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Physical developmental cues for the maturation of human pluripotent stem cell-derived cardiomyocytes

机译:人类多能干细胞衍生的心肌细胞成熟的物理发展线索

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Human pluripotent stem cell-derived cardiomyocytes (hPSC-CMs) are the most promising source of cardiomyocytes (CMs) for experimental and clinical applications, but their use is largely limited by a structurally and functionally immature phenotype that most closely resembles embryonic or fetal heart cells. The application of physical stimuli to influence hPSC-CMs through mechanical and bioelectrical transduction offers a powerful strategy for promoting more developmentally mature CMs. Here we summarize the major events associated with in vivo heart maturation and structural development. We then review the developmental state of in vitro derived hPSC-CMs, while focusing on physical (electrical and mechanical) stimuli and contributory (metabolic and hypertrophic) factors that are actively involved in structural and functional adaptations of hPSC-CMs. Finally, we highlight areas for possible future investigation that should provide a better understanding of how physical stimuli may promote in vitro development and lead to mechanistic insights. Advances in the use of physical stimuli to promote developmental maturation will be required to overcome current limitations and significantly advance research of hPSC-CMs for cardiac disease modeling, in vitro drug screening, cardiotoxicity analysis and therapeutic applications.
机译:人多能干细胞衍生的心肌细胞(hPSC-CM)是用于实验和临床应用的最有希望的心肌细胞(CM)来源,但是它们的使用在很大程度上受到结构和功能上不成熟的表型的限制,该表型与胚胎或胎儿心脏细胞最相似。物理刺激通过机械和生物电转导影响hPSC-CMs的应用为促进发育更成熟的CMs提供了强有力的策略。在这里,我们总结了与体内心脏成熟和结构发育有关的主要事件。然后,我们回顾了体外衍生的hPSC-CMs的发展状态,同时侧重于积极参与hPSC-CMs的结构和功能适应的物理(电气和机械)刺激和贡献性(代谢和肥大)因子。最后,我们重点介绍了未来可能进行研究的领域,这些领域应能更好地理解物理刺激如何促进体外发育并产生机械学见解。为了克服当前的局限性,将需要使用物理刺激来促进发育成熟,并大大促进hPSC-CM在心脏疾病建模,体外药物筛选,心脏毒性分析和治疗应用中的研究。

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