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人多能干细胞来源的心肌细胞与成年哺乳动物心肌细胞的钙信号比较。

Ca signaling of human pluripotent stem cells-derived cardiomyocytes as compared to adult mammalian cardiomyocytes.

机构信息

Cardiac Signaling Center of University of South Carolina, Medical University of South Carolina, Clemson University, Charleston SC, United States.

Cardiac Signaling Center of University of South Carolina, Medical University of South Carolina, Clemson University, Charleston SC, United States.

出版信息

Cell Calcium. 2020 Sep;90:102244. doi: 10.1016/j.ceca.2020.102244. Epub 2020 Jun 13.

Abstract

Human induced pluripotent stem cells derived cardiomyocytes (hiPSC-CMs) have been extensively used for in vitro modeling of human cardiovascular disease, drug screening and pharmacotherapy, but little rigorous studies have been reported on their biophysical or Ca signaling properties. There is also considerable concern as to the level of their maturity and whether they can serve as reliable models for adult human cardiac myocytes. Ultrastructural difference such as lack of t-tubular network, their polygonal shapes, disorganized sarcomeric myofilament, and their rhythmic automaticity, among others, have been cited as evidence for immaturity of hiPSC-CMs. In this review, we will deal with Ca signaling, its regulation, and its stage of maturity as compared to the mammalian adult cardiomyocytes. We shall summarize the data on functional aspects of Casignaling and its parameters that include: L-type calcium channel (Cav1.2), I-induced Carelease, CICR, and its parameters, cardiac Na/Ca exchanger (NCX1), the ryanodine receptors (RyR2), sarco-reticular Capump, SERCA2a/PLB, and the contribution of mitochondrial Ca to hiPSC-CMs excitation-contraction (EC)-coupling as compared with adult mammalian cardiomyocytes. The comparative studies suggest that qualitatively hiPSC-CMs have similar Casignaling properties as those of adult cardiomyocytes, but quantitative differences do exist. This review, we hope, will allow the readers to judge for themselves to what extent Casignaling of hiPSC-CMs represents the adult form of this signaling pathway, and whether these cells can be used as good models of human cardiomyocytes.

摘要

人诱导多能干细胞衍生的心肌细胞 (hiPSC-CMs) 已被广泛用于人类心血管疾病的体外建模、药物筛选和药理学治疗,但关于其生物物理或钙信号转导特性的严格研究却很少。此外,人们还非常关注它们的成熟程度,以及它们是否可以作为成人人心肌细胞的可靠模型。hiPSC-CMs 的不成熟性,如缺乏 T 管网络、多边形形状、肌节肌丝排列紊乱和自发性节律等超微结构差异,已被认为是其不成熟的证据。在这篇综述中,我们将讨论钙信号转导及其调节,以及与哺乳动物成人心肌细胞相比的成熟阶段。我们将总结关于钙信号转导及其参数的功能方面的数据,包括:L 型钙通道 (Cav1.2)、I 型钙诱导的钙释放、钙释放诱导钙内流 (CICR) 及其参数、心脏钠/钙交换体 (NCX1)、兰尼碱受体 (RyR2)、肌质网钙泵、SERCA2a/PLB,以及线粒体钙对 hiPSC-CMs 兴奋-收缩 (EC) 偶联的贡献,与成人心肌细胞相比。比较研究表明,hiPSC-CMs 在钙信号转导方面具有与成人心肌细胞相似的性质,但存在定量差异。我们希望,这篇综述能让读者自己判断 hiPSC-CMs 的钙信号转导在多大程度上代表了这种信号通路的成人形式,以及这些细胞是否可以作为人心肌细胞的良好模型。

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