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心室样和房样人心诱导多能干细胞衍生心肌细胞的计算模型。

Computational models of ventricular- and atrial-like human induced pluripotent stem cell derived cardiomyocytes.

机构信息

Biomedical Engineering Laboratory-DEI, University of Bologna, Via Venezia 52, 47521, Cesena, FC, Italy.

出版信息

Ann Biomed Eng. 2013 Nov;41(11):2334-48. doi: 10.1007/s10439-013-0833-3. Epub 2013 May 31.

Abstract

The clear importance of human induced pluripotent stem cell derived cardiomyocytes (hiPSC-CMs) as an in-vitro model highlights the relevance of studying these cells and their function also in-silico. Moreover, the phenotypical differences between the hiPSC-CM and adult myocyte action potentials (APs) call for understanding of how hiPSC-CMs are maturing towards adult myocytes. Using recently published experimental data, we developed two computational models of the hiPSC-CM AP, distinguishing between the ventricular-like and atrial-like phenotypes, emerging during the differentiation process of hiPSC-CMs. Also, we used the computational approach to quantitatively assess the role of ionic mechanisms which are likely responsible for the not completely mature phenotype of hiPSC-CMs. Our models reproduce the typical hiPSC-CM ventricular-like and atrial-like spontaneous APs and the response to prototypical current blockers, namely tetrodotoxine, nifedipine, E4041 and 3R4S-Chromanol 293B. Moreover, simulations using our ventricular-like model suggest that the interplay of immature I Na, I f and I K1 currents has a fundamental role in the hiPSC-CM spontaneous beating whereas a negative shift in I CaL activation causes the observed long lasting AP. In conclusion, this work provides two novel tools useful in investigating the electrophysiological features of hiPSC-CMs, whose importance is growing fast as in-vitro models for pharmacological studies.

摘要

人诱导多能干细胞衍生心肌细胞(hiPSC-CMs)作为体外模型的明显重要性突出了研究这些细胞及其功能的相关性,也需要在计算机中进行研究。此外,hiPSC-CM 与成年心肌细胞动作电位(APs)之间的表型差异需要了解 hiPSC-CMs 如何向成年心肌细胞成熟。使用最近发表的实验数据,我们开发了两种 hiPSC-CM AP 的计算模型,区分了在 hiPSC-CM 分化过程中出现的心室样和心房样表型。此外,我们还使用计算方法定量评估了可能导致 hiPSC-CMs 不完全成熟表型的离子机制的作用。我们的模型再现了典型的 hiPSC-CM 心室样和心房样自发 APs 以及对原型电流阻断剂的反应,即河豚毒素、硝苯地平、E4041 和 3R4S-Chromanol 293B。此外,使用我们的心室样模型进行的模拟表明,不成熟的 I Na、I f 和 I K1 电流的相互作用在 hiPSC-CM 自发跳动中起着重要作用,而 I CaL 激活的负移导致观察到的长时间 AP。总之,这项工作提供了两种新的工具,可用于研究 hiPSC-CMs 的电生理特征,随着其作为药理学研究的体外模型的重要性迅速增长,这些工具变得越来越重要。

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