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Hydrogel-Sheathed hiPSC-Derived Heart Microtissue Enables Anchor-Free Contractile Force Measurement

  • Yuta Kurashina
  • , Keisuke Fukada
  • , Shun Itai
  • , Shuichi Akizuki
  • , Ryo Sato
  • , Akari Masuda
  • , Hidenori Tani
  • , Jun Fujita
  • , Keiichi Fukuda
  • , Shugo Tohyama
  • , Hiroaki Onoe

研究成果: ジャーナルへの寄稿学術論文査読

抄録

In vitro reconstruction of highly mature engineered heart tissues (EHTs) is attempted for the selection of cardiotoxic drugs suitable for individual patients before administration. Mechanical contractile force generated in the EHTs is known to be a critical indicator for evaluating the EHT response. However, measuring contractile force requires anchoring the EHT in a tailored force-sensing cell culture chamber, causing technical difficulties in the stable evaluation of contractile force in long-term culture. This paper proposes a hydrogel-sheathed human induced pluripotent stem cell (hiPSC)-derived heart microtissue (H3M) that can provide an anchor-free contractile force measurement platform in commonly used multi-well plates. The contractile force associated with tissue formation and drug response is calculated by motion tracking and finite element analysis on the bending angle of the hydrogel sheath. From the experiment of the drug response, H3M is an excellent drug screening platform with high sensitivity and early testing capability compared to conventionally anchored EHT. This unique platform would be useful and versatile for regenerative therapy and drug discovery research in EHT.

本文言語英語
論文番号2301831
ジャーナルAdvanced Science
10
35
DOI
出版ステータス出版済み - 15-12-2023
外部発表はい

All Science Journal Classification (ASJC) codes

  • 医学(その他)
  • 化学工学一般
  • 材料科学一般
  • 生化学、遺伝学、分子生物学(その他)
  • 工学一般
  • 物理学および天文学一般

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