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Role of radial glia in cytogenesis patterning and boundary formation in the developing spinal cord

机译:radial神经胶质细胞在发育中的脊髓的细胞发生模式形成和边界形成中的作用

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摘要

Radial glial fibres provide a transient scaffold and impose constraints in the developing central nervous system (CNS) that facilitate cell migration and axon growth. Recent reports have raised doubts about the distinction between radial glia and precursor cells by demonstrating that radial glia are themselves neuronal progenitor cells in the developing cortex, indicating a dual role for radial glia in both neurogenesis and migration guidance. Radial glia shift toward exclusive generation of astrocytes after neurogenesis has ceased. Radial progenitor cell differentiation and lineage relationships in CNS development are complex processes depending on genetic programming, cell–cell interaction and microenvironmental factors. In the spinal cord, radial cells that arise directly from the neuroepithelium have been identified. At least in the spinal cord, these radial cells appear to be the precursors to radial glia. It remains unknown whether radial glial cells or their precursors, the radial cells, or both can give rise to neurons in the spinal cord. Radial glial cells are also important in regulating the axon out-growth and pathfinding processes that occur during white matter patterning of the developing spinal cord.
机译:ial神经胶质纤维提供了一个短暂的支架,并在发展中的中枢神经系统(CNS)中施加了限制,从而促进了细胞迁移和轴突生长。最近的报道通过证明radial神经胶质本身是发育中的皮层中的神经元祖细胞,对radial神经胶质细胞和前体细胞之间的区别提出了怀疑,表明radial神经胶质细胞在神经发生和迁移指导中均具有双重作用。神经发生停止后,放射状胶质细胞向星形胶质细胞的排他性转移。中枢神经系统发育中的放射祖细胞分化和谱系关系是复杂的过程,取决于基因编程,细胞间相互作用和微环境因素。在脊髓中,已经鉴定出直接源自神经上皮的放射状细胞。至少在脊髓中,这些放射状细胞似乎是放射状胶质细胞的前体。放射状神经胶质细胞或其前体,放射状细胞或两者能否在脊髓中产生神经元仍然未知。 regulating神经胶质细胞对于调节在发育中的脊髓白质形成过程中发生的轴突生长和寻路过程也很重要。

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