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首页> 外文期刊>Philosophical Transactions of the Royal Society of London, Series B. Biological Sciences >The evolving biology of small molecules: controlling cell fate and identity
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The evolving biology of small molecules: controlling cell fate and identity

机译:小分子生物学的发展:控制细胞命运和身份

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摘要

Small molecules have been playing important roles in elucidating basic biology and treatment of a vast number of diseases for nearly a century, making their use in the field of stem cell biology a comparatively recent phenomenon. Nonetheless, the power of biology-oriented chemical design and synthesis, coupled with significant advances in screening technology, has enabled the discovery of a growing number of small molecules that have improved our understanding of stem cell biology and allowed us to manipulate stem cells in unprecedented ways. This review focuses on recent small molecule studies of (i) the key pathways governing stem cell homeostasis, (ii) the pluripotent stem cell niche, (iii) the directed differentiation of stem cells, (iv) the biology of adult stem cells, and (v) somatic cell reprogramming. In a very short period of time, small molecules have defined a perhaps universally attainable naive ground state of pluripotency, and are facilitating the precise, rapid and efficient differentiation of stem cells into somatic cell populations relevant to the clinic. Finally, following the publication of numerous groundbreaking studies at a pace and consistency unusual for a young field, we are closer than ever to completely eliminating the need for genetic modification in reprogramming.
机译:近一个世纪以来,小分子在阐明基础生物学和治疗多种疾病中一直发挥着重要作用,这使其在干细胞生物学领域的应用成为一种相对较新的现象。尽管如此,以生物学为导向的化学设计和合成的能力,再加上筛选技术的重大进步,使得发现越来越多的小分子成为可能,这些小分子增进了我们对干细胞生物学的理解,并使我们能够以前所未有的方式操纵干细胞。方法。这篇综述着重于最近的小分子研究,这些研究包括:(i)控制干细胞稳态的关键途径,(ii)多能干细胞生态位,(iii)干细胞的定向分化,(iv)成年干细胞的生物学,以及(v)体细胞重编程。在很短的时间内,小分子已经定义了一种可能普遍获得的幼稚多能性基态,并且正在促进干细胞精确,快速和有效地分化为与临床相关的体细胞群体。最后,在以年轻领域不寻常的速度和一致性发表了许多开创性研究之后,我们比以往任何时候都更加接近于完全消除重编程中对基因修饰的需求。

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