Rchr
J-GLOBAL ID:202001008411708540   Update date: Apr. 20, 2024

Seki Minoru

セキ ミノル | Seki Minoru
Affiliation and department:
Job title: Professor
Research theme for competitive and other funds  (31):
  • 2020 - 2023 Demonstration of an integrated cell processing device that revolutionizes minimally invasive prenatal diagnosis
  • 2020 - 2023 Precise reconstruction of complex biological tissue by flexible processing of "porous" matrix
  • 2019 - 2022 Demonstration of a multiscale fluid separator that revolutionizes next-generation liquid biopsy
  • 2017 - 2020 Demonstration of integrated microfluidic system that realizes selection / placement / 3-dimensional complex of cells
  • 2016 - 2019 Reproduction processes of three-dimensional tissues based on particulate matrices
Show all
Papers (281):
  • Yuken Hasebe, Masumi Yamada, Rie Utoh, Minoru Seki. Expansion of Chinese hamster ovary cells via a loose cluster-assisted suspension culture using cell-sized gelatin microcarriers. Journal of Bioscience and Bioengineering. 2023. 135. 5. 417-422
  • Mai Takagi, Masumi Yamada, Rie Utoh, Minoru Seki. A multiscale, vertical-flow perfusion system with integrated porous microchambers for upgrading multicellular spheroid culture. LAB ON A CHIP. 2023. 23. 9. 2257-2267
  • Akihiro Morita, Masumi Yamada, Rie Utoh, Kanta Momiyama, Hideki Iwadate, Minoru Seki. Formation of 3D tissues of primary hepatocytes using fibrillized collagen microparticles as intercellular binders. Journal of Bioscience and Bioengineering. 2022. 133. 3. 265-272
  • Natsumi Shimmyo, Makoto Furuhata, Masumi Yamada, Rie Utoh, Minoru Seki. Process simplification and structure design of parallelized microslit isolator for physical property-based capture of tumor cells. The Analyst. 2022. 147. 8. 1622-1630
  • Rie Utoh, Sakiko Enomoto, Masumi Yamada, Keigo Yamanaka, Yuya Yajima, Kazuya Furusawa, Minoru Seki. Polyanion-induced, microfluidic engineering of fragmented collagen microfibers for reconstituting extracellular environments of 3D hepatocyte culture. Materials Science and Engineering: C. 2021. 129. 112417-112417
more...
MISC (52):
  • Separation and sorting of cells using magnetophoresis and laminar flows in microchannels. 2017. 214. 7-11
  • Preparation of Functional Microparticles using Droplets in a Non-Equilibrium State. 2017. 81. 6. 294-297
  • 山田 真澄, 関 実. マイクロ流体デバイスによる微粒子の湿式分級 (特集 新素材開発と最新製造技術). 化学装置. 2017. 59. 3. 33-38
  • Three-dimensional tissue engineering using collagen microparticles. 2017. 75. 5. 424-426
  • 矢嶋祐也, 山田真澄, 堀綾香, 菅谷紗里, 鵜頭理恵, 関実. コラーゲン微粒子を導入した複合型3次元肝組織の作製と機能評価. 再生医療. 2016. 15
more...
Professional career (2):
  • 博士(工学) (東京大学)
  • 工学修士 (東京大学)
Work history (13):
  • 2023/04 - 現在 Chiba University
  • 2020/07 - 現在 New Energy and Industrial Technology Development Organization
  • 2007/01 - 2023/03 Chiba University Professor
  • 2017/04 - 2021/03 Chiba University
  • 2014/04 - 2021/03 Chiba University
Show all
Awards (6):
  • 2023/05 - 化学とマイクロナノシステム学会 学会賞
  • 2023/03 - 化学工学会 学会賞(池田亀三郎記念賞) バイオプロセス革新のための工学的研究
  • 2017/03 - 日本学術振興会 審査員 表彰
  • 2012/03 - 化学工学会 研究賞(内藤雅喜記念賞) マイクロ流体システムにおける微量操作と分離法に関する研究
  • 2011/10 - Asian Federation of Biotechnology YABEC Award
Show all
※ Researcher’s information displayed in J-GLOBAL is based on the information registered in researchmap. For details, see here.

Return to Previous Page