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首页> 外文期刊>Frontiers in Cellular Neuroscience >Modulation of Oligodendrocyte Differentiation by Mechanotransduction
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Modulation of Oligodendrocyte Differentiation by Mechanotransduction

机译:机械转导调节少突胶质细胞分化

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摘要

Oligodendrocytes (OLs) are responsible for the myelination of axons in the central nervous system (CNS). The differentiation of OLs encompasses several stages, through which cells undergo dramatic biochemical and morphological changes. OL differentiation is modulated by soluble factors (SFs)—such as growth factors and hormones—, known to be essential for each maturation stage. Besides SFs, insoluble factors such as extracellular matrix (ECM) proteins and other microenvironmental elements also play a pivotal role during OL differentiation. Recently, a growing number of studies were published concerning the effect of biophysical properties of the extracellular milieu on OL differentiation and myelination, showing the importance of ECM stiffness and topography, strain forces and spatial constraints. For instance, it was shown in vitro that OL differentiation and maturation is enhanced by substrates within the reported range of stiffness of the brain and that this effect is potentiated by the presence of merosin, whereas the myelination process is influenced by the diameter of axonal-like fibers. In this mini review article, we will discuss the effect of mechanical cues during OL differentiation and the possible molecular mechanisms involved in such regulation.
机译:少突胶质细胞(OL)负责中枢神经系统(CNS)中轴突的髓鞘形成。 OLs的分化包括几个阶段,在这些阶段中细胞会经历剧烈的生化和形态变化。 OL分化受可溶性因子(SFs)调节,例如生长因子和激素,这对于每个成熟阶段都是必不可少的。除SF以外,诸如细胞外基质(ECM)蛋白和其他微环境元素等不可溶因子在OL分化过程中也起着关键作用。最近,关于细胞外环境的生物物理特性对OL分化和髓鞘形成的影响的越来越多的研究发表,表明了ECM硬度和形貌,应变力和空间约束的重要性。例如,在体外研究表明,在报道的大脑僵硬范围内,底物可促进OL的分化和成熟,而铁蛋白的存在则可增强这种作用,而髓鞘形成过程则受轴突直径的影响。像纤维。在这篇小型综述文章中,我们将讨论OL分化过程中机械提示的作用以及这种调控可能涉及的分子机制。

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