Rchr
J-GLOBAL ID:201201006494178348   Update date: Apr. 14, 2024

Inoue Koichi

Inoue Koichi
Affiliation and department:
Research field  (3): Neuroscience - general ,  Psychiatry ,  Anesthesiology
Research keywords  (30): 発達 ,  cell sorting ,  脳 ,  マイクロアレイ ,  移動 ,  神経 ,  GABA ,  細胞移動 ,  クロライドトランスポーター ,  カハールレチウス細胞 ,  国際情報交換 ,  ドイツ ,  タウリン ,  皮質板細胞 ,  グリシン ,  てんかん ,  イメージング ,  皮質形成異常 ,  クロライドイオン ,  大脳皮質 ,  Cl^-ホメオスタシス ,  Chrolide ,  プリン受容体 ,  小脳 ,  肝細胞癌 ,  生物進化 ,  電気穿孔法 ,  言語 ,  クロラドトランスポーター ,  化学発癌
Research theme for competitive and other funds  (25):
  • 2021 - 2024 Novel tumor suppression system targeting microglia, considering glioma/microglia correlation
  • 2018 - 2021 Molecular biological approaches in the treatment of ASIC1a locomotive syndrome.
  • 2016 - 2021 Creation and Promotion of Willdynamics
  • 2016 - 2021 The neuroendocrine system, as seen from gut peptides: The expression of emotional and social behaviors, and fluctuations and changes in mood
  • 2016 - 2019 Optogenetical regulation of eNOS activity and vascular function
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Papers (56):
  • Noriko Horii-Hayashi, Kazuya Masuda, Taika Kato, Kenta Kobayashi, Ayumu Inutsuka, Miyu F. Nambu, Kazumasa Z. Tanaka, Koichi Inoue, Mayumi Nishi. Entrance-sealing behavior in the home cage: a defensive response to potential threats linked to the serotonergic system and manifestation of repetitive/stereotypic behavior in mice. Frontiers in Behavioral Neuroscience. 2024. 17
  • Shinnosuke Koketsu, Kohki Matsubara, Yoshino Ueki, Yoshiaki Shinohara, Koichi Inoue, Satona Murakami, Takatoshi Ueki. The defects of the hippocampal ripples and theta rhythm in depression, and the effects of physical exercise on their amelioration. Heliyon. 2024. 10. 1. e23738-e23738
  • Tomoyasu Yamanaka, Takatoshi Ueki, Mitsuhito Mase, Koichi Inoue. Arbitrary Ca2+ regulation for endothelial nitric oxide, NFAT and NF-κB activities by an optogenetic approach. Frontiers in Pharmacology. 2023. 13
  • Atsuhiko Okura, Koichi Inoue, Eisuke Sakuma, Hiroshi Takase, Takatoshi Ueki, Mitsuhito Mase. SGK1 in Schwann cells is a potential molecular switch involved in axonal and glial regeneration during peripheral nerve injury. Biochemical and Biophysical Research Communications. 2022. 607. 158-165
  • Koichi Inoue. Potential significance of CX3CR1 dynamics in stress resilience against neuronal disorders. Neural Regeneration Research. 2022. 17. 10. 2153-2153
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MISC (16):
  • 若林 健二郎, 佐久間 英輔, 植木 孝俊, 大塚 隆信, 和田 郁雄, 水谷 潤, 植木 美乃, 村上 里奈, 青山 公紀, 井上 浩一, et al. ASIC1aノックアウトマウスの育児障害. 日本整形外科学会雑誌. 2016. 90. 8. S1589-S1589
  • Mingli Liu, Koichi Inoue, Zhi-gang Xiong. ASIC1 regulates neuronal differentiation of neuroblastoma through Notch signaling pathway. CANCER RESEARCH. 2016. 76
  • Mingli Liu, Koichi Inoue, An Zhou, Zhigang Xiong. ASIC1 impacts Notch signaling pathway in the neuronal differentiation of neuroblatoma. CANCER EPIDEMIOLOGY BIOMARKERS & PREVENTION. 2016. 25. 3
  • Mingli Liu, Koichi Inoue, Tiandong Leng, Shanchun Guo, Zhigang Xiong. TRPM7 channels regulate glioma stem cell through STAT3 and Notch signaling pathways. CANCER RESEARCH. 2014. 74. 19
  • Koichi Inoue, Tomonori Furukawa, Junko Yamada, Tatsuro Kumada, Tianying Wang, Rieko Inoue, Atsuo Fukuda. Developmental regulation of KCC2 activity by taurine in a phosphorylation-dependent manner. NEUROSCIENCE RESEARCH. 2011. 71. E130-E130
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Education (2):
  • - 2002 東京医科歯科大学大学院医学系研究科
  • - 1996 名古屋市立大学医学部医学科
Work history (8):
  • 2023 - 現在 Nara Medical University
  • 2017 - 名古屋市立大学医学研究科 准教授
  • 2015 - 名古屋市立大学医学研究科 助教/講師
  • 2012 - Morehouse School of Medicine
  • 2010 - Hamamatsu University School of Medicine Faculty of Medicine
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