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微細加工技術を用いた分化心筋細胞からの未分化ヒト多能性幹細胞除去システムの開発

Research Project

Project/Area Number 14F04046
Research Category

Grant-in-Aid for JSPS Fellows

Allocation TypeSingle-year Grants
Section外国
Research Field Nano/Microsystems
Research InstitutionKyoto University

Principal Investigator

陳 勇 (2015)  京都大学, 物質-細胞統合システム拠点, 教授 (70512458)

中辻 憲夫 (2014)  京都大学, 物質-細胞統合システム拠点, 教授 (80237312)

Co-Investigator(Kenkyū-buntansha) LI JUNJUN  京都大学, 物質-細胞統合システム拠点, 外国人特別研究員
LI Junjun  京都大学, 物質-細胞統合システム拠点, 外国人特別研究員
Project Period (FY) 2014-04-25 – 2016-03-31
Project Status Completed (Fiscal Year 2015)
Budget Amount *help
¥2,300,000 (Direct Cost: ¥2,300,000)
Fiscal Year 2015: ¥1,100,000 (Direct Cost: ¥1,100,000)
Fiscal Year 2014: ¥1,200,000 (Direct Cost: ¥1,200,000)
Keywordsマイクロ流体デバイス / 多能性幹細胞 / 心筋細胞 / ヒト多能性幹細胞 / Cardiomyocyte / Microfluidic / Capture
Outline of Annual Research Achievements

Human pluripotent stem cells (hPSCs) hold high potential for regenerative therapies due to their unique properties of indefinite self-renewal and differentiation to almost any type of cells. Specifically, cardiomyocytes (CMs) can now be derived from hiPSCs at high efficiency under xeno-free condition toward heart repairing. However, the presence of even small numbers of non-cardiac cells, particularly the undifferentiated cells, in the resulted cell population, is problematic as they may grow and differentiate in an uncontrollable manner in the patient, giving rise to high risk of teratoma formation. Previously, magnetic-activated cell sorting (MACS) and Fluorescence-activated cell sorting (FACS) have been used to separate undifferentiated hPSCs from target cells. However those methods are expensive and complicated. In this study, we are challenging to remove undifferentiated hPSCs for derived cardiomyocytes using micro-engineered platform. Herein we report a microfluidic device with integrated and surface functionalised fishnet-like structures for specific cell capture. With the help of a flow derivation surface pattern, cells in solution are forced to cross the fishnet-like structure, resulting in high efficiency and selective retention of a chosen cell population. A suspension of hiPSCs spiked in culture medium or hiPSC derived CMs containing medium was used for devices function validation. We found a hiPSC capture rate as high as 80% and a remarkable increase of the CM population rate in the recovered suspension without affecting the cell viability.

Research Progress Status

27年度が最終年度であるため、記入しない。

Strategy for Future Research Activity

27年度が最終年度であるため、記入しない。

Report

(2 results)
  • 2015 Annual Research Report
  • 2014 Annual Research Report
  • Research Products

    (5 results)

All 2016 2015 Other

All Int'l Joint Research (1 results) Journal Article (2 results) (of which Int'l Joint Research: 2 results,  Peer Reviewed: 2 results,  Acknowledgement Compliant: 1 results) Presentation (2 results) (of which Int'l Joint Research: 2 results)

  • [Int'l Joint Research] Ecole Normale Superieure, Paris(France)

    • Related Report
      2015 Annual Research Report
  • [Journal Article] Effective motor neuron differentiation of hiPSCs on a patch made of crosslinked monolayer gelatin nanofibers2016

    • Author(s)
      Yadong Tang, Li Liu, Junjun Li, Leqian Yu, Francesco Paolo Ullo Severino, Li Wang, Jian Shi, Xiaolong Tu, Vincent Torre, Yong Chen
    • Journal Title

      Journal of Materials Chemistry B

      Volume: - Issue: 19 Pages: 3305-3312

    • DOI

      10.1039/c6tb00351f

    • Related Report
      2015 Annual Research Report
    • Peer Reviewed / Int'l Joint Research / Acknowledgement Compliant
  • [Journal Article] 3D printing of soft lithography mold for rapid production of polydimethylsiloxane-based microfluidic devices for cell stimulation with concentration gradients2015

    • Author(s)
      Ken-ichiro Kamei, Yasumasa Mashimo, Yoshie Koyama, Christopher Fockenberg, Miyuki Nakashima, Minako Nakajima, Junjun Li, Yong Chen
    • Journal Title

      Biomed Microdevices

      Volume: 17 Issue: 2

    • DOI

      10.1007/s10544-015-9928-y

    • Related Report
      2015 Annual Research Report 2014 Annual Research Report
    • Peer Reviewed / Int'l Joint Research
  • [Presentation] Creating functional anisotropic and 3D tissue-like construct using induced pluripotent stem cell-derived cardiomyocytes2016

    • Author(s)
      Junjun Li
    • Organizer
      International Society for Stem Cell Research (ISSCR) CiRA conference
    • Place of Presentation
      Kyoto, Japan
    • Year and Date
      2016-03-22
    • Related Report
      2015 Annual Research Report
    • Int'l Joint Research
  • [Presentation] Creation of cardiac tissue-like constructs from human induced pluripotent stem cells2015

    • Author(s)
      Junjun Li
    • Organizer
      International Society for Stem Cell Research (ISSCR) 2015
    • Place of Presentation
      Stockholm, Sweden
    • Year and Date
      2015-06-24
    • Related Report
      2015 Annual Research Report
    • Int'l Joint Research

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Published: 2015-01-22   Modified: 2024-03-26  

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