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使用 hiPSC 衍生的心肌细胞研究遗传性心律失常。

Investigating inherited arrhythmias using hiPSC-derived cardiomyocytes.

机构信息

Molecular Cardiac Physiology Group, Department of Biomedical Physiology and Kinesiology, Simon Fraser, University, Burnaby, BC V5A 1S6, Canada; hiPSC-CM Research Team, British Columbia Children's Hospital Research Institute, Vancouver, BC V5Z4H4, Canada.

Molecular Cardiac Physiology Group, Department of Biomedical Physiology and Kinesiology, Simon Fraser, University, Burnaby, BC V5A 1S6, Canada.

出版信息

Methods. 2022 Jul;203:542-557. doi: 10.1016/j.ymeth.2021.06.015. Epub 2021 Jun 28.

Abstract

Fundamental to the functional behavior of cardiac muscle is that the cardiomyocytes are integrated as a functional syncytium. Disrupted electrical activity in the cardiac tissue can lead to serious complications including cardiac arrhythmias. Therefore, it is important to study electrophysiological properties of the cardiac tissue. With advancements in stem cell research, protocols for the production of human induced pluripotent stem cell-derived cardiomyocytes (hiPSC-CMs) have been established, providing great potential in modelling cardiac arrhythmias and drug testing. The hiPSC-CM model can be used in conjunction with electrophysiology-based platforms to examine the electrical activity of the cardiac tissue. Techniques for determining the myocardial electrical activity include multielectrode arrays (MEAs), optical mapping (OM), and patch clamping. These techniques provide critical approaches to investigate cardiac electrical abnormalities that underlie arrhythmias.

摘要

心肌的功能行为的基础是心肌细胞整合为一个功能合胞体。心脏组织中电活动的中断可导致严重的并发症,包括心律失常。因此,研究心脏组织的电生理特性非常重要。随着干细胞研究的进展,已经建立了人类诱导多能干细胞衍生的心肌细胞(hiPSC-CMs)的生产方案,为心律失常建模和药物测试提供了巨大的潜力。hiPSC-CM 模型可与基于电生理学的平台结合使用,以检查心脏组织的电活动。确定心肌电活动的技术包括多电极阵列(MEA)、光学映射(OM)和膜片钳。这些技术为研究心律失常基础的心脏电异常提供了关键方法。

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