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激活素/ nodal 信号与多能性。

Activin/nodal signaling and pluripotency.

机构信息

Institute of Medical Biology, Singapore, Singapore.

出版信息

Vitam Horm. 2011;85:39-58. doi: 10.1016/B978-0-12-385961-7.00003-2.

Abstract

Maintenance of a pluripotent cell population during mammalian embryogenesis is crucial for the proper generation of extraembryonic and embryonic tissues to ensure intrauterine survival and fetal development. Pluripotent stem cells derived from early stage mammalian embryos are known as "embryonic stem cells." Such embryo-derived stem cells can proliferate indefinitely in vitro and give rise to derivatives of all three primary germ layers. Their potential for clinical and commercial applications has sparked great excitement within scientific and lay communities. Identification of the signaling pathways controlling stem cell pluripotency and differentiation provides knowledge-based approaches to manipulate stem cells for regenerative medicine. One of the signaling cascades that has been identified in the control of stem cell pluripotency and differentiation is the Activin/Nodal pathway. Here, we describe the differences among pluripotent cell types and discuss the latest findings on the molecular mechanisms involving Activin/Nodal signaling in controlling their pluripotency and differentiation.

摘要

在哺乳动物胚胎发生过程中维持多能细胞群体对于适当产生胚外和胚胎组织至关重要,以确保宫内生存和胎儿发育。从早期哺乳动物胚胎中获得的多能干细胞被称为“胚胎干细胞”。这种胚胎衍生的干细胞可以在体外无限增殖,并产生所有三个胚层的衍生物。它们在临床和商业应用方面的潜力在科学界和非科学界都引起了极大的兴奋。鉴定控制干细胞多能性和分化的信号通路为操纵干细胞进行再生医学提供了基于知识的方法。在控制干细胞多能性和分化的信号级联中已鉴定出的一种信号级联是激活素/诺达途径。在这里,我们描述了多能细胞类型之间的差异,并讨论了涉及激活素/诺达信号在控制其多能性和分化的分子机制的最新发现。

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