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RNAi in embryonic stem cells.

机译:胚胎干细胞中的RNAi。

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Embryonic stem (ES) cells are pluripotent cells that can be isolated and grown in vitro from the inner cell mass of blastocysts. Their potential to differentiate into any cell of the body makes them a promising starting material for cell therapy. Much progress has been made in recent years to develop ES cell differentiation protocols employing cocktails of certain growth factors or by using cell-type-restricted promoters driving the expression of selection markers or fluorescent proteins. However, little is known about the molecular details underlying the earliest processes of mammalian development. Genetic tools that provide novel insight into these processes would be very helpful to gain a better molecular understanding and to design better differentiation protocols. Recently, RNAi has emerged as a powerful technology to perform loss-of-function studies in mammalian cells. This technology should be ideal to identify and study genes required for ES cell self-renewal and differentiation. Here, we review the recent advances and challenges of RNAi research in ES cells and we provide a perspective on possible applications to enhance our understanding of ES cell self-renewal and early differentiation.
机译:胚胎干(ES)细胞是多能细胞,可以从胚泡的内部细胞团中分离并体外生长。它们分化为人体任何细胞的潜力使其成为细胞疗法的有希望的起始材料。近年来,在开发使用某些生长因子混合物或通过使用细胞类型限制性启动子驱动选择标记或荧光蛋白表达的ES细胞分化方案方面已取得了很大进展。但是,关于哺乳动物发育最早过程的分子细节知之甚少。提供对这些过程的新颖见解的遗传工具将非常有助于获得更好的分子理解并设计更好的分化方案。最近,RNAi已经成为一种强大的技术,可以在哺乳动物细胞中进行功能丧失研究。该技术应该是鉴定和研究ES细胞自我更新和分化所需基因的理想选择。在这里,我们回顾了ES细胞中RNAi研究的最新进展和挑战,并为可能的应用提供了前景,以增强我们对ES细胞自我更新和早期分化的理解。

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