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The Impact of Epigenetic Signatures on Amniotic Fluid Stem Cell Fate

机译:表观遗传特征对羊水干细胞命运的影响

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Epigenetic modifications play a significant role in determining the fate of stem cells and in directing the differentiation into multiple lineages. Current evidence indicates that mechanisms involved in chromatin regulation are essential for maintaining stable cell identities. There is a tight correlation among DNA methylation, histone modifications, and small noncoding RNAs during the epigenetic control of stem cells’ differentiation; however, to date, the precise mechanism is still not clear. In this context, amniotic fluid stem cells (AFSCs) represent an interesting model due to their unique features and the possible advantages of their use in regenerative medicine. Recent studies have elucidated epigenetic profiles involved in AFSCs’ lineage commitment and differentiation. In order to use these cells effectively for therapeutic purposes, it is necessary to understand the basis of multiple-lineage potential and elaborate in detail how cell fate decisions are made and memorized. The present review summarizes the most recent findings on epigenetic mechanisms of AFSCs with a focus on DNA methylation, histone modifications, and microRNAs (miRNAs) and addresses how their unique signatures contribute to lineage-specific differentiation.
机译:表观遗传修饰在确定干细胞的命运和将分化引导到多个谱系中起着重要作用。目前的证据表明,染色蛋白调节所涉及的机制对于维持稳定的细胞标识是必不可少的。 DNA甲基化,组蛋白修饰和小型非编码RNA在干细胞分化的表观遗传控制期间存在紧张的相关性;但是,迄今为止,精确的机制仍然尚不清楚。在这种情况下,羊水干细胞(AFSCs)由于其独特的特征和它们在再生医学中使用的可能优势而代表有趣的模型。最近的研究阐明了AFSCS谱系承诺和分化的表观遗传谱。为了有效地使用这些细胞以获得治疗目的,有必要了解多谱系潜力的基础,并详细详细阐述Cell Fate决策如何和记忆。本综述总结了AFSCS对AFSCS的表观遗传机制的最新发现,其专注于DNA甲基化,组蛋白修饰和MicroRNA(MiRNA),并解决其独特的签名如何有助于谱系特异性分化。

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