Rchr
J-GLOBAL ID:201201090465528373   Update date: Feb. 29, 2024

Kamei Ken-ichiro

カメイ ケンイチロウ | Kamei Ken-ichiro
Affiliation and department:
Job title: Associate Professor
Other affiliations (1):
  • Kyoto University
Homepage URL  (1): https://ken1kameigroup.org
Research field  (6): Cell biology ,  Molecular biology ,  Applied biofunctional and bioprocess engineering ,  Nanobioscience ,  Nano/micro-systems ,  Nanomaterials
Research keywords  (3): nanofiber ,  microfluidics ,  stem cells
Research theme for competitive and other funds  (17):
  • 2023 - 2027 Construction of in vitro human liver disease model capable of real-time temperature mapping and its application to elucidation of disease mechanisms
  • 2023 - 2026 in vitro human implantation model with the use of human PSC-derived blastoids
  • 2021 - 2024 Bioactive gas pump-probe method elucidates the relationship of nitric oxide diffusion with vascular function
  • 2021 - 2024 Gut-Liver-on-a-Chip to investigate the progression mechanisms of non-alcoholic fatty liver diseases
  • 2021 - 2024 Raptor on a chip with stem cells for the evaluation of environmental pollutants
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Papers (97):
  • Rodi Kado Abdalkader, Romanas Chaleckis, Takuya Fujita, Ken-Ichiro Kamei. Modeling dry eye with an air-liquid interface in corneal epithelium-on-a-chip. Scientific reports. 2024. 14. 1. 4185-4185
  • Koki Yoshimoto, Koichiro Maki, Taiji Adachi, Ken-ichiro Kamei. Cyclic Stretching Enhances Angiocrine Signals at Liver Bud Stage from hPSCs in 2-Dimensional Culture. Tissue Engineering Part A. 2023
  • Shunzhe Zheng, Guanting Li, Jianbin Shi, Xinying Liu, Meng Li, Zhonggui He, Chutong Tian, Ken-Ichiro Kamei. Emerging platinum(IV) prodrug nanotherapeutics: A new epoch for platinum-based cancer therapy. Journal of controlled release : official journal of the Controlled Release Society. 2023. 361. 819-846
  • Seiichiro Takahashi, Yutaka Mune, Akihiko Yamamuro, Akira Aiba, Kenji Hatakeyama, Ken-ichiro Kamei. Evaluation of solvent releases from microfluidic devices made of cycloolefin polymer by temperature-desorption mass spectrometry. Journal of Micromechanics and Microengineering. 2023
  • Jiandong Yang, Yoshikazu Hirai, Kei Iida, Shinji Ito, Marika Trumm, Shiho Terada, Risako Sakai, Toshiyuki Tsuchiya, Osamu Tabata, Ken-Ichiro Kamei. Integrated-gut-liver-on-a-chip platform as an in vitro human model of non-alcoholic fatty liver disease. Communications biology. 2023. 6. 1. 310-310
more...
MISC (92):
  • 今村 聡, 文 小鵬, 寺田 志穂, 山本 暁久, 睦田 Zapater 香織, 澤田 杏子, 吉本 昂希, 田中 求, 亀井 謙一郎. 熱可逆性ハイドロゲルを用いた人工胚盤胞の創出 : 第46回研究会 優秀研究賞-Blastoid generation by using thermoreversible hydrogels. 化学とマイクロ・ナノシステム = Journal of the Society for Chemistry and Micro-Nano Systems : 化学とマイクロ・ナノシステム研究会誌. 2023. 22. 1. 30-33
  • 亀井 謙一郎. リバースバイオエンジニアリングによる生体再構成への挑戦. 日本生物工学会大会講演要旨集. 2022. 2022年. 137-137
  • 舌雅也, 渡辺嵩都, 四竈泰一, 亀井謙一郎, 土屋智由, 田畑修, 平井義和. Fluorescence spectrum measurement of NV center in a microfluidic device. 応用物理学会秋季学術講演会講演予稿集(CD-ROM). 2022. 83rd
  • 今村聡, 文小鵬, 寺田志穂, 吉本昂希, 亀井謙一郎. Blastoid derived from primed human pluripotent stem cells. 組織培養研究(Web). 2022. 40. 1
  • 亀井 謙一郎. 「まばたき」も再現する角膜・オン・チップ. バイオサイエンスとインダストリー. 2022. 80. 1. 50-52
more...
Patents (18):
Books (1):
  • Microfluidic Image Cytometry
    Methods Mol. Biol., Springer, 706, 191-206 (2011) 2011
Lectures and oral presentations  (1):
  • Artificial regulatory niche to control cell function
    (Seoul Nanohealth Symposium 2011 2011)
Professional career (1):
  • 博士(工学) (東京工業大学)
Work history (8):
  • 2023/02 - 現在 Kyoto University
  • 2023/02 - 現在 New York University Abu Dhabi Divisions of Science and Engineering Associate Professor
  • 2022/09 - 2023/01 New York University Abu Dhabi Divisions of Science and Engineering Visiting Associate Professor
  • 2018/03 - 2023/01 Kyoto University Institute for Integrated Cell-Material Sciences Associate Professor
  • 2017/04 - 2023/01 Kyoto University Institute for Integrated Cell-Material Sciences Principal investigator
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Awards (1):
  • 2015/05 - The Japanese Tissue Culture Association Young Investigator Award Creating the right microenvironments for controlling stem cell phenotypes
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