Direct cardiac reprogramming: Toward the era of multi-omics analysis

Mengxin Liu , Jie Liu , Tong Zhang , Li Wang
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引用次数: 0

Abstract

Limited regenerative capacity of adult cardiomyocytes precludes heart repair and regeneration after cardiac injury. Direct cardiac reprograming that converts scar-forming cardiac fibroblasts (CFs) into functional induced-cardiomyocytes (iCMs) offers promising potential to restore heart structure and heart function. Significant advances have been achieved in iCM reprogramming using genetic and epigenetic regulators, small molecules, and delivery strategies. Recent researches on the heterogeneity and reprogramming trajectories elucidated novel mechanisms of iCM reprogramming at single cell level. Here, we review recent progress in iCM reprogramming with a focus on multi-omics (transcriptomic, epigenomic and proteomic) researches to investigate the cellular and molecular machinery governing cell fate conversion. We also highlight the future potential using multi-omics approaches to dissect iCMs conversion for clinal applications.

Abstract Image

Abstract Image

直接心脏重编程:迈向多组学分析时代
成人心肌细胞有限的再生能力阻碍了心脏损伤后的修复和再生。将瘢痕形成的心脏成纤维细胞(CFs)转化为功能诱导心肌细胞(iCMs)的直接心脏重编程为恢复心脏结构和心脏功能提供了有希望的潜力。利用遗传和表观遗传调控因子、小分子和递送策略,在iCM重编程方面取得了重大进展。近年来对异质性和重编程轨迹的研究揭示了单细胞水平上iCM重编程的新机制。在这里,我们回顾了iCM重编程的最新进展,重点是多组学(转录组学、表观基因组学和蛋白质组学)研究,以研究控制细胞命运转化的细胞和分子机制。我们还强调了未来使用多组学方法来解剖临床应用的iCMs转换的潜力。
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来源期刊
Cell insight
Cell insight Neuroscience (General), Biochemistry, Genetics and Molecular Biology (General), Cancer Research, Cell Biology
CiteScore
2.70
自引率
0.00%
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0
审稿时长
35 days
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