Rchr
J-GLOBAL ID:201701002330390208   Update date: Nov. 05, 2024

Miyazaki Makito

ミヤザキ マキト | Miyazaki Makito
Affiliation and department:
Job title: Team Leader
Other affiliations (1):
  • Shinshu University  Graduate School of Medicine, Science and Technology   Specially Appointed Professor
Homepage URL  (1): https://sites.google.com/view/makitomiyazaki/top
Research field  (3): Biophysics ,  Cell biology ,  Bio-, chemical, and soft-matter physics
Research theme for competitive and other funds  (13):
  • 2022 - 2026 Development of force-measuring system for biological tissues
  • 2019 - 2025 1分子・超分子集合体・生細胞の3階層を貫くモデル実験系を用いた細胞分裂機構の解明
  • 2021 - 2023 アクチン細胞骨格を直接操作できるオプトジェネティクスツールの開発
  • 2021 - 2023 分子モーターの収縮力が細胞の並進運動に変換される仕組みの構成的理解
  • 2020 - 2023 Geometric universality of ordered vortices and turbulent states in chiral active matter
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Papers (20):
  • Masahiro Noji, Yukihiko Sugita, Yosuke Yamazaki, Makito Miyazaki, Yuta Suzuki. Protein design of two-component tubular assemblies like cytoskeletons. 2024
  • Yosuke Yamazaki, Yuuri Miyata, Kenichi Morigaki, Makito Miyazaki. Controlling physical and biochemical parameters of actin nucleation using a patterned model lipid membrane. Nano Letters. 2024. 24. 6. 1825-1834
  • Ryota Sakamoto, Makito Miyazaki, Yusuke T. Maeda. State transitions of a confined actomyosin system controlled through contractility and polymerization rate. Physical Review Research. 2023. 5. 013208
  • Makito Miyazaki, Takahiro Kosugi. Uncovering the design principles of supramolecular assemblies through manipulation of the structures, dynamics, and functions. Biophysics and Physicobiology. 2022. 19. n/a-n/a
  • Ryota Sakamoto, Ziane Izri, Yuta Shimamoto, Makito Miyazaki, Yusuke T. Maeda. Geometric trade-off between contractile force and viscous drag determines the actomyosin-based motility of a cell-sized droplet. PNAS. 2022. 119. 30
more...
Books (11):
  • 月刊科学雑誌『Newton』別冊「人体ではたらく細胞のすべて」
    ニュートンプレス 2024 ISBN:9784315528589
  • 実験医学 2024年6月号
    羊土社 2024
  • 実験医学 2023年8月号
    羊土社 2023
  • 生体の科学 Vol.73 No.4 特集 形態形成の統合的理解
    医学書院 2022
  • 月刊科学雑誌『Newton』別冊「ゼロからわかる細胞と人体」
    ニュートンプレス 2022 ISBN:9784315525304
more...
Lectures and oral presentations  (51):
  • 再構成で紐解く細胞骨格機能の自己組織化メカニズム
    (金沢大学ナノ精密医学・理工学卓越大学院プログラム Student-Selected Seminar 2024)
  • アクトミオシンが駆動する細胞運動の再構成
    (CBI学会 2024)
  • カエル卵抽出液で紐解くアクチン骨格機能の自己組織化メカニズム
    (日本動物学会 第95回長崎大会 2024 2024)
  • Reconstitution of actin cytoskeletal dynamics and functions
    (NCBS-RIKEN BDR Joint Meeting 2024)
  • Reconstitution of actin cytoskeletal dynamics and functions
    (IUPAB 2024 2024)
more...
Education (3):
  • 2008 - 2011 Kyoto University Graduate School of Science Division of Physics and Astronomy
  • 2006 - 2008 Waseda University Graduate School of Science and Engineering
  • 2002 - 2006 Waseda University School of Science and Engineering Department of Physics
Professional career (1):
  • 博士(理学) (京都大学)
Work history (12):
  • 2024/04 - 現在 Shinshu University Graduate School of Medicine, Science and Technology Specially Appointed Professor
  • 2023/04 - 現在 RIKEN Center for Biosystems Dynamics Research Team Leader
  • 2020/10 - 2024/03 JST PRESTO PRESTO Reseacher
  • 2022/10 - 2023/09 Kyoto University Graduate School of Science
  • 2017/10 - 2022/09 Kyoto University Graduate School of Science
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Committee career (4):
  • 2024/06 - 現在 日本細胞生物学会 代議員
  • 2023/01 - 2023/12 日本生物物理学会 分野別専門委員(分野:非平衡・自己組織化)
  • 2022/01 - 2022/12 日本生物物理学会 分野別専門委員(分野:生命現象の基本原理)
  • 2021/01 - 2022/12 日本生物物理学会 邦文誌「生物物理」編集委員
Awards (1):
  • 2022/04 - The Young Scientists’ Award (MEXT)
Association Membership(s) (4):
Japanese Society for Quantitative Biology ,  Japan Society for Cell Biology ,  The Physical Society of Japan ,  The Biophysical Society of Japan
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