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Differentiation of human embryonic stem cells and induced pluripotent stem cells to cardiomyocytes: A methods overview

机译:人类胚胎干细胞和诱导性多能干细胞向心肌细胞的分化:方法概述

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摘要

Since human embryonic stem cells were first differentiated to beating cardiomyocytes a decade ago, interest in their potential applications has increased exponentially. This has been further enhanced over recent years by the discovery of methods to induce pluripotency in somatic cells, including those derived from patients with hereditary cardiac diseases. Human pluripotent stem cells have been among the most challenging cell types to grow stably in culture, but advances in reagent development now mean that most laboratories can expand both embryonic and induced pluripotent stem cells robustly using commercially available products. However, differentiation protocols have lagged behind and in many cases only produce the cell types required with low efficiency. Cardiomyocyte differentiation techniques were also initially inefficient and not readily transferable across cell lines, but there are now a number of more robust protocols available. Here, we review the basic biology underlying the differentiation of pluripotent cells to cardiac lineages and describe current state-of-the-art protocols, as well as ongoing refinements. This should provide a useful entry for laboratories new to this area to start their research. Ultimately, efficient and reliable differentiation methodologies are essential to generate desired cardiac lineages to realize the full promise of human pluripotent stem cells for biomedical research, drug development, and clinical applications.
机译:自从十年前人类胚胎干细胞首次分化为跳动的心肌细胞以来,对其潜在应用的兴趣呈指数增长。近年来,通过发现在体细胞中诱导多能性的方法,包括从遗传性心脏病患者获得的多能性的方法,这一点得到了进一步的增强。人多能干细胞已经成为在培养中稳定生长的最具挑战性的细胞类型之一,但是试剂开发的进步现在意味着大多数实验室可以使用市售产品来稳定地扩增胚胎和诱导多能干细胞。然而,分化方案已经落后,并且在许多情况下仅以低效率产生所需的细胞类型。心肌细胞分化技术最初也效率低下,不易在细胞系间转移,但现在有许多更强大的方案可供使用。在这里,我们回顾了将多能细胞分化为心脏谱系的基础生物学,并描述了当前的最新技术方案以及正在进行的改进。这应该为该领域的新实验室提供一个有用的入口,以开始他们的研究。最终,有效和可靠的分化方法对于产生所需的心脏谱系以实现人类多能干细胞在生物医学研究,药物开发和临床应用中的全部前景至关重要。

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