Simultaneous electromechanical monitoring in engineered heart tissues using a mesoscale framework

  • Fullenkamp, Dominic E.
  • Maeng, Woo-Youl
  • Oh, Seyong
  • Luan, Haiwen
  • Kim, Kyung Su
  • 외 15명
Citations

WEB OF SCIENCE

30
Citations

SCOPUS

29

초록

Engineered heart tissues (EHTs) generated from human induced pluripotent stem cell-derived cardiomyocytes (hiPSC-CMs) represent powerful platforms for human cardiac research, especially in drug testing and disease modeling. Here, we report a flexible, three-dimensional electronic framework that enables real-time, spatiotemporal analysis of electrophysiologic and mechanical signals in EHTs under physiological loading conditions for dynamic, noninvasive, longer-term assessments. These electromechanically monitored EHTs support multisite measurements throughout the tissue under baseline conditions and in response to stimuli. Demonstrations include uses in tracking physiological responses to pharmacologically active agents and in capturing electrophysiological characteristics of reentrant arrhythmias. This platform facilitates precise analysis of signal location and conduction velocity in human cardiomyocyte tissues, as the basis for a broad range of advanced cardiovascular studies.

키워드

CELL-DERIVED CARDIOMYOCYTESGENE-EXPRESSIONPROLONGATIONACTIVATIONMATURATIONGENERATIONFAILURE
제목
Simultaneous electromechanical monitoring in engineered heart tissues using a mesoscale framework
저자
Fullenkamp, Dominic E.Maeng, Woo-YoulOh, SeyongLuan, HaiwenKim, Kyung SuChychula, Ivana A.Kim, Jin-TaeYoo, Jae-YoungHolgren, Cory W.Demonbreun, Alexis R.George, SharonLi, BinjieHsu, YachingChung, GooyoonYoo, JeongminKoo, JahyunPark, YoonseokEfimov, Igor R.McNally, Elizabeth M.Rogers, John A.
DOI
10.1126/sciadv.ado7089
발행일
2024-09
유형
Article
저널명
Science Advances
10
37
페이지
1 ~ 12