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放射状胶质细胞表型:起源、调控与转分化。

Radial glia phenotype: origin, regulation, and transdifferentiation.

作者信息

Chanas-Sacre G, Rogister B, Moonen G, Leprince P

机构信息

Center for Cellular and Molecular Neurobiology, University of Liège, Liège, Belgium.

出版信息

J Neurosci Res. 2000 Aug 15;61(4):357-63. doi: 10.1002/1097-4547(20000815)61:4<357::AID-JNR1>3.0.CO;2-7.

Abstract

Radial glial cells play a major guidance role for migrating neurons during central nervous system (CNS) histogenesis but also play many other crucial roles in early brain development. Being among the earliest cells to differentiate in the early CNS, they provide support for neuronal migration during embryonic brain development; provide instructive and neurotrophic signals required for the survival, proliferation, and differentiation of neurons; and may be multipotential progenitor cells that give rise to various cell types, including neurons. Radial glial cells constitute a major cell type of the developing brain in numerous nonmammalian and mammalian vertebrates, increasing in complexity in parallel with the organization of the nervous tissue they help to build. In mammalian species, these cells transdifferentiate into astrocytes when neuronal migration is completed, whereas, in nonmammalian species, they persist into adulthood as a radial component of astroglia. Thus, our perception of radial glia may have to change from that of path-defining cells to that of specialized precursor cells transiently fulfilling a guidance role during brain histogenesis. In that respect, their apparent change of phenotype from radial fiber to astrocyte probably constitutes one of the most common transdifferentiation events in mammalian development.

摘要

放射状胶质细胞在中枢神经系统(CNS)组织发生过程中对迁移的神经元起着主要的引导作用,同时在早期脑发育中还发挥许多其他关键作用。作为中枢神经系统早期最早分化的细胞之一,它们在胚胎脑发育过程中为神经元迁移提供支持;为神经元的存活、增殖和分化提供指导性和神经营养信号;并且可能是产生包括神经元在内的各种细胞类型的多能祖细胞。在许多非哺乳类和哺乳类脊椎动物中,放射状胶质细胞是发育中脑的主要细胞类型,其复杂性随着它们所帮助构建的神经组织的组织化而增加。在哺乳类物种中,当神经元迁移完成时,这些细胞转分化为星形胶质细胞,而在非哺乳类物种中,它们作为星形胶质细胞的放射状成分持续到成年期。因此,我们对放射状胶质细胞的认识可能不得不从定义路径的细胞转变为在脑组织发生过程中短暂发挥引导作用的特殊前体细胞。在这方面,它们从放射状纤维到星形胶质细胞的明显表型变化可能构成了哺乳类发育中最常见的转分化事件之一。

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