Signal transduction of the physical environment in the neural differentiation of stem cells.

Ryan Thompson, C. Chan
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引用次数: 14

Abstract

Neural differentiation is largely dependent on extracellular signals within the cell microenvironment. These extracellular signals are mainly in the form of soluble factors that activate intracellular signaling cascades that drive changes in the cell nucleus. However, it is becoming increasingly apparent that the physical microenvironment provides signals that can also influence lineage commitment and very low modulus surfaces has been repeatedly demonstrated to promote neurogenesis. The molecular mechanisms governing mechano-induced neural differentiation are still largely uncharacterized; however, a growing body of evidence indicates that physical stimuli can regulate known signaling cascades and transcription factors involved in neural differentiation. Understanding how the physical environment affects neural differentiation at the molecular level will enable research and design of materials that will eventually enhance neural stem cell (NSC) differentiation, homogeneity and specificity.
物理环境在干细胞神经分化中的信号转导。
神经分化在很大程度上依赖于细胞微环境中的细胞外信号。这些细胞外信号主要以可溶性因子的形式激活细胞内信号级联反应,从而驱动细胞核的变化。然而,越来越明显的是,物理微环境提供的信号也可以影响谱系承诺,并且非常低模量的表面已被反复证明可以促进神经发生。控制机械诱导的神经分化的分子机制在很大程度上仍未确定;然而,越来越多的证据表明,物理刺激可以调节已知的信号级联反应和参与神经分化的转录因子。了解物理环境如何在分子水平上影响神经分化,将有助于研究和设计最终增强神经干细胞(NSC)分化、同质性和特异性的材料。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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