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The Art of Capturing Pluripotency: Creating the Right Culture

机译:捕获多才多艺的艺术:创造正确的文化

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摘要

Embryonic stem cells (ESCs) are a unique tool for genetic perturbation of mammalian cellular and organismal processes additionally in humans offer unprecedented opportunities for disease modeling and cell therapy. Furthermore, ESCs are a powerful system for exploring the fundamental biology of pluripotency. Indeed understanding the control of self-renewal and differentiation is key to realizing the potential of ESCs. Building on previous observations, we found that mouse ESCs can be derived and maintained with high efficiency through insulation from differentiation cues combined with consolidation of an innate cell proliferation program. This finding of a pluripotent ground state has led to conceptual and practical advances, including the establishment of germline-competent ESCs from recalcitrant mouse strains and for the first time from the rat. Here, we summarize historical and recent progress in defining the signaling environment that supports self-renewal. We compare the contrasting requirements of two types of pluripotent stem cell, naive ESCs and primed post-implantation epiblast stem cells (EpiSCs), and consider the outstanding challenge of generating naive pluripotent stem cells from different mammals.
机译:胚胎干细胞(ESC)是哺乳动物细胞和生物过程遗传扰动的独特工具,此外,人类还为疾病建模和细胞治疗提供了前所未有的机会。此外,ESC是探索多能性基本生物学的强大系统。确实,了解自我更新和分化的控制是实现ESC潜力的关键。在以前的观察的基础上,我们发现可以通过与分化线索的隔离以及先天细胞增殖程序的巩固相隔离来高效衍生和维持小鼠ESC。多能基态的发现导致了概念上和实践上的进步,包括从顽固性小鼠品系中建立了与种系相容的ESC,这是首次从大鼠中建立。在这里,我们总结了定义支持自我更新的信令环境的历史和最新进展。我们比较了两种类型的多能干细胞,幼稚的胚胎干细胞和致敏的植入后表皮干细胞(EpiSCs)的对比要求,并考虑了从不同哺乳动物中产生幼稚的多能干细胞的巨大挑战。

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