF5と結合することはすでに報告済みであるが、CCN2はGDF5とBMPRIbとの結合には影響しないこと、NogginはCCN2のGDF5への結合を阻害することを見いだした。また、CCN2は、軟骨細胞においてGDF5によるSmad1/5/8のリン酸化を増強し、アグリカン遺伝子発現促進作用をさらに増強した。
    3.齧歯類の変形性関節症の予防・修復作用を有するCCN2と「陰と陽」の関係があるとされているCCN3の発現が、ヒト変形性肩関節症および変形性股関節症の症状と正に相関することを明らかにした。2と3の知見は本課題後半のコンドロニュートリジェネティクス研究に繋がる重要な基礎的知見となる。

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  • CCN2の転写因子様機能を介した線維症のキープレイヤー筋線維芽細胞分化機構の解明

    Grant number:20K09889  2020.04 - 2023.03

    日本学術振興会  科学研究費助成事業  基盤研究(C)

    西田 崇, 滝川 正春, 久保田 聡, 服部 高子, 青山 絵理子, 高江洲 かずみ

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    Grant amount:\4290000 ( Direct expense: \3300000 、 Indirect expense:\990000 )

    線維性疾患のキープレイヤーである筋線維芽細胞はI型コラーゲンやαSMAを産生することが知られているが、その分化メカニズムは未だ明らかにされていない。本研究課題は筋線維芽細胞の分化にCellular communication network factor 2 (CCN2)が関わっているのか、そしてどのように関わっているのかを明らかにすることである。当該年度では、マウス線維芽細胞株NIH3T3細胞にCCN2を過剰発現させた時の筋線維芽細胞への分化に対する影響を解析した。以下にその結果を示す。
    1.シグナルペプチドを欠失したCCN2発現プラスミド(Sp-Ccn2)あるいはシグナルペプチドを付加したCCN2発現プラスミド(Sp+Ccn2)をNIH3T3細胞に遺伝子導入した結果、シグナルペプチドの有無に関わらず、一部のCCN2は核内に認められた。
    2.Sp-Ccn2あるいはSp+Ccn2プラスミドを遺伝子導入したNIH3T3細胞からtotal RNAを抽出し、筋線維芽細胞分化に重要な転写因子であるPU.1 (Spi1)の遺伝子発現レベルを定量RT-PCRで調べた結果、Sp-Ccn2を遺伝子導入した群ではempty vector (EV)を導入した群と変わらなかったが、Sp+Ccn2を遺伝子導入した群はSpi1の遺伝子発現レベルが有意に上昇した。また、Sp+Ccn2を遺伝子導入した群ではEVを導入した群と比較して、αSMAの遺伝子発現レベルが有意に上昇した。
    3.転写共役因子YAPとCCN2が結合することを免疫沈降-Western blot法で確認した。
    4.Sp+Ccn2を遺伝子導入後、抗CCN2抗体でクロマチン免疫沈降し、CCN2及びPU.1のプロモーター領域のプライマーを用いてPCRを行った結果、CCN2及びPU.1共にバンドが検出された。

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  • Regulation of CCN2 by an endogenous UTR blocker and its biological significance

    Grant number:19K22716  2019.06 - 2021.03

    Japan Society for the Promotion of Science  Grants-in-Aid for Scientific Research  Grant-in-Aid for Challenging Research (Exploratory)

    Kubota Satoshi

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    Grant amount:\6370000 ( Direct expense: \4900000 、 Indirect expense:\1470000 )

    The CCN2 gene is expressed in chondrocytes and plays a critical role in mammalian skeletal development. The aim of this study is to clarify the function of a novel lncRNA entitled ACUR that covers the entire 3'-untranslated region of the CCN2 mRNA. First, we found that ACUR was expressed, not only in several types of cancer cells, but also in human chondrocytic cells and chondrocytes isolated from knee joints. ACUR expression was subsequently confirmed in a murine mesenchymal stem cell-like cells, which was repressed along with adipogenic differentiation. Interestingly, CCN2 mRNA expression was decreased upon adipogenic differentiation as well. ACUR was also detected in murine chondroblastic cells. However, in contrast, ACUR expression was increased during the course of chondrocytic differentiation. These findings indicate that ACUR is conserved between human and murine species and that this lncRNA contributes to chodrocytic differentiation, positively regulating the CCN2 gene.

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  • 細胞アンテナによる象牙質再生への道を拓く基礎研究

    Grant number:19K10109  2019.04 - 2023.03

    日本学術振興会  科学研究費助成事業  基盤研究(C)

    高江洲 かずみ, 服部 高子, 青山 絵理子, 滝川 正春, 西田 崇, 久保田 聡

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    Grant amount:\4420000 ( Direct expense: \3400000 、 Indirect expense:\1020000 )

    日本人において伸び悩んでいる健康寿命の延長には咀嚼機能維持が鍵となり、歯の再生が望まれる。しかしながら、歯の再建に必須である象牙質再生は自然状態では充分に行われない。
    このため、象牙芽細胞の細胞アンテナ〝一次繊毛"の形成や細胞周期制御に機能するIntraflagellar transport (Ift) 88の機能制御により、理想的な形質・形態の象牙質の再生を目指すべく、まずは正常象牙質の形成過程である1. 象牙芽前駆細胞の接着・増殖、2. 分化、3. 細胞極性の分子制御機構の検討を行っている。
    現在までに、IFT88は一次繊毛形成に働き、一次繊毛関連シグナルの一つである古典的WNTシグナルの抑制を介して象牙芽細胞分化を制御すること、また、古典的WNTシグナルは一次繊毛形成を抑制することを明らかにし、一次繊毛と古典的WNTシグナルの間にはネガティブフィードバックが存在することを示唆した(国際雑誌Boneへの掲載)。
    また、細胞接着能力や細胞増殖速度への影響をも検討しており、現在までに、Ift88をノックダウンしたラット象牙芽前駆細胞であるsh-Ift88 KN-3細胞では、一次繊毛形成に関係なく、抑制されることを確認している。本年度は、この制御機構を探索するために、ArrayScan VTI HCS Reader (Thermo Fisher Scientific Inc)を用いて、細胞増殖抑制に機能するHippoシグナル伝達経路の転写共役因子YAPの核移行をKN-3細胞とラット乳癌細胞株MRMT-1細胞と比較、検討を行った。その結果、Ift88をノックダウンしたMRMT-1細胞においては、現在までの報告通り、YAPが核移行する細胞数は増加したが、sh-Ift88 KN-3細胞ではYAPが核移行する細胞数は増加と減少の二極性を示した。現在は、この詳細なメカニズムを検討中である。

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  • Intracellular function and new extracellular signaling pathways of CCN proteins and their common molecular base

    Grant number:19H03817  2019.04 - 2023.03

    Japan Society for the Promotion of Science  Grants-in-Aid for Scientific Research  Grant-in-Aid for Scientific Research (B)

    滝川 正春, 青山 絵理子, 星島 光博, 久保田 聡, 西田 崇, 江口 傑徳, 大野 充昭, 鈴木 守

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    Grant amount:\17290000 ( Direct expense: \13300000 、 Indirect expense:\3990000 )

    1.CCNタンパク質の意外な新機能(細胞内機能):CCN2はN末にシグナルペプチド(SP)を有する分泌性タンパク質であるが、その分子内に塩基性アミノ酸に富んだ核移行シグナル様の配列を持ち、核内タンパク質として機能する可能性が考えられる。そこで、SPを除いたCcn2および全長Ccn2を組み込んだCCN2発現プラスミドをNIH3T3細胞に遺伝子導入し、CCN2の核移行を調べたところ、SPの有無に関わらず、CCN2が線維芽細胞の核内に移行することを見いだした。また、核内に移行したCCN2は、YAPと結合し、CCN2のプロモーター上、あるいは線維症に関連するPU.1のプロモーター上に結合し、CCN2やPU.1の発現を亢進させ、筋線維芽細胞のマーカーであるαSMAの遺伝子発現レベルを亢進させた。これらの結果は、従来の線維症発症おけるCCN2の作用は、オートクリン・パラクリン作用とされてきたが、イントラクリン作用も関与していることを示唆している。
    2.CCNタンパク質の細胞外新情報ネットワーク:CCN1,CCN2,CCN3が前立腺がん細胞株PC-3細胞の培養上清から分離した細胞外ベシクル(EV)にこの量的順序で存在すること、CCN4-6は存在しないことを、LC-MS/MSを使ったプロテオーム解析で明らかにした。また、ヒト軟骨細胞株HCS-2/8の培養上清を用いて、全長CCN2がEVに搭載されて遠隔組織に運ばれ、MMPにより切断され、EVからCCN2フラグメントが遊離して作用する新情報ネットワークの存在を示唆した。
    3.構造ー機能解析に関しては、CCN2とCDMP1/GDF-5が結合することを見いだした。立体構造解析については、CCN2の結晶化には未だ至っていない。
    これらの代表例を含めCCN関連で、学術論文3報を出版し、10報をin press, 編著本1冊をin pressとした。

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  • Neutrigenomics studies on endochondral ossification and articular cartilage mainteinance/regeneration

    Grant number:17K19757  2017.06 - 2020.03

    Japan Society for the Promotion of Science  Grants-in-Aid for Scientific Research  Grant-in-Aid for Challenging Research (Exploratory)

    TAKIGAWA Masaharu

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    Grant amount:\6500000 ( Direct expense: \5000000 、 Indirect expense:\1500000 )

    In this study we found the followings. (1) Glucose and its metabolite methyglyoxal regulated gene expression of endochondral ossification genetic factor CCN2 and articular cartilage maintenance factor CCN3 in chondrocytic HCS-2/8 cells. (2) A tryptophan metabolite serotonin regulated gene expression of CCN2 in chondrocytes and another metabolite melatonin was involved in cartilage growth and development. (3) CCN2 mediated not only low-intensity pulsed ultrasound (LIPUS)-stimulated expression of the differentiated phenotype of chondrocytes, but also LIPUS-inhibited adipocyte differentiation of undifferentiated mesenchymal stem cells, showing that gene expression of CCN2 could be an important target and marker of cartilage nutrigenomics.

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  • New potential of CCN2: Functional evaluation as a Warburg effector

    Grant number:17K19756  2017.06 - 2019.03

    Japan Society for the Promotion of Science  Grants-in-Aid for Scientific Research  Grant-in-Aid for Challenging Research (Exploratory)

    Kubota Satoshi

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    Grant amount:\6370000 ( Direct expense: \4900000 、 Indirect expense:\1470000 )

    As a result of the investigation with a chondrosarcoma cell line, we found that cellular ATP level was repressed by CCN2 silencing; whereas CCN2 expression was repressed by glycolytic inhibition vice versa. These findings indicate the property of CCN2 as a Warburg booster, which is more than a Warburg effector. Furthermore, through the evaluation of the effects of glycolytic inhibition on the gene expression of all of the CCN family members, we discovered that CCN3 was contrarily induced by glycolytic inhibition. Such CCN3 induction was not observed by the inhibition of aerobic ATP synthesis by mitochondria and thus depends on glycolytic activity in the cells. Collectively, it was clarified in this study that both CCN2 and CCN3 gene expression was under a tight regulation by glycolytic activity, which eventually determines the status of energy metabolism in tumor cells.

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  • Mechanism of onset of osteoarthritis caused by obesity and regulatory effects of CCN2

    Grant number:17K11641  2017.04 - 2020.03

    Japan Society for the Promotion of Science  Grants-in-Aid for Scientific Research  Grant-in-Aid for Scientific Research (C)

    Nishida Takashi

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    Grant amount:\4680000 ( Direct expense: \3600000 、 Indirect expense:\1080000 )

    In this study, we showed that angiotensin II (ANG II) suppresses chondrocyte proliferation and differentiation as well as increased CCN2 production in dose-dependent manner. Based on our results using chondrocytes treated with losartan, which is a specific inhibitor of AT1R and those using AT1R-deficient chondrocytes, we clarified that the effects of ANG II are through AT1R. Furthermore, our data indicates that ANG II production is increased by CCN2 deficiency, suggesting that onset of osteoarthritis in Ccn2 deficient mice is involved with increased ANG II.

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  • The investigation of the mechanism of regular arrangement of odontoblasts via extracellular environment sensing sensors

    Grant number:16K11475  2016.04 - 2020.03

    Japan Society for the Promotion of Science  Grants-in-Aid for Scientific Research  Grant-in-Aid for Scientific Research (C)

    Takaesu Kazumi

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    Grant amount:\4810000 ( Direct expense: \3700000 、 Indirect expense:\1110000 )

    We studied the mechanism that the inhibition of proliferation by dexamethasone (DEX), which is added to odontoblast differentiation culture medium, is canceled for Intraflagellar transport (Ift) 88 knocked-down pre-odontoblastic KN3 cells (Ift88 is known to function in primary cilia formation and cell cycle control. ). As a result, while involvement of signal pathways via the primary cilia was not recognized, involvement of Ccn4 and Ccn5, which are canonical Wnt signal pathway related genes, was suspected. We then established and analyzed KN3 cells where Ccn4 and Ccn5 were overexpressed. However, it was revealed that Ccn4 and Ccn5 are not involved in the mechanism that cancels the inhibition of odontoblast proliferation by DEX in the Ift88 knocked-down KN3 cells.

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  • Role of Sox9 and its ubiquitin ligase on the Circadian growth rhythm in chondrocytes

    Grant number:16K11476  2016.04 - 2019.03

    Japan Society for the Promotion of Science  Grants-in-Aid for Scientific Research  Grant-in-Aid for Scientific Research (C)

    Hattori Takako

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    Grant amount:\4680000 ( Direct expense: \3600000 、 Indirect expense:\1080000 )

    1. Gene expression of melatonin-synthesizing enzymes and melatonin receptors wes detected in mouse primary chondrocytes. 2. Production of melatonin in chondrocytes was confirmed by mass spectrophotometric analysis. 3. Melatonin enhanced chondrocyte growth and increased expression of chondrocyte markers, but inhibited hypertrophy. These effects was abolished by addition of an antagonist. 4. Melatonin rapidly upregulaed a melatonin synthesizing enzyme and receptor expression and expression of the clock gene Bmal1, while downregulated Per1. 5. Chronobiological analysis of C3H mouse chondrocytes, which express melatonin, revealed that melatonin induced the cyclic expression of melatonin and modified the cyclic rhythm of Bmal1, Mt1 and Mt2, but not in BALB/c mouse chondrocytes. These results indicate that exogenous and endogenous melatonin works in synergy in chondrocytes to adjust rhythmic expression to the central suprachiasmatic nucleus clock.

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  • Roles of CCN2 and Rab14 in the formation of extracellular matrix

    Grant number:16K11786  2016.04 - 2019.03

    Japan Society for the Promotion of Science  Grants-in-Aid for Scientific Research  Grant-in-Aid for Scientific Research (C)

    Hoshijima Mitsuhiro

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    Grant amount:\4810000 ( Direct expense: \3700000 、 Indirect expense:\1110000 )

    CCN2 and Rab14 strongly expressed in bone, cartilage and lung. To elucidate the roles of CCN2 and Rab14 in osteocyte maturation, we investigated the different expression of osteocyte-related genes between young osteocytes and developmentally mature osteocytes using 3D-cultured MLO-Y4 cells. As the results, in the mature MLO-Y4 cells, rab14, ccn2, col1a1, OCN, c-Fos, Cx43 and Panx3 mRNA expression were significantly increased in comparison with young cells. Furthermore, in the present study, we showed for the first time that intracellular Ca2+ levels were significantly increased in developmentally mature osteocytes in comparison with young osteocytes by flow-induced mechanical stress.
    These findings show that the CCN2 and Rab14 plays an important role in the formation of extracellular matrix, and the intracellular Ca2+ responses in a 3D cellular network in osteocyte.

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  • Establishment of molecular basis of CCN family proteins for therapeutic use and its related translational research

    Grant number:15H05014  2015.04 - 2018.03

    Japan Society for the Promotion of Science  Grants-in-Aid for Scientific Research  Grant-in-Aid for Scientific Research (B)

    TAKIGAWA Masaharu, SHIMO Tsuyoshi, ONO Mitsuaki, HOSHIJIMA Mitsuhiro, NAGAOKA Noriyuki, FURUMATSU Takayuki

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    Grant amount:\17030000 ( Direct expense: \13100000 、 Indirect expense:\3930000 )

    As a function-specific receptor for CCN proteins, we identified a growth-specific receptor for CCN2. Among 4 individual modules of CCN2, IGFBP and TSP1 modules showed angiogenesis activity. IGFBP-TSP1 dual module-connected recombinant protein showed strong angiogenesis activity. The TSP1 module also showed fibrogenic activity. Low Intensity Pulsed Ultra Sound (LIPUS) increased expression of ECM components such as aggrecan and collagen type II in chondrocytes through induction of CCN2 production. This function of LIPUS was mediated through a Ca ion channel TRPV4. In addition, we found that CCN3 protected progression of osteoarthiritis in an animal model and that CCN4 promoted chondrogenic differentiation of bone marrow-derived mesenchymal stem cells.

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  • Analysis of the CTGF/CCN2 expression promotion system which classified cartilage regenerative therapy into the field

    Grant number:15K11247  2015.04 - 2018.03

    Japan Society for the Promotion of Science  Grants-in-Aid for Scientific Research  Grant-in-Aid for Scientific Research (C)

    Moritani Norifumi, IIDA Seiji

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    Grant amount:\4810000 ( Direct expense: \3700000 、 Indirect expense:\1110000 )

    CEBPB, CEBPD-adjusted altered expression of CTGF/CCN2, and their regulatory pathways are suggested to influence IL16 and COL12A1 activities. Interestingly, CEBPB and CEBPD were observed to develop in the nucleus and exhibit expression patterns similar to CTGF/CCN2. Results suggesting CEBPB and CEBPD activity in the CCN2 promoter region were also obtained. Furthermore, results suggesting that CEBPB and CEBPD accelerated proteoglycan synthesis were obtained when they were forcibly expressed. Finally, we also identified a RUNX2 gene frameshift mutation in a cleidocranial dysplasia patient and confirmed RUNX2 expression and CTGF/CCN2 localization using teeth tissue sections.

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  • Mechanism and expression of CD302 as a new regulator of osteoclast maturation

    Grant number:15K11038  2015.04 - 2018.03

    Japan Society for the Promotion of Science  Grants-in-Aid for Scientific Research  Grant-in-Aid for Scientific Research (C)

    Aoyama Eriko, HOSHIJIMA Mitsuhiro

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    Grant amount:\4810000 ( Direct expense: \3700000 、 Indirect expense:\1110000 )

    CD302/DCL-1 is one of the C-type lectin receptors, but the distribution and the function has been mostly not clarified. We found that CD302 was expressed on osteoclasts induced from murine bone marrow cells. The inhibition of CD302 expression caused fragmentation of actin ring in mature osteoclasts and reduced bone resorption in vitro. Also, CD302 was co-localized with CCN2 which is a positive regulator of osteoclast maturation. Moreover, SHP-2 was identified as a potent candidate as a signal transducer of CD302 signaling. These results showed that CD302 could be a new target protein to regulate osteoclast maturation.

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  • Effect of CCN2 on the osteocyte function regulating the osteoclast formation, and its possibility as a novel drug of osteoporosis

    Grant number:26462810  2014.04 - 2017.03

    Japan Society for the Promotion of Science  Grants-in-Aid for Scientific Research  Grant-in-Aid for Scientific Research (C)

    Nishida Takashi

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    Grant amount:\4940000 ( Direct expense: \3800000 、 Indirect expense:\1140000 )

    It is well-known that osteocytes play a role in the regulation of bone remodeling. However, the effect of CCN2/CTGF on the bone remodeling in osteocytes is unknown. Therefore, the aim of this study is the investigation of osteoclastogenesis via osteocytes stimulated by CCN2. A mouse osteocytic cell line, MLO-Y4 embedded into collagen gel containing recombinant CCN2 protein, promoted the osteoclast differentiation of RAW264.7 cells inoculated on the collagen gel, and osteocyte-like cells isolated from Ccn2-deficient mice inhibited the differentiation of osteoclasts under the same condition. These findings suggest that osteoclastogenesis is modulated by osteocytes stimulated by CCN2.

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  • The presence and its significance of non-canonical action of decoy receptors

    Grant number:26670808  2014.04 - 2016.03

    Japan Society for the Promotion of Science  Grants-in-Aid for Scientific Research  Grant-in-Aid for Challenging Exploratory Research

    TAKIGAWA MASAHARU, KUBOTA SATOSHI, AOYAMA ERIKO, NISHIDA TAKASHI, HATTORI TAKAKO, TAKAESU KAZUMI

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    Grant amount:\3640000 ( Direct expense: \2800000 、 Indirect expense:\840000 )

    In this study, we proposed a new concept showing the presence and its significance of non-canonical action of decoy receptor (-like) molecules by demonstrating 2 examples. 1) Osteoprotegerin (OPG) bound to CCN family protein 2 (CCN2), which binds to RANK and positively regulates RALK signaling, thereby inhibiting osteoclastogenesis via RANK signaling. 2) Platelet-derived growth factor receptor-like (PDGFRL) did not bind to PDGF which is the ligand for PDGF. Instead, PDGFRL did bind to CCN2 which plays important roles in chondrogenesis and endochondral ossification and another member of CCN family CCN3. These findings suggest that PDGFRL plays an important role in the cartilage biology, possibly by regulating the molecular behavior of CCN2. 3) We also found that c-type lectin receptor CD302 bound to CCN2, suggesting possible discovery of another example which supports our new concept.

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  • Investigation on the biological diarchy by CCN2 and CCN3 for integrated tissue development

    Grant number:25462886  2013.04 - 2016.03

    Japan Society for the Promotion of Science  Grants-in-Aid for Scientific Research  Grant-in-Aid for Scientific Research (C)

    Kubota Satoshi, TAKIGAWA Masaharu, HATTORI Takako, NISHIDA Takashi, AOYAMA Eriko

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    Grant amount:\5070000 ( Direct expense: \3900000 、 Indirect expense:\1170000 )

    Suspecting a biological diarchy by CCN2 and CCN3, CCN3 was overexpressed in fibrogenic cells. Consequently, the gene expression of profibrotic CCN2 and CCN4 were repressed. Also, overexpression of CCN3 disharmonizing the CCN2/CCN3 balance resulted in obvious delay in the final stage of endochondral ossification. New CCN2 molecular counterparts were identified as well.
    Subsequently, in a rat osteoarthritis (OA) rat model, CCN3 that was present in normal articular cartilage was drastically decreased, contrarily to CCN2. Ameliorating effects of CCN3 locally applied to the OA lesion was observed.
    Finally, by analyzing the components of platelets as a model of tissue regenerating tools, inclusion of CCN1, CCN3 and CCN5, as well as CCN2, was clarified therein. A CCN cocktail mimicking platelets showed even greater regeneration potential than CCN2 alone, suggesting its clinical utility.

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  • Novel function of CCN3: A regulator of endochondral ossification

    Grant number:25462888  2013.04 - 2016.03

    Japan Society for the Promotion of Science  Grants-in-Aid for Scientific Research  Grant-in-Aid for Scientific Research (C)

    Hattori Takako, KUBOTA Satoshi, NISHIDA Takashi, TAKIGAWA Masahasu, AOYAMA Eriko

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    Grant amount:\4940000 ( Direct expense: \3800000 、 Indirect expense:\1140000 )

    To understand a role of CCN3 in bone formation, we generated a transgenic mouse line which is specifically overexpressing CCN3 in cartilage. The mice showed embryonic bone malformations, including shortened long bones, decreased bone mineralization, and delayed appearance of osteoblasts and cells expressing marker genes of late hypertrophy. Blood vessel invasion into the developing cartilage was also inhibited. In contrast, limb mesenchymal cells showed accelerated chondrogenesis. These phenomena correlated with changes in gene expression related to bone and cartilage development. Moreover, we observed degradation of articular chondrocytes and absorption of subchondral bone in adult knee joints. These findings demonstrate a novel role of CCN3 in skeletal development and maintenance of articular cartilage.

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  • Elucidation of molecular basis of CCN family action as masterminds and its medical application

    Grant number:24390415  2012.04 - 2015.03

    Japan Society for the Promotion of Science  Grants-in-Aid for Scientific Research  Grant-in-Aid for Scientific Research (B)

    TAKIGAWA MASAHARU, KUBOTA Satoshi, HATTORI Takako, NISHIDA Takashi, AOYAMA Eriko

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    Grant amount:\18200000 ( Direct expense: \14000000 、 Indirect expense:\4200000 )

    We elucidated molecular mechanism of actions of CCN family proteins as masterminds by investigating physical interactions between CCN proteins and various molecules such as growth factors and their receptors, and by determining their final biological outcome in various cultured cells. We also generated transgenic mice overexpressing CCN2 in cartilage and found harmonized promotion of endochondral ossification in the TG mice, which would be a proof of function of a mastermind. Moreover, TSP-1 module among 4 independent modules of CCN2 had more potent action than that of full length CCN2 in cartilage regeneration in experimental osteoarthritis animal models, suggesting possible medical application of a CCN2 fragment for regenerative medicine for skeletal tissues. Furthermore, low intensity pulsed ultrasound induced gene expression of CCN2, aggrecan and collagen type II in chondrocytes, suggesting possible non-invasive application of CCN2 for cartilage regeneration in osteoarthritis.

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  • Analysis of molecular mechanism of muscle heterotopic ossification by forming a network with CCN family proteins

    Grant number:23592732  2011 - 2013

    Japan Society for the Promotion of Science  Grants-in-Aid for Scientific Research  Grant-in-Aid for Scientific Research (C)

    NISHIDA Takashi, TAKIGAWA Masaharu, KUBOTA Satoshi, HATTORI Takako, AOYAMA Eriko

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    Grant amount:\5070000 ( Direct expense: \3900000 、 Indirect expense:\1170000 )

    The protein production of CCN2 (also known as Connective tissue growth factor) was increased in mouse myoblastic cell line C2C12 by treatment with tumor necrosis factor-a, which is produced upon inflammation. CCN2 promoted cell proliferation and the protein production of MyoD in C2C12 cells. Consistent with these findings, in vivo analyses with Ccn2-deficient skeletal muscle showed the decreased PCNA staining and muscle hypoplasia. Furthermore, bone morphogenetic protein (BMP)2-induced Runx2 and Osterix gene expression levels were significantly decreased in C2C12 cells co-treated with CCN2.

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  • A new protein transport system in cartilage: Multilayered transcytosis

    Grant number:23659872  2011 - 2012

    Japan Society for the Promotion of Science  Grants-in-Aid for Scientific Research  Grant-in-Aid for Challenging Exploratory Research

    TAKIGAWA Masaharu, KUBOTA Satoshi, HATTORI Takako, NISHIDA Takashi, AOYAMA Eriko

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    Grant amount:\3640000 ( Direct expense: \2800000 、 Indirect expense:\840000 )

    Protein transportation in cartilage has been believed to be due to diffusion because there is no blood vessel in cartilage. In the present study, we revealed that low-density lipoprotein receptor-related protein-1(LRP-1) transports connective tissue growth factor/CCN family 2 (CTGF/CCN2/CCN2)in cartilage by transcytosis, indicating that this mechanism is a new protein transport system in cartilage. We also uncovered that cartilage-specific defect of LRP-1 resulted in skeletal disorders.

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  • The analysis of binding of CTGF/CCN2 to RANK and its effects on RANK/RANKL signaling

    Grant number:22791788  2010 - 2011

    Japan Society for the Promotion of Science  Grants-in-Aid for Scientific Research  Grant-in-Aid for Young Scientists (B)

    AOYAMA Eriko, TAKIGAWA Masaharu, KUBOTA Satoshi, NISHIDA Takashi

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    Grant amount:\4030000 ( Direct expense: \3100000 、 Indirect expense:\930000 )

    CCN2/CTGF which is a member of CCN2 family proteins binds to various cytokines and modulates the effects. We screened the binding proteins to CCN2/CTGF and found receptor activator of NF-kappaB(RANK). CCN2/CTGF also could bind to OPG which was a decoy receptor and inhibited the effect of RANK. In the RAW264. 7, preosteoclast, CCN2/CTGF augmented the stimulation of RANKL(RANK ligand) and attenuated the inhibitory effect of OPG on RANK/RANKL signaling. These data showed that CCN2/CTGF enhanced differentiation of osteoclast via two different pathways.

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  • Development and medical application of peptide and RNA aptamers that bind to CCN2

    Grant number:21592360  2009 - 2011

    Japan Society for the Promotion of Science  Grants-in-Aid for Scientific Research  Grant-in-Aid for Scientific Research (C)

    KUBOTA Satoshi, TAKIGAWA Masaharu, HATTORI Takako, NISHIDA Takashi, AOYAMA Eriko

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    Grant amount:\4550000 ( Direct expense: \3500000 、 Indirect expense:\1050000 )

    CCN2 is known to promote harmonized regeneration of bone and cartilage tissues and to be involved in fibrotic disorders of a variety of organs. Therefore, regulating CCN2 function is of great significance in the field of regenerative medicine and fibrosis therapeutics. In this study, we designed, synthesized and evaluated the effect of aptamers that bind to CCN2, in order to control the molecular action of CCN2. As a result, we could obtain a few aptamers that could promote cartilage regeneration, or might regulate bone remodeling.

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  • Role of a ubiquitin ligase for Sox9 on endochondral ossification and neurological disorder

    Grant number:21592359  2009 - 2011

    Japan Society for the Promotion of Science  Grants-in-Aid for Scientific Research  Grant-in-Aid for Scientific Research (C)

    HATTORI Takako, TAKIGAWA Masaharu, KUBOTA Satoshi, NISHIDA Takashi, AOYAMA Eriko

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    Grant amount:\4550000 ( Direct expense: \3500000 、 Indirect expense:\1050000 )

    Sox9 is a master regulatory transcription factor of the SRY gene family regulating chondrogenesis as well as neural development. In this report, we identified a ubiquitin ligase which binds specifically and regulates cellular concentration of Sox9, and examined the role of the ubuquitin ligase on endochondral ossification as well as neurological disorder through controlling cellular concentration of Sox9.

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  • Clarification of molecular mechanism on the osteoclastogenesis promoted by CCN family 2/connective tissue growth factor

    Grant number:20592173  2008 - 2010

    Japan Society for the Promotion of Science  Grants-in-Aid for Scientific Research  Grant-in-Aid for Scientific Research (C)

    NISHIDA Takashi, TAKIGAWA Masaharu, KUBOTA Satoshi, HATTORI Takako

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    Grant amount:\4030000 ( Direct expense: \3100000 、 Indirect expense:\930000 )

    Combination of RANKL, M-CSF and CCN2 significantly enhanced tartrate-resistant acid phosphatase (TRAP)-positive multinucleated cell formation compared with RANKL and M-CSF. Therefore, we suspected the involvement of CCN2 in cell-cell fusion during osteoclastogenesis. To clarify the mechanism, we isolated fetal liver cells from Ccn2-null mice at E14.5 days, and investigated TRAP-positive multinucleated cell formation. The results showed that RANKL-induced osteoclastogenesis was impaired in fetal liver cells from Ccn2-null mice, and the impaired osteoclast formation was rescued by the addition of exogenous CCN2. These results suggest that CCN2 involves in cell-cell fusion during osteoclastogenesis.

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  • Comprehensive study on molecular basis of actions of CCN family proteins as novel signal conductors and its translational application

    Grant number:19109008  2007 - 2011

    Japan Society for the Promotion of Science  Grants-in-Aid for Scientific Research  Grant-in-Aid for Scientific Research (S)

    TAKIGAWA Masaharu, KUBOTA Satoshi, HATTORI Takako, NISHIDA Takashi, AOYAMA Eriko

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    Grant amount:\110500000 ( Direct expense: \85000000 、 Indirect expense:\25500000 )

    We have established a novel concept that CCN family proteins should be considered a newly classified signaling molecules that comprehensively regulate extracellular signals, and thus should be entitled "Signal Conductors." Moreover, we have accumulated basic data for application of CCN proteins toward harmonized regenerative medicine and for therapeutics of diseases with their abnormal upregulation, leading to their medical applications.

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  • Regulation of CCN family gene expression via micro RNA regulatory network and its Biological signficance

    Grant number:19592142  2007 - 2008

    Japan Society for the Promotion of Science  Grants-in-Aid for Scientific Research  Grant-in-Aid for Scientific Research (C)

    KUBOTA Satoshi, TAKIGAWA Masaharu, HATTORI Takako, NISHIDA Takashi

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    Grant amount:\4550000 ( Direct expense: \3500000 、 Indirect expense:\1050000 )

    マイクロRNA(miRNA)は小分子noncoding RNA(ncRNA)であり、個々のmiRNAが数千のmRNAの3'非翻訳領域を標的として、遺伝子の発現をネットワーク的に制御する。本研究ではCCNファミリー遺伝子の代表的メンバーであり、間葉系組織の成長ならびに再生を指揮するCCN2遺伝子が特定のmiRNAの制御ネットワーク下にあることを実証した。さらに、このmiRNAによる制御が、軟骨細胞の成熟形質の獲得・維持に重要であることも明らかとなった。またmiRNAの作用機構や軟骨細胞後期分化における役割を今後解明していく上で、有用な知見をも得ることができた。

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  • MMPの新機能:マトリクス合成促進因子の転写因子としての役割

    Grant number:19659487  2007 - 2008

    日本学術振興会  科学研究費助成事業  萌芽研究

    滝川 正春, 久保田 聡, 服部 高子, 西田 崇, 青山 絵理子

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    Grant amount:\3300000 ( Direct expense: \3300000 )

    (1)MMP-3と複合体を形成する転写関連因子の探索と機能解析;MMP-3とnuclear MMP-3associated protein (NuMAP)の発生、内軟骨性骨化過程における遺伝子発現変動の解析:まず、マウスの発生段階でのこれら遺伝子の発現変動をin silicoでESTデータベースを活用し解析した結果、MMP-3の制御標的であるCCN2遺伝子発現は原腸陥入以後成体に至るまでは誘導されること、またMMP-3は出生時以後に発現が誘導されることが明らかになった。これに対してNuMAPであるretinoblastoma binding protein4(RBBP4)、nuclear receptor co-repressor1(NRCR1)、Interleukin enhancer binding factor2(ILF2)は卵細胞から成体に至るまで広い発生段階で遺伝子発現がみられた。続いてマウス成長軟骨初代培養細胞増殖・分化系でRBBP4とILF2遺伝子発現が、共に、後期分化、つまり肥大化に向かうに従って上昇することをリアルタイムRT-PCRで明らかにした。以上より、NuMAPのうちRBBP4およびILF2は、発生毅階で見る限りではcofactorとは考えにくいものの、内軟骨性骨形成においてはMMP-3によるCCN2遺伝子の転写活性化を支える役割を果たすものと考えられる。
    (2)他のMMPsによるCCN2/CTGF遺伝子の転写制御の検討:軟骨細胞様HCS-2/8細胞におけるCCN2遺伝子プロモーター活性を、MMP-2/9特異的阻害剤の存在下で評価した結果、MMP-3特異的阻害剤でみられた用量依存的な転写活性抑制効果はみられなかった。したがってMMP-2およびMMP-9はMMP-3とは異なり、MMPとしての古典的機能と関連した形では、CCN2遺伝子の転写制御にかかわっていないことが示唆された。

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  • Analysis of the role of cartilage-specific gene in endochondral bone formation using BAC (bacterial artificial chromosome)-transgenic mice

    Grant number:19592145  2007 - 2008

    Japan Society for the Promotion of Science  Grants-in-Aid for Scientific Research  Grant-in-Aid for Scientific Research (C)

    HATTORI Takako, TAKIGAWA Masaharu, KUBOTA Satoshi, NISHIDA Takashi, AOYAMA Eriko

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    Grant amount:\4680000 ( Direct expense: \3600000 、 Indirect expense:\1080000 )

    全長10型コラーゲン遺伝子を含むbacterial artificial chromosome(BAC)DNAの10型コラーゲンプロモーター領域下流にSox9 cDNAを挿入し、Sox9を肥大化軟骨層に異所性に過剰発現するBACトランスジェニックマウスを作製し,(1) 骨髄の消失、肥大化軟骨層への血管侵入の遅延、肥大化軟骨細胞層の延長に起因する骨の短縮、(2) 延長した肥大化軟骨細胞層でのSox9の強い発現に加え、肥大化軟骨マーカー遺伝子の発現の低下、(3) Sox9は直接的にyθgfプロモーター活性を低下させる事、を明らかにし、これらの事からSox9の肥大軟骨細胞層における消失は、血管の侵入、骨髄の形成を可能にし,正常な内軟骨性骨形成に必須である事をin vivoおよびin vivoで明らかにした。

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  • 軟骨から骨への置換期のCTGF/CCN2の作用メカニズムの分子レベルでの解明

    Grant number:18791366  2006 - 2007

    日本学術振興会  科学研究費助成事業  若手研究(B)

    西田 崇

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    Grant amount:\3400000 ( Direct expense: \3400000 )

    本研課題から以下のことが明かとなった。
    1.ヒト軟骨細胞様細胞株HCS-2/8を低酸素条件下で培養すると血管内皮増殖因子(VEGF)の発現上昇が認められた。
    2.CCN family 2/結合組織成長因子(CCN2/CTGF; CCN2)欠損マウスの肋軟骨から軟骨細胞を単離し、VEGFの発現を調べると、CCN2欠損軟骨細胞でVEGFの発現量の減少が確認された。
    3.CCN2遺伝子を過剰発現させたHCS-2/8細胞を低酸素下で培養するとVEGF遺伝子の発現上昇が見られたが、通常酸素条件下では変化が見られなかった。
    4.HCS-2/8細胞に組換えCCN2タンパク質を添加すると、hypoxia-inducible factor 1α(Hif1α)の遺伝子発現上昇が見られた。
    5.VEGF promoterの下流にルシフェラーゼ遺伝子を組み込んだプラスミドをHCS-2/8細胞に遺伝子導入し、低酸素下でCCN2を添加すると対照群に比べてCCN2の濃度に依存してルシフェラーゼ活性が上昇した。
    6.VEGF promoter上のhypoxia response element(HRE)にmutationを入れるとCCN2刺激を行ってもルシフェラーゼ活性の上昇は見られなかった。
    7.胎生18.5日のマウス成長板を用いて抗VEGF抗体による免疫染色を行うと、VEGFは肥大軟骨細胞層だけでなく、静止層及び増殖層の軟骨細胞にも局在した。また、この部位は低酸素状態であることが報告されており、HIF1αも核内に局在した。一方、CCN2欠損マウスの成長板では静止層及び増殖層のVEGFの発現は低下し、HIF1αも核内に見られなかった。
    本研究から低酸素条件下でのCCN2刺激によりVEGF発現の上昇が見られたが、CCN2が直接的にVEGF promterの活性を制御しているのではなく、HIF1αの発現を介していることが示唆された。このことはCCN2が肥大軟骨細胞層に発現しているVEGFを主に制御しているのではなく、低酸素下の静止層や増殖層のVEGF発現制御に関与している可能性が考えられ、内軟骨性骨化におけるCCN2とVEGFの関係を明らかにした本研究は非常に意義深く重要であると考える。

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  • Role of CCN2 as a trans-modulator in the integrated development of bone, cartilage and hematopoietic systems

    Grant number:17591938  2005 - 2006

    Japan Society for the Promotion of Science  Grants-in-Aid for Scientific Research  Grant-in-Aid for Scientific Research (C)

    KUBOTA Satoshi, TAKIGAWA Masaharu, HATTORI Takako, NISHIDA Takashi, AOYAMA Eriko

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    Grant amount:\3500000 ( Direct expense: \3500000 )

    1. Investigation on the production and distribution of CCN2 in hematopoietic cells in bone marrow
    Identification of CCN2 producers and target cells : Based on the fact that platelets harbor a vast amount of CCN2, we hypothesized megakaryocytes as the major CCN2 producer. Initially, we evaluated the CCN2 mRNA expression and protein production by a megakaryocytic CMK cell line, but failed to detect them. Next, we isolated human hematopoietic stem cells and drove them differentiate into megakaryocytes in vitro. As a result, we could detect ccn2 mRNA at the final stage of the differentiation of megakaryocytes in vitro. In addition, by analyzing bone marrow histochemically, a putative CCN2-associated cell surface receptor, EphA4, was detected on megakaryocytes, which may contribute to the uptake of CCN2 from outside upon the formation of platelets.
    Evaluation of the effects of CCN2 on hematopoietic cells : We showed that mesenchymal knocking-down of ccn2 expression resulted in the repression of osteoclast development from the macrophage-monocyte lineage. This finding strongly indicates that osteoclast progenitor is one of the CCN2 target cells.
    2. Analysis of the interaction between CCN2 and other cytokines in bone marrow.
    First of all, we for the first time clarified that CCN2 provoked the gene expression of M-CSF, which is critically required for the differentiation of the cells in the monocyte lineage, in chondrocytes. Subsequently, by using a bacteriophage-display system, we screened dodecapeptides that specifically interacted with each module of tetramodular CCN2 molecule. With the data obtained, common peptide binding motifs were extracted in silico. We synthesized a peptide with one such motif and found that it actually repressed the effects of CCN2 on chondrocytes in vitro.

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  • The role of CTGF as a novel tissue-regenerating factor, regenerin, and its application for medical and dental tissue engineering

    Grant number:15109010  2003 - 2006

    Japan Society for the Promotion of Science  Grants-in-Aid for Scientific Research  Grant-in-Aid for Scientific Research (S)

    TAKIGAWA Masaharu, KUBOTA Satoshi, HATTORI Takako, NISHIDA Takashi, YAMAMOTO Teruko, TABATA Yasuhiko

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    Grant amount:\103870000 ( Direct expense: \79900000 、 Indirect expense:\23970000 )

    1. Using wild type and/or mutant animals, we found that in addition to endochondral ossification in growth plate, CTGF/CCN2 was involved in secondary ossification center formation, intramembranous ossification, formation of periodontal ligament and articular and auricular cartilages, distraction osteogenesis and repair of tooth extraction socket. In vivo administration of CTGF/CCN2 with gelatin hydrogel into the artificial defect of articular cartilage and bone resulted in repair of these tissues, respectively. Taken together with the finding that platelets contained much CTGF/CCN2, these findings indicate that CTGF/CCN2 functions as a regeneration factor "regenerin".
    2. We developed CTGF/CCN2 domain-specific antibodies and domain-specific ELISA systems. The function and signal transduction pathway of each domain was different depending on types of cells, such as chondrocytes and endothelial cells. CT domain of CTGF/CCN2 promoted adhesion of mesenchymal stem cells on hydroxyapatite plates, suggesting a possible application for bone regeneration with a combination of CTGF/CCN2 and hydroxyapatite.
    3. A cis-element in 3'-untranslation region (3'-UTR) of CTGF/CCN2 mRNA, which was involved in destabilization of its mRNA, and a protein, which bound to the element, were found in chondrocytes. The biding between them changed in reverse relation to the process of chondrocyte differentiation. A hypoxia-inducible protein, which stabilized CTGF/CCN2 mRNA by binding to its 3'-UTR was also detected.
    4. CTGF/CCN2 bound to perlecan, aggrecan and fibronectin, indicating its retention in extracellular matrix. CTGF/CCN2 had collaborative action with M-CSF on cartilage. Low density lipoprotein-related protein I was one of the receptors for CTGF/CCN2 in chondrocytes. Concerning signal transduction pathway of CTGF/CCN2 in chondrocytes, PKC was found as an upstream mediator of ERK and p38MAPK. JNK was involved in cell proliferation. PI3K and PKB were found to be involved in calcification.

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  • Functional dissection and medical application of the 4 modules in the chondrocyte-derived growth factor, ecogenin/CTGF.

    Grant number:14571762  2002 - 2003

    Japan Society for the Promotion of Science  Grants-in-Aid for Scientific Research  Grant-in-Aid for Scientific Research (C)

    KUBOTA Satoshi, NISHIDA Takashi, NAKANISHI Tohru, TAKIGAWA Masaharu, MUKUDAI Yoshiki

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    Grant amount:\3500000 ( Direct expense: \3500000 )

    1. Establishment of the production and detection system with specific antibodies of each module of ecogenin/CTGF : Firstly, each module was independently prepared by a Brevibacillus production s stem, and the epitopes of anti-CTGF antibodies were located. As a result at least one antibody against each module, IGFBP, VWC, TSP1 or CT, was obtained Among the ELISA systems we established, the most sensitive one is already in use for subsequent research. Additionally, the other ELISA systems to quantify CTGF subfragments were also established.
    2. Investigation of the roles of modular structure in cell growth and differentiation : Utilizing each purified module, we examined if the signal transduction cascades in chondrocytic HCS-2/8 cells were activated. As a result, a few different pathways were activated by specific modules. Since different results were obtained with other cell types, CTGF is supposed to use multiple signaling pathways differentially. Of note, proteoglycan synthesis by HCS-2/8 was rather enhanced by a few module-specific antibodies, whereas proliferation was inhibited by those antibodies. These findings suggest the utility of the antibodies in therapeutics as well as the CTGF derivatives. Next, we evaluated the effects of the modules on cell adhesion and found the promoting effects of all of the modules. Among the four, CT was the most effective. Finally, effects of overexpression of the modules on cell cycle was evaluated. Then, dimodular TSP-CT and single CT were suggested to arrest the cell cycle at M-phase. As such, particular care should be taken for CT module in considering therapeutic application.
    3. Experimental therapeutics with animal models : Prior to the application of modular mutants, wild type CTGF was applied to the experimental rat cartilage defect models and the effects were evaluated. Then CTGF was found to regenerate damaged articular cartilage. This methodology is going to be applied to the evaluation of modular mutants.

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  • 肥大軟骨細胞由来の成長因子CTGF/Hcs24の内軟骨性骨化における役割〜器官培養系及びin vivoでの解析〜

    Grant number:14771021  2002 - 2003

    日本学術振興会  科学研究費助成事業  若手研究(B)

    西田 崇

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    Grant amount:\2900000 ( Direct expense: \2900000 )

    (1)生後3週齢のマウスの肋軟骨組織を採取し器官培養した。この培養系に3日間CTGFを添加した後、肋軟骨組織からtotal RNAを抽出した。軟骨組織の分化マーカーであるaggrecan, type X collagenの発現をreal-time PCR法を用いて調べると、CTGF添加群では両マーカーとも発現量の増加が見られた。このことは器官培養系においてもCTGFによって内軟骨性骨化が促進されることを示唆している。
    (2)最近、Ctgf欠損マウスの表現型が報告された。この報告ではCtgf欠損マウスは生後すぐに内軟骨性骨化の骨化不全で十分呼吸ができず死亡してしまうというものであった。実際、Ctgf欠損マウスを組織学的に調べてみると、血管侵入に重要なVEGFの発現量の減少と肥大軟骨細胞層の増加が見られた。Ctgf欠損マウスは出生直後に死亡してしまうため、Ctgfヘテロ欠損マウスの肋軟骨組織を用いて器官培養を行うと、正常マウスと比較してヘテロマウスではtype X collagenの発現量が増加していた。一方でVEGF発現は正常マウスとヘテロマウスで発現量の差は認めなかったが、ヘテロマウスの肋軟骨組織の器官培養系にCTGFを添加すると著明にVEGF発現レベルが上昇した。また、この現象は組織の免疫染色においても確認された。
    (3)正常マウス及びCtgf欠損マウスの出生直後の尾椎軟骨組織を用いてCTGF及びVEGFの局在を免疫染色で調べた。その結果、正常マウスではVEGFは肥大軟骨細胞層に局在し、CTGFはその周辺を取り囲むように局在した。一方、Ctgf欠損マウスではVEGFの局在が肥大軟骨細胞層にはほとんど認められなかった。
    (4)Ctgf欠損マウスから細胞を分離培養した後、CTGFを添加してVEGF発現レベルをreal-time PCRで調べた。その結果、CTGF欠損マウス由来の細胞ではCTGF添加によってVEGF発現レベルが上昇した。
    器官培養系及びCtgf欠損マウスを用いたin vivoの実験系から得られた結果はCTGFが内軟骨性骨化を促進する中心的な成長因子の一つであることを明らかにしている。また、そのメカニズムの一つはCTGFが骨側から軟骨側への血管侵入に重要な役割を果たすVEGFの発現レベルを制御することによって行われていることが示唆された。

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  • Molecular mechanism of temporomandibular joint osteoarthritis and gene therapy for degraded, cartilage

    Grant number:14571843  2002 - 2003

    Japan Society for the Promotion of Science  Grants-in-Aid for Scientific Research  Grant-in-Aid for Scientific Research (C)

    FUJISAWA Takuo, TAKIGAWA Masaharu, NISHIDA Takashi, KUBOKI Takuo, MAEKAWA Kenji

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    Grant amount:\4000000 ( Direct expense: \4000000 )

    The purposes of this research are to clarify the mechanism of cartilage degradation in osteoarthritis (OA) and to investigate the possibility of gene therapy for articular cartlige restoration using connective tissue growth factor (CTGF).
    First, we investigated the effects of CTGF/Hcs24 transduced by recombinant adenoviruses on the rabbit articular cartilage (RAC) cells in vitro. When RAC cells were infected with adenoviruses containing the CTGF/Hcs24 gene, RAC cells expressed CTGF/Hcs24 mRNA and produced CTGF/Hcs24 protein. RAC cells synthesized more proteoglycan than the control cells. These results suggest that CTGF is useful factor for cartilage repair.
    Second, we establish a genuine mechanical-stress-induced OA model of the rabbit TMJ. In the experimental rabbits, repetitive forced jaw opening (RFJO) 3 hours/day for 5 days was applied. By histological assessment of the TMJ articular tissues, partial eburnation of the articular cartilage, reactive marginal proliferation of the articular cartilage chondrocytes and nested proliferation of chondrocytes in the subchondral bone area were observed at 7 days after the RFJO period. Furthermore, apoptotic chondrocytes were observed in the cartilage degradation area at 7 days after the RFJO period. And nitrotyrosine, a marker of NO production, and MMP-3, a key factor of cartilage ECM degradation, were observed where chondrocyte apoptosis was evident. These results suggest the RFJO protocol without any surgical intervention can induce evident OA-like lesions in the rabbit TMJ, and cartilage degradation in OA may be induced via chondrocytes apoptosis. This OA model may greatly contribute to the elucidation of the cartilage degradation mechanism in TMJ OA.

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  • 軟骨成長因子エコジェニン/CTGFによる生体デザインを目指す研究

    Grant number:13877311  2001 - 2002

    日本学術振興会  科学研究費助成事業  萌芽研究

    滝川 正春, 西田 崇, 久保田 聡, 中西 徹

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    Grant amount:\1700000 ( Direct expense: \1700000 )

    ・ヒト軟骨細胞様細胞株HCS-2/8では、低酸素下では、エコジェニン/CTGFのmRNAと蛋白の増加が起こり、MMPsとTIMPとの比がmRNA並びに蛋白レベルで上昇した。即ち、低酸素が軟骨組織のリモデリングを促し軟骨形成を促進することを示唆した。
    ・エコジェニン/CTGFによる生体デザインを目指す一つの手法として、同因子の発現を転写レベルで調節する方法がある。そこで、軟骨由来HCS-2/8細胞におけるCTGFの構成的高発現を支えている領域を探索し、既知のTGF-β応答領域以外に新規のエレメントであるtranscription enhancer dominat in chondrocytes(TRENDIC)を見いだした。また、HCS-2/8細胞の核抽出液中にこのTRENDICに結合する軟骨特異的核内因子が存在することを見いだした。さらに、HCS-2/8細胞のcDNA発現ライブラリーを作成し、TRENDICと結合するタンパク質を3種類クローニングした。
    ・CTGFは成長軟骨細胞に対しては分化を肥大化まで促進するが、関節軟骨細胞に対してはプロテオグリカンやII型コラーゲン合成を促進するものの肥大化までは促進しないことを見いだし、内軟骨性形成だけでなく関節軟骨の形成にも有用であることを示した。
    ・骨折時に肥大軟骨細胞だけでなく、幼弱な骨芽細胞がエコジェニン/CTGFを発現することから同因子を膜性骨化を促進する手段としても用い得ることを示した。
    ・エコジェニン/CTGFに特徴的な4つのモジュールについて各モジュール毎の組み換え体蛋白質を、Brevibacillus choshinensisを用いて作成し、軟骨細胞、血管内皮細胞等に対する作用を検討し、モジュール毎に異なる生物活性があることを見いだした。
    以上の知見はエコジェニン/CTGFにより生体デザインを目指すための萌芽的研究として貴重な情報を提供したものと言える。

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  • Development of analytical method for each domain of CTGF/ecogenin and its clinical application.

    Grant number:12557154  2000 - 2001

    Japan Society for the Promotion of Science  Grants-in-Aid for Scientific Research  Grant-in-Aid for Scientific Research (B)

    TAKIGAWA Masaharu, NISHIDA Takashi, KUBOTA Satoshi, NAKANISHI Tohru, MUKUDAI Yoshiki

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    Grant amount:\13200000 ( Direct expense: \13200000 )

    Expression vectors for IGF binding protein-like(IGFBP), von Willebrand type C repeat(VWC), thrombospondin type I repeat(TSP1) and C-terminal(CT) domains of CTGF/ecogenin were constructed and their recombinant proteins were produced.
    Plasmids of CTGF lacking 1 or 2 domains were constructed and introduced into HeLa cells. Consequently, HeLa cell lines producing these proteins were established.
    Using the recombinant proteins, epitopes of six monoclonal antibodies and two polyclonal antibodies were determined. Three types of ELISA systems were developed.
    After production, CTGF was processed before it was secreted out of cells.
    CTGF was found to be a hypoxia-induced angiogenic factor, tumor angiogenesis factor and mechanical stress-induced factor. The ELISA systems described above could be used for diseases related with these phenomina.

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  • 軟骨細胞におけるシンデカンおよびインテグリンを介するCTGFの作用機構の解明

    Grant number:12771105  2000 - 2001

    日本学術振興会  科学研究費助成事業  奨励研究(A)

    西田 崇

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    Grant amount:\2400000 ( Direct expense: \2400000 )

    1.ヒト口腔扁平上皮癌細胞株HSCにCTGF遺伝子を強制発現させ、マクロアレイ解析を行ったところ、対照と比較して、インテグリンα_3β_1の遺伝子発現の上昇が確認された。
    2.ラットの成長板において、CTGFが増殖軟骨細胞層から肥大軟骨細胞層にかけて局在しているのに対し、ヘパラン硫酸は増殖軟骨細胞層から成熟軟骨細胞層にかけて局在することを明らかにした。
    3.ヒト軟骨細胞様細胞株HCS-2/8においてCTGFはヘパラン硫酸と局在が一致することを明らかにした。
    4.CTGFは特徴的な4つのモジュール構造、即ちIGFBP、vWC、TSP、CTモジュールで構成されているが、各モジュールの組換えタンパク質を作製し、ヘパリンがC末端モジュールであるCTに結合することを明らかにした。
    5.対数増殖期のHCS-2/8細胞にCTGFを添加するとDNA合成が冗進するが、ヘパリナーゼで前処理したHCS-2/8細胞ではCTGFのDNA合成促進作用は消失した。
    6.ヘパリナーゼで前処理したHCS-2/8細胞にCTGFを添加し、軟骨細胞の分化マーカーの一つであるアグリカンの発現をノーザンプロット法で解析すると、ヘパリナーゼで処理していないHCS-2/8細胞で見られるアグリカンの発現量の増加が認められなくなった。
    7.6.と同様の条件下でプロテオグリカンの合成量を^<35>S-硫酸の取り込みを指標にして測定すると、ヘパリナーゼで前処理したHCS-2/8細胞ではCTGFによるプロテオグリカン合成の促進効果が認められなかった。
    以上のことから、CTGFがHCS-2/8細胞に作用する際にヘパラン硫酸が必要であり、ヘパラン硫酸によって、CTGFの活性が制御されていることが示唆された。

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  • 軟骨由来成長因子エコジェニン/CTGFを用いた歯周組織再建への試み

    Grant number:11877324  1999 - 2000

    日本学術振興会  科学研究費助成事業  萌芽的研究

    滝川 正春, 西田 崇, 久保田 聡, 中西 徹

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    Grant amount:\2100000 ( Direct expense: \2100000 )

    1.歯根膜線維芽細胞株(MPL)にエコジェニン/CTGF作用させると、骨芽細胞と共通した分化マーカーであるI型コラーゲン、オステオカルシン、オステオポンチン、アルカリホスファターゼ等のmRNAの発現が亢進することは昨年度見いだしたが、本年度は新たに骨膜と歯根膜にのみ発現し、骨芽細胞に分化すると発現レベルが低下するペリオスチン遺伝子の発現がエコジェニン/CTGFの作用により亢進することを見い出した。すなわち、エコジェニン/CTGFは歯根膜線維芽細胞に対しては骨芽細胞にtransdiffeentiationさせるのではなく、歯根膜線維芽細胞としての分化機能の発現を特異的に誘導することが明らかとなった。
    2.TGF-β、BMPおよびIGF-Iにより骨芽細胞株Saos-2においてエコジェニン/CTGFの発現が亢進することが分った。また、歯根膜線維芽細胞MPLにおいてもTGF-βによりエコジェニン/CTGF発現の亢進を見い出した。
    3.β-ガラクトシダーゼ遺伝子をマーカーとして組み込んだ非増殖性アデノウイルスベクターを顎関節腔内に直接注入することにより、関節軟骨に遺伝子導入が可能であった。また、熱ショックタンパク70遺伝子をマーカーとして組み込んだ非増殖性アデノウイルスベクターを培養細胞に感染させ熱ショック刺激で発現することからこのベクターが有用であることを確認した。
    4.エコジェニン/CTGF遺伝子を非増殖性アデノウイルスベクターに組み込み、マウス骨芽細胞株MC3T3-E1細胞への遺伝子導入してエコジェニン/CTGFの産生能を検討した。その結果、MC3T3-E1細胞にはこの方法で効率よく遺伝子導入が可能で、また遺伝子発現も少なくとも7日間継続することがわかり、その有用性を確認できた。

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  • Studies on the mechanism of actions of a cartilage-derived pleiotrophic growth factor, ecogenin/CTGF - Molecular cloning of its receptors and mechanism of inter- and intra signal transduction -

    Grant number:10470389  1998 - 2000

    Japan Society for the Promotion of Science  Grants-in-Aid for Scientific Research  Grant-in-Aid for Scientific Research (B).

    TAKIGAWA Masaharu, NISHIDA Takashi, HATTORI Takako, NAKANISHI Tohru

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    Grant amount:\13300000 ( Direct expense: \13300000 )

    1) Specific receptors for ecogenin/CTGF were found on chondrocytes, osteoblasts and vascular endothelial cells. Its molecular weight was about 240 kDa.
    2) Specific binding of radiolabeled ecogenin/CTGF for chondrocytes decreased as the cells differentiated.
    3) In chondrocyte culture system, ecogenin/CTGF bound cell surface heparan sulfate proteoglycans after secreted and was then released, suggesting that it is a matricrine factor.
    4) Ecogenin/CTGF stimulated phosphorylation of ERK and p38MAPK in chondrocytes. Using specific inhibitors, we found that ecogenin/CTGF promoted the proliferation and differentiation of chondrocytes through ERK and p38MAPK pathways, respectively.
    5) Two binding proteins for ecogenin/CTGF were purified from human chondrocytic cell line HCS-2/8. The one was 42 kDa protein of which N-terminal amino acid sequence corresponded to that of γ-actin and the other was 50 kDa protein of which N-terminal amino acid sequence corresponded to that of cytokeratin.
    6) When ecogenin/CTGF was overexpressed in Cos-7 cells, it localized around centrosome. C-terminal fragment was also found in cells.
    These findings suggest that ecogenin/CTGF not only acts as a paracrine and matricrine factor through its specfic receptors but also functions through an alternative intracellular pathway.

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