Updated on 2026/06/18

写真a

 
KIKUOKA RYO
 
Organization
Medical Development Field Special-Appointment Assistant Professor
Position
Special-Appointment Assistant Professor
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Research Interests

  • データサイエンス

  • 神経薬理

Education

  • 岡山大学大学院医歯薬総合研究科 博士課程    

    2017.4 - 2021.3

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  • 岡山大学薬学部    

    2011.4 - 2017.3

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Research History

  • 岡山大学病院薬剤部

    2021.4

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  • 岡山大学大学院医師薬総合研究科博士課程

    2017.4 - 2021.3

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  • 岡山大学薬学部

    2011.4 - 2017.3

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Papers

  • Rotenone targets midbrain astrocytes to produce glial dysfunction-mediated dopaminergic neurodegeneration

    Ikuko Miyazaki, Nami Isooka, Ryo Kikuoka, Fuminori Imafuku, Kaori Masai, Kana Tomimoto, Masakiyo Sakaguchi, Chiharu Sogawa, Norio Sogawa, Yoshihisa Kitamura, Masato Asanuma

    Acta Neuropathologica Communications   13 ( 1 )   2025.11

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

    DOI: 10.1186/s40478-025-02160-3

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    Other Link: https://link.springer.com/article/10.1186/s40478-025-02160-3/fulltext.html

  • Cardiovascular toxicity risk assessment of tyrosine kinase inhibitors: a pharmacovigilance study using the VigiBase database

    Yusuke Igawa, Hirofumi Hamano, Satoru Esumi, Tatsuaki Takeda, Makoto Kajizono, Ryo Kikuoka, Ikuya Kimura, Yoshito Zamami

    Frontiers in Pharmacology   15   2024.12

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    Publishing type:Research paper (scientific journal)   Publisher:Frontiers Media SA  

    Introduction

    Advances in the early detection and treatment of cancer have significantly improved the prognosis of patients with cancer. Tyrosine kinase inhibitors (TKIs) are effective targeted treatments for various malignancies that act by inhibiting kinase activity. Although these drugs share a common mechanism of action, they differ in their targeted kinases, pharmacokinetics, and side effects. TKIs can cause cardiovascular side effects, which adversely affect the prognosis of cancer survivors. This study aimed to assess the risk of cardiac toxicity associated with TKIs using the World Health Organization Global Database, VigiBase.

    Methods

    We conducted a cross-sectional analysis of data from VigiBase, a comprehensive global database of suspected drug reactions. The dataset included reports up to December 2022. We identified patients treated with Food and Drug Administration-approved TKIs and analyzed their age and sex data. The primary outcome was cardiovascular impairment, defined by 21 preferred terms in the Medical Dictionary for Regulatory Activities Terminology version 25.1. Disproportionality analysis using the reported odds ratio was performed to detect adverse cardiovascular signals. Statistical analyses were conducted using R 3.3.2, with a P-value <0.05 considered significant.

    Results

    Of the 32, 520, 983 reports in VigiBase, 23, 181, 539 were eligible for the analysis. Significant cardiovascular signals were identified for 17 TKIs, including erlotinib, gefitinib, and imatinib. Stratified analyses revealed potential sex- and age-related differences in the risk of adverse events. Heatmaps indicated significant signals for drugs such as lapatinib in males and gefitinib in younger patients.

    Discussion

    Our findings indicate that some TKIs, particularly those classified as VEGFR, BCR-ABL, and BTK, pose similar risks of cardiotoxicity, while others, including EGFR, HER2, and ALK TKIs, exhibit varied risk profiles. These results underscore the importance of individualized risk assessment and management of TKI-treated patients. In conclusion, this study provides valuable insights into the cardiotoxic risk of TKIs, which is essential for developing tailored treatment plans.

    DOI: 10.3389/fphar.2024.1472008

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  • Central and Enteric Neuroprotective Effects by Eucommia ulmoides Extracts on Neurodegeneration in Rotenone-induced Parkinsonian Mouse.

    Fuminori Imafuku, Ikuko Miyazaki, Jin Sun, Sunao Kamimai, Takashi Shimizu, Toshiaki Toyota, Yusei Okamoto, Nami Isooka, Ryo Kikuoka, Yoshihisa Kitamura, Masato Asanuma

    Acta medica Okayama   76 ( 4 )   373 - 383   2022.8

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

    Parkinson's disease (PD) is a progressive neurodegenerative disease of both the central and peripheral / enteric nervous systems. Oxidative stress and neuroinflammation are associated with the pathogenesis of PD, suggesting that anti-oxidative and anti-inflammatory compounds could be neuroprotective agents for PD. Eucommia ulmoides (EU) is a traditional herbal medicine which exerts neuroprotective effects by anti-inflammatory and anti-oxidative properties. Our previous study showed that treatment with chlorogenic acid, a component of EU, protected against neurodegeneration in the central and enteric nervous systems in a PD model. In this study, we examined the effects of EU extract (EUE) administration on dopaminergic neurodegeneration, glial response and α-synuclein expression in the substantia nigra pars compacta (SNpc), and intestinal enteric neurodegeneration in low-dose rotenone-induced PD model mice. Daily oral administration of EUE ameliorated dopaminergic neurodegeneration and α-synuclein accumulation in the SNpc. EUE treatment inhibited rotenone-induced decreases in the number of total astrocytes and in those expressing the antioxidant molecule metallothionein. EUE also prevented rotenone-induced microglial activation. Furthermore, EUE treatment exerted protective effects against intestinal neuronal loss in the PD model. These results suggest that EU exerts neuroprotective effects in the central and enteric nervous systems of rotenone-induced parkinsonism mice, in part by glial modification.

    DOI: 10.18926/AMO/63889

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  • Neuroprotective Effects of Anti-high Mobility Group Box-1 Monoclonal Antibody Against Methamphetamine-Induced Dopaminergic Neurotoxicity

    Kaori Masai, Keita Kuroda, Nami Isooka, Ryo Kikuoka, Shinki Murakami, Sunao Kamimai, Dengli Wang, Keyue Liu, Ikuko Miyazaki, Masahiro Nishibori, Masato Asanuma

    Neurotoxicity Research   39 ( 5 )   1511 - 1523   2021.8

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

    DOI: 10.1007/s12640-021-00402-5

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    Other Link: https://link.springer.com/article/10.1007/s12640-021-00402-5/fulltext.html

  • Mirtazapine exerts astrocyte-mediated dopaminergic neuroprotection

    Ryo Kikuoka, Ikuko Miyazaki, Natsuki Kubota, Megumi Maeda, Daiki Kagawa, Masaaki Moriyama, Asuka Sato, Shinki Murakami, Yoshihisa Kitamura, Toshiaki Sendo, Masato Asanuma

    Scientific Reports   10 ( 1 )   2020.11

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

    Abstract

    Mirtazapine, a noradrenergic and specific serotonergic antidepressant (NaSSA), is known to activate serotonin (5-HT) 1A receptor. Our recent study demonstrated that stimulation of astrocytic 5-HT1A receptors promoted astrocyte proliferation and upregulated antioxidative property in astrocytes to protect dopaminergic neurons against oxidative stress. Here, we evaluated the neuroprotective effects of mirtazapine against dopaminergic neurodegeneration in models of Parkinson’s disease (PD). Mirtazapine administration attenuated the loss of dopaminergic neurons in the substantia nigra and increased the expression of the antioxidative molecule metallothionein (MT) in the striatal astrocytes of 6-hydroxydopamine (6-OHDA)-injected parkinsonian mice via 5-HT1A receptors. Mirtazapine protected dopaminergic neurons against 6-OHDA-induced neurotoxicity in mesencephalic neuron and striatal astrocyte cocultures, but not in enriched neuronal cultures. Mirtazapine-treated neuron-conditioned medium (Mir-NCM) induced astrocyte proliferation and upregulated MT expression via 5-HT1A receptors on astrocytes. Furthermore, treatment with medium from Mir-NCM-treated astrocytes protected dopaminergic neurons against 6-OHDA neurotoxicity, and these effects were attenuated by treatment with a MT-1/2-specific antibody or 5-HT1A antagonist. Our study suggests that mirtazapine could be an effective disease-modifying drug for PD and highlights that astrocytic 5-HT1A receptors may be a novel target for the treatment of PD.

    DOI: 10.1038/s41598-020-77652-4

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    Other Link: https://www.nature.com/articles/s41598-020-77652-4

  • Development of an appropriate simple suspension method for valganciclovir medication

    Yasuyuki Masaoka, Yoichi Kawasaki, Ryo Kikuoka, Atsushi Ogawa, Satoru Esumi, Yudai Wada, Soichiro Ushio, Yoshihisa Kitamura, Toshiaki Sendo

    Journal of Pharmaceutical Health Care and Sciences   6 ( 1 )   2020.7

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

    DOI: 10.1186/s40780-020-00172-w

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    Other Link: http://link.springer.com/article/10.1186/s40780-020-00172-w/fulltext.html

  • Chronic Systemic Exposure to Low-Dose Rotenone Induced Central and Peripheral Neuropathology and Motor Deficits in Mice: Reproducible Animal Model of Parkinson’s Disease

    Ikuko Miyazaki, Nami Isooka, Fuminori Imafuku, Jin Sun, Ryo Kikuoka, Chieko Furukawa, Masato Asanuma

    International Journal of Molecular Sciences   21 ( 9 )   3254 - 3254   2020.5

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

    Epidemiological studies demonstrated that pesticide exposure, such as rotenone and paraquat, increases the risk of Parkinson’s disease (PD). Chronic systemic exposure to rotenone, a mitochondrial complex I inhibitor, could reproduce many features of PD. However, the adoption of the models is limiting because of variability in animal sensitivity and the inability of other investigators to consistently reproduce the PD neuropathology. In addition, most of rotenone models were produced in rats. Here, we tried to establish a high-reproducible rotenone model using C57BL/6J mice. The rotenone mouse model was produced by chronic systemic exposure to a low dose of rotenone (2.5 mg/kg/day) for 4 weeks by subcutaneous implantation of rotenone-filled osmotic mini pump. The rotenone-treated mice exhibited motor deficits assessed by open field, rotarod and cylinder test and gastrointestinal dysfunction. Rotenone treatment decreased the number of dopaminergic neuronal cells in the substantia nigra pars compacta (SNpc) and lesioned nerve terminal in the striatum. In addition, we observed significant reduction of cholinergic neurons in the dorsal motor nucleus of the vagus (DMV) and the intestinal myenteric plexus. Moreover, α-synuclein was accumulated in neuronal soma in the SNpc, DMV and intestinal myenteric plexus in rotenone-treated mice. These data suggest that the low-dose rotenone mouse model could reproduce behavioral and central and peripheral neurodegenerative features of PD and be a useful model for investigation of PD pathogenesis.

    DOI: 10.3390/ijms21093254

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  • Effects of maternal bisphenol A diglycidyl ether exposure during gestation and lactation on behavior and brain development of the offspring

    Ikuko Miyazaki, Ryo Kikuoka, Nami Isooka, Mika Takeshima, Kanau Sonobe, Rei Arai, Hidemaru Funakoshi, Kyle E. Quin, Jonathan Smart, Kazumasa Zensho, Masato Asanuma

    Food and Chemical Toxicology   138   111235 - 111235   2020.4

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

    DOI: 10.1016/j.fct.2020.111235

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  • Dopaminergic neuroprotective effects of rotigotine via 5-HT1A receptors: Possibly involvement of metallothionein expression in astrocytes

    Nami Isooka, Ikuko Miyazaki, Ryo Kikuoka, Kouichi Wada, Erika Nakayama, Kotaro Shin, Daichi Yamamoto, Yoshihisa Kitamura, Masato Asanuma

    Neurochemistry International   132   104608 - 104608   2020.1

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

    DOI: 10.1016/j.neuint.2019.104608

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  • Effects of Enteric Environmental Modification by Coffee Components on Neurodegeneration in Rotenone-Treated Mice

    Ikuko Miyazaki, Nami Isooka, Kouichi Wada, Ryo Kikuoka, Yoshihisa Kitamura, Masato Asanuma

    Cells   8 ( 3 )   221 - 221   2019.3

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

    Epidemiological studies have shown that coffee consumption decreases the risk of Parkinson’s disease (PD). Caffeic acid (CA) and chlorogenic acid (CGA) are coffee components that have antioxidative properties. Rotenone, a mitochondrial complex I inhibitor, has been used to develop parkinsonian models, because the toxin induces PD-like pathology. Here, we examined the neuroprotective effects of CA and CGA against the rotenone-induced degeneration of central dopaminergic and peripheral enteric neurons. Male C57BL/6J mice were chronically administered rotenone (2.5 mg/kg/day), subcutaneously for four weeks. The animals were orally administered CA or CGA daily for 1 week before rotenone exposure and during the four weeks of rotenone treatment. Administrations of CA or CGA prevented rotenone-induced neurodegeneration of both nigral dopaminergic and intestinal enteric neurons. CA and CGA upregulated the antioxidative molecules, metallothionein (MT)-1,2, in striatal astrocytes of rotenone-injected mice. Primary cultured mesencephalic or enteric cells were pretreated with CA or CGA for 24 h, and then further co-treated with a low dose of rotenone (1–5 nM) for 48 h. The neuroprotective effects and MT upregulation induced by CA and CGA in vivo were reproduced in cultured cells. Our data indicated that intake of coffee components, CA and CGA, enhanced the antioxidative properties of glial cells and prevents rotenone-induced neurodegeneration in both the brain and myenteric plexus.

    DOI: 10.3390/cells8030221

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MISC

  • Drug interaction (63. Precautions for the use of antifungal agents from the perspective of drug-drug interactions)

    菊岡亮, 東恩納司, 濱野裕章, 座間味義人

    岡山医学会雑誌   137 ( 2 )   2025

  • 米国モデルを導入した臨床教育プログラムによる薬剤師のEBM実践向上

    菊岡亮, 濱野裕章, 星貴薫, 小崎彩, 座間味義人

    医療薬学フォーラム講演要旨集   33rd   2025

  • 免疫チェックポイント阻害薬誘発心筋炎の発症予測モデルの開発と評価

    濱野裕章, 濱野裕章, 道原あやな, 道原あやな, 井川祐輔, 岩田直大, 田中雄太, 菊岡亮, 三澤可奈, 座間味義人, 座間味義人

    医療薬学フォーラム講演要旨集   32nd   2024

  • WHO医薬品安全性監視データベースを用いた免疫チェックポイント阻害剤誘発性心筋炎のリスク因子探索

    菊岡亮, 金尾佳美, 木村郁哉, 岩田直大, 道原あやな, 濱野裕章, 座間味義人

    医療薬学フォーラム講演要旨集   32nd   2024

  • ロテノン誘発ドパミン神経障害におけるアストロサイト-ミクログリア連関

    宮崎 育子, 村上 真樹, 菊岡 亮, 磯岡 奈未, 十川 千春, 十川 紀夫, 北村 佳久, 浅沼 幹人

    パーキンソン病・運動障害疾患コングレスプログラム・抄録集   14回   110 - 110   2021.2

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    Language:Japanese   Publisher:Movement Disorder Society of Japan (MDSJ)  

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  • ロチゴチンによるアストロサイトのセロトニン1Aレセプターを標的としたドパミン神経保護

    宮崎 育子, 磯岡 奈未, 菊岡 亮, 和田 晃一, 中山 恵利香, 進 浩太郎, 山本 大地, 北村 佳久, 浅沼 幹人

    パーキンソン病・運動障害疾患コングレスプログラム・抄録集   12回   117 - 117   2018.7

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    Language:Japanese   Publisher:Movement Disorder Society of Japan (MDSJ)  

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  • 農薬ロテノン暴露によるドパミン神経障害におけるアストロサイトの関与

    宮崎育子, 村上真樹, 村上真樹, 菊岡亮, 磯岡奈未, 北村佳久, 浅沼幹人

    パーキンソン病・運動障害疾患コングレスプログラム・抄録集   10th   69 - 69   2016.10

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    Language:Japanese   Publisher:Movement Disorder Society of Japan (MDSJ)  

    J-GLOBAL

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  • 抗うつ薬ミルタザピンのアストロサイトを標的としたドパミン神経保護(Astrocyte-targeted neuroprotection of antidepressant mirtazapine)

    宮崎 育子, 菊岡 亮, 久保田 菜月, 前田 恵実, 香川 大樹, 守山 雅晃, 粂 明日香, 村上 真樹, 北村 佳久, 浅沼 幹人

    日本神経精神薬理学会年会プログラム・抄録集   46回   232 - 232   2016.7

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    Language:English   Publisher:(一社)日本神経精神薬理学会  

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  • 筋萎縮性側索硬化症モデルにおける運動障害および運動神経変性に対する8-OH-DPATの抑制効果(8-OH-DPAT ameliorates motor dysfunction and motor neuron degeneration in mouse model of amyotrophic lateral sclerosis)

    浅沼 幹人, 宮崎 育子, 村上 真樹, 鳥越 奈央, 中野 剛志, 菊岡 亮, 北村 佳久, 千堂 年昭

    日本神経精神薬理学会年会プログラム・抄録集   46回   232 - 232   2016.7

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    Language:English   Publisher:(一社)日本神経精神薬理学会  

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  • パーキンソン病モデルマウスにおけるアストロサイトの5‐HT1Aレセプターを標的とした神経保護

    宮崎育子, 宮崎育子, 菊岡亮, 久保田菜月, 前田恵実, 香川大樹, 村上真樹, 村上真樹, 北村佳久, 浅沼幹人, 浅沼幹人

    パーキンソン病・運動障害疾患コングレスプログラム・抄録集   9th   67 - 67   2015.10

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    Language:Japanese   Publisher:Movement Disorder Society of Japan (MDSJ)  

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  • ミルタザピンのアストロサイトを標的としたドパミン神経保護効果

    宮崎育子, 菊岡亮, 久保田菜月, 前田恵実, 香川大樹, 村上真樹, 村上真樹, 北村佳久, 浅沼幹人, 浅沼幹人

    日本神経精神薬理学会プログラム・抄録集   45th   185 - 185   2015.9

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    Language:Japanese   Publisher:日本生物学的精神医学会・日本神経精神薬理学会  

    J-GLOBAL

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