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首页> 外文期刊>Biochimica et biophysica acta. Molecular cell research >Cardiomyocytes from human pluripotent stem cells: From laboratory curiosity to industrial biomedical platform
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Cardiomyocytes from human pluripotent stem cells: From laboratory curiosity to industrial biomedical platform

机译:人类多能干细胞产生的心肌细胞:从实验室的好奇心到工业生物医学平台

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Cardiomyocytes from human pluripotent stem cells (hPSCs-CMs) could revolutionise biomedicine. Global burden of heart failure will soon reach USD $90bn, while unexpected cardiotoxicity underlies 28% of drug withdrawals. Advances in hPSC isolation, Cas9/CRISPR genome engineering and hPSC-CM differentiation have improved patient care, progressed drugs to clinic and opened a new era in safety pharmacology. Nevertheless, predictive cardiotoxicity using hPSC-CMs contrasts from failure to almost total success. Since this likely relates to cell immaturity, efforts are underway to use biochemical and biophysical cues to improve many of the similar to 30 structural and functional properties of hPSC-CMs towards those seen in adult CMs. Other developments needed for widespread hPSC-CM utility include subtype specification, cost reduction of large scale differentiation and elimination of the phenotyping bottleneck. This review will consider these factors in the evolution of hPSC-CM technologies, as well as their integration into high content industrial platforms that assess structure, mitochondrial function, electrophysiology, calcium transients and contractility. This article is part of a Special Issue entitled: Cardiomyocyte Biology: Integration of Developmental and Environmental Cues in the Heart edited by Marcus Schaub and Hughes Abriel. (c) 2015 The Authors. Published by Elsevier B.V. This is an open access article under the CC BY-NC-ND license
机译:人类多能干细胞(hPSCs-CMs)产生的心肌细胞可以彻底改变生物医学。全球心力衰竭的负担将很快达到900亿美元,而意料之外的心脏毒性则是戒断药物的28%。 hPSC分离,Cas9 / CRISPR基因组工程和hPSC-CM分化方面的进展改善了患者护理,将药物推向临床,并开辟了安全药理学的新纪元。然而,使用hPSC-CM进行的预测性心脏毒性从失败到几乎完全成功。由于这可能与细胞的不成熟有关,因此人们正在努力利用生化和生物物理线索来将hPSC-CM的许多类似于30的结构和功能特性提高到成年CM中所看到的那些。广泛的hPSC-CM实用程序需要的其他发展包括亚型规范,降低大规模分化的成本以及消除表型瓶颈。这篇综述将在hPSC-CM技术的发展过程中考虑这些因素,并将它们整合到评估结构,线粒体功能,电生理,钙瞬变和收缩性的高含量工业平台中。本文是由Marcus Schaub和Hughes Abriel编辑的《心肌细胞生物学:心脏发育和环境线索的整合》一期的特刊的一部分。 (c)2015作者。由Elsevier B.V.发布。这是CC BY-NC-ND许可下的开放获取文章

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