Rchr
J-GLOBAL ID:202201007662052081   Update date: Oct. 04, 2024

WU CHIA-HSIEN

ウー チャシェン | WU CHIA-HSIEN
Affiliation and department:
Job title: Assistant professor
Research theme for competitive and other funds  (2):
  • 2024 - 2026 動脈硬化好発領域における新規lncRNAの役割解明および機能解析
  • 2022 - 2024 Investigate the function of lncRNA in the development of atherosclerosis
Papers (24):
  • Murat Bazek, Motoya Sawa, Kazuhiro Horii, Naotoshi Nakamura, Shingo Iwami, Chia-Hsien Wu, Tsuyoshi Inoue, Fumiaki Nin, Chikara Abe. Gravitational change-induced alteration of the vestibular function and gene expression in the vestibular ganglion of mice. The Journal of Physiological Sciences. 2024. 74. 1
  • Aobing Yang, Chia-Hsien Wu, Sayumi Matsuo, Ryusuke Umene, Yasuna Nakamura, Tsuyoshi Inoue. Activation of the α7nAChR by GTS-21 mitigates septic tubular cell injury and modulates macrophage infiltration. International Immunopharmacology. 2024. 138. 112555-112555
  • 梅根 隆介, 呉 家賢, 中村 恭菜, 西野 友哉, 井上 剛. オプトジェネティクスを活用した腎交感神経制御による腎保護メカニズムの解明. 日本腎臓学会誌. 2024. 66. 4. 595-595
  • 鷲峯 紀人, Kasyoki Peter Joseph, 梅根 隆介, 呉 家賢, 中村 恭菜, 西野 友哉, 井上 剛. 神経-免疫系を介した血圧制御・腎線維化メカニズムの解明. 日本腎臓学会誌. 2024. 66. 4. 627-627
  • Joseph Kasyoki Peter, Ryusuke Umene, Chia-Hsien Wu, Yasuna Nakamura, Norito Washimine, Ryoko Yamamoto, Caroline Ngugi, Kavoo Linge, Joseph K. Kweri, Tsuyoshi Inoue. Renal macrophages induce hypertension and kidney fibrosis in Angiotensin II salt mice model. Biochemical and Biophysical Research Communications. 2024. 715. 149997-149997
more...
MISC (1):
  • Jia-Huang Chen, Chia-Hsien Wu, Chih-Kang Chiang. Therapeutic Approaches Targeting Proteostasis in Kidney Disease and Fibrosis. International Journal of Molecular Sciences. 2021. 22. 16. 8674-8674
Books (2):
  • 日本生理学雑誌 第85号4号
    一般社団法人 日本生理学会 2024
  • 腎臓論文ベストセレクション : ビジュアルアブストラクトで読みとく
    中外医学社 2022 ISBN:9784498148086
Lectures and oral presentations  (3):
  • Study of the mechanism of atherosclerosis progression inhibition by long non-coding RNA
    (2024)
  • Activation of cholinergic anti-inflammatory pathway attenuates monocyte-endothelial adhesion through FUT7 inhibition.
    (Graduate Seminar, Graduate School of Medicine, National Taiwan University. 2024)
  • Activation of cholinergic anti-inflammatory pathway attenuates monocyte-endothelial adhesion through FUT7 inhibition
    (2022)
Education (3):
  • 2017 - 2021 The University of Tokyo Graduate School of Medicine
  • 2014 - 2016 台湾大学 大学院医学系研究科 毒物学専攻
  • 2010 - 2014 台湾大学 農学部 植物病理と微生物学科
Work history (2):
  • 2022/06 - 現在 Nagasaki University Department of Physiology of Visceral Function and Body Fluid Assistant professor
  • 2021/04 - 2022/05 Nagasaki University Department of Physiology of Visceral Function and Body Fluid
Awards (1):
  • 2022/10 - 日本生理学会九州奨励賞 Activation of cholinergic anti-inflammatory pathway attenuates monocyte- endothelial adhesion through FUT7 inhibition.
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