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J-GLOBAL ID:200901011465106484   Update date: Mar. 23, 2026

Agata Kiyokazu

アガタ キヨカズ | Agata Kiyokazu
Affiliation and department:
Job title: Former Director/ Professor Emeritus
Other affiliations (1):
  • Kyoto University  Professor Emeritus
Research field  (1): Developmental biology
Research keywords  (5): stem cell ,  brain regeneration ,  newt ,  planarian ,  regeneration
Research theme for competitive and other funds  (46):
  • 2022 - 2028 生命科学連携推進協議会
  • 2016 - 2021 Evoking regenerative ability based on the priciple of regeneration
  • 2016 - 2021 Committee on Promoting Collaboration in Life Sciences
  • 2010 - 2016 Regeneration Biology guides real Regenerative Medicine
  • 2010 - 2016 Genetic Bases for the Evolution of Complex Adaptive Traits
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Papers (255):
  • Kazuto Bou, Kiyokazu Agata. Introns as Protective Buffers Against Transposable Elements Invasion During Genome Gigantism in a Newt. Genes to Cells. 2026
  • Yuki Kimura, Miyuki Suzuki, Akinori Okumura, Masatoshi Matsunami, Hiroyo Nishide, Rima Mizuno, Kazuto Bou, Yoshinobu Uno, Tomoaki Nakada, Itaru Hasunuma, et al. The inbred newt genome unveils molecular mechanisms of behavior, development, and regeneration in urodele amphibians. iScience. 2025. 28. 10. 113535-113535
  • Haruka Matsubara, Takeshi Inoue, Kiyokazu Agata. Reintegration of blastema and stump by reciprocal interaction for functional joint regeneration in frogs. Developmental Biology. 2025
  • Takashi Hayakawa, Takushi Kishida, Yasuhiro Go, Eiji Inoue, Eri Kawaguchi, Tomoyuki Aizu, Hinako Ishizaki, Atsushi Toyoda, Asao Fujiyama, Tetsuro Matsuzawa, et al. Genome-scale evolution in local populations of wild chimpanzees. Scientific Reports. 2025. 15. 1
  • Nao Sugiura, Kiyokazu Agata. FGF-stimulated tendon cells embrace a chondrogenic fate with BMP7 in newt tissue culture. Development, Growth & Differentiation. 2024
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MISC (412):
  • 菅裕, 菅裕, 傳保聖太郎, 日野礼仁, 黒木義人, 阿形清和. Unicellular Holozoa and the origin of multicellularity. 月刊細胞. 2024. 56. 5
  • 真野昌二, 丸山めぐみ, 阿形清和, 鍋倉淳一. Promoting Life Science in Japan through Advanced Bioimaging Support (ABiS). 顕微鏡. 2024. 59. 1
  • 北村佳久, 肱岡雅宣, 文小鵬, 井上武, 阿形清和. MEK/ERKシグナリング:プラナリア脳ドパミン神経ネットワーク再構築の促進経路(パーキンソン病の根治を目指して). 生体機能と創薬シンポジウム要旨集. 2024. 2024
  • 阿形清和. 多能性幹細胞から癌を作らない戦略をプラナリアに学ぶ. 日本癌治療学会学術集会(Web). 2024. 62nd
  • 林夏希, 楢橋真理環, 阿形清和, 松尾聡, 井上武. プラナリアにおけるウルトラディアンリズムの制御機構に関する研究. 日本分子生物学会年会プログラム・要旨集(Web). 2024. 47th
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Books (12):
  • スクエア最新図説生物 : neo
    第一学習社 2017 ISBN:9784804046839
  • 三次元構造を再構築する再生原理の解明
    [阿形清和] 2016
  • 生き抜く力を身につける
    筑摩書房 2015 ISBN:9784480689351
  • ギルバート発生生物学
    メディカル・サイエンス・インターナショナル 2015 ISBN:9784895928052
  • 「特集」再生できる・できない生物 : その差から挑む三次元再生と再生医療
    羊土社 2014 ISBN:9784758101233
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Education (2):
  • 1979 - 1983 Kyoto University Graduate Course of Science Biophysics
  • 1975 - 1979 Kyoto University Faculty of Science
Professional career (1):
  • D. Sci (Kyoto University)
Work history (9):
  • 2025/04 - 現在 National Institute for Basic Biology (NIBB) Professor Emeritus
  • 2019/02 - 現在 Kyoto University Professor Emeritus
  • 2019/04 - 2025/03 National Institute for Basic Biology Director-General
  • 2016/04 - 2019/03 Gakushuin University Department of Life Science, Faculty of Science Professor
  • 2005/04 - 2016/03 Kyoto University Department of Biophysics Graduate School of Science Professor
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