Research theme for competitive and other funds (5):
2023 - 2026 Zinc ion regulation via mechanosensitive ion channels for the treatment of Parkinson's disease
2022 - 2025 Roles of mechanosensitive ion channels in muscle regeneration and functions
2021 - 2024 脂質分子動態に基づく骨格筋再生機構の全容解明
2020 - 2023 Involvement of hippocampal zinc ion in the enhancement of emotional memory
2022 - 2023 形質膜構造破綻に基づく筋疾患発症機構の解明
Papers (17):
Kotaro Hirano, Masaki Tsuchiya, Akifumi Shiomi, Seiji Takabayashi, Miki Suzuki, Yudai Ishikawa, Yuya Kawano, Yutaka Takabayashi, Kaori Nishikawa, Kohjiro Nagao, et al. The mechanosensitive ion channel PIEZO1 promotes satellite cell function in muscle regeneration. Life science alliance. 2023. 6. 2
Haruna Tamano, Haruna Tokoro, Daichi Murakami, Rin Tsujimoto, Yuka Nishijima, Erina Tsuda, Satoshi Watanabe, Miki Suzuki, Atsushi Takeda. Metallothionein synthesis increased by Ninjin-yoei-to, a Kampo medicine protects neuronal death and memory loss after exposure to amyloid β1-42. Journal of pharmaceutical health care and sciences. 2022. 8. 1. 26-26
Miki Suzuki, Haruna Tamano, Atsushi Takeda. Corticosteroid receptor-mediated synaptic Zn2+ dynamics in the hippocampus and its significance. Metallomics Research. 2021. 1. 1. 22-30
Haruna Tamano, Yuichi Sato, Mako Takiguchi, Taku Murakami, Toshiyuki Fukuda, Hirokazu Kawagishi, Miki Suzuki, Atsushi Takeda. CA1 LTP Attenuated by Corticosterone is Canceled by Effusol via Rescuing Intracellular Zn2+ Dysregulation. Cellular and molecular neurobiology. 2019. 39. 7. 975-983
Miki Suzuki, Yuichi Sato, Kotaro Tamura, Haruna Tamano, Atsushi Takeda. Rapid Intracellular Zn2+ Dysregulation via Membrane Corticosteroid Receptor Activation Affects In Vivo CA1 LTP. Molecular neurobiology. 2019. 56. 2. 1356-1365
Miki Suzuki, Haruna Tamano, Masaki Ando, Atsushi Takeda, Naoto Oku. Differential effects of zinc influx via AMPA/kainate receptor activation on subsequent induction of hippocampal CA1 LTP components. NEUROSCIENCE RESEARCH. 2010. 68. E338-E338
Lectures and oral presentations (1):
Extracellular Zn2+ is a cause of stress-induced cognitive decline
(Consortium of Biological Sciences 2017 2017)
Education (2):
2009 - 2011 University of Shizuoka Graduate School of Pharmaceutical Sciences
2005 - 2009 University of Shizuoka School of Pharmaceutical Sciences
Professional career (1):
博士(薬学) (静岡県立大学)
Work history (3):
2024/04 - 現在 Juntendo University Faculty of Pharmacy Lecturer
2014/05 - 2024/03 University of Shizuoka School of Pharmaceutical Sciences
2011/04 - 2014/03 持田製薬株式会社
Awards (3):
2018/07 - 日本毒性学会 優秀研究発表賞
2017/10 - メタルバイオサイエンス研究会 閔賞(若手優秀研究賞)
2014/11 - メタロミクス研究フォーラム(英国王立化学会) Young Scientist Award
Association Membership(s) (9):
日本脂質生化学会
, 日本薬理学会
, Japan Muscle Society
, 日本微量元素学会
, 日本生理学会
, Society for neuroscience
, THE JAPANESE SOCIETY OF TOXICOLOGY
, THE PHARMACEUTICAL SOCIETY OF JAPAN
, THE JAPAN NEUROSCIENCE SOCIETY