首页> 美国卫生研究院文献>The Journal of Biophysical and Biochemical Cytology >Preferential outgrowth of central nervous system neurites on astrocytes and Schwann cells as compared with nonglial cells in vitro
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Preferential outgrowth of central nervous system neurites on astrocytes and Schwann cells as compared with nonglial cells in vitro

机译:与非胶质细胞相比星形胶质细胞和雪旺氏细胞上中枢神经系统神经突的优先生长

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摘要

I have compared central nervous system (CNS) neurite outgrowth on glial and nonglial cells. Monolayers of glial cells (astrocytes and Schwann cells) or nonglial cells (e.g., fibroblasts) were prepared and were shown to be greater than 95% pure as judged by cell type-specific markers. These monolayers were then tested for their ability to support neurite outgrowth from various CNS explants. While CNS neurites grew vigorously on the glial cells, most showed little growth on nonglial cell monolayers. Neurites grew singly or in fine fascicles on the glial cells at rates greater than 0.5 mm/d. The neurite outgrowth on astrocytes was investigated in detail. Scanning and transmission electron microscopy showed that the neurites were closely apposed to the astrocyte surface and that the growth cones were well spread with long filopodia. There was no evidence of significant numbers of explant- derived cells migrating onto the monolayers. Two types of experiments indicated that factors associated with the astrocyte surface were primarily responsible for the vigorous neurite outgrowth seen on these cells: (a) Conditioned media from either astrocytes or fibroblasts had no effect on the pattern of outgrowth on fibroblasts and astrocytes, and conditioned media factors from either cell type did not promote neurite outgrowth when bound to polylysine-coated dishes. (b) When growing CNS neurites encountered a boundary between astrocytes and fibroblasts, they stayed on the astrocytes and did not encroach onto the fibroblasts. These experiments strongly suggest that molecules specific to the surfaces of astrocytes make these cells particularly attractive substrates for CNS neurite outgrowth, and they raise the possibility that similar molecules on embryonic glial cells may play a role in guiding axonal growth during normal CNS development.
机译:我已经比较了神经胶质细胞和非神经胶质细胞的中枢神经系统(CNS)神经突增生。制备了神经胶质细胞(星形胶质细胞和雪旺氏细胞)或非神经胶质细胞(例如成纤维细胞)的单层,并且通过细胞类型特异性标志物判断其纯度大于95%。然后测试这些单分子层支持各种中枢神经外植体神经突生长的能力。尽管中枢神经系统神经突在神经胶质细胞上旺盛生长,但大多数在非神经胶质细胞单层上几乎没有生长。神经突以大于0.5mm / d的速率单个或在细小胶质细胞上生长。详细研究了星形胶质细胞上的神经突生长。扫描和透射电子显微镜显示,神经突紧贴星形胶质细胞表面,并且生长锥充分扩散,长丝状伪足。没有证据表明大量外植体来源的细胞迁移到单层细胞上。两种类型的实验表明,与星形胶质细胞表面有关的因素是导致这些细胞上强烈的神经突向外生长的主要原因:(a)来自星形胶质细胞或成纤维细胞的条件培养基对成纤维细胞和星形胶质细胞的生长模式没有影响,并且条件当结合到聚赖氨酸涂层的培养皿上时,来自任何一种细胞类型的培养基因子都不会促进神经突向外生长。 (b)当正在生长的中枢神经系统神经突遇到星形胶质细胞和成纤维细胞之间的边界时,它们停留在星形胶质细胞上,而没有侵袭成纤维细胞。这些实验强烈表明,星形胶质细胞表面特异的分子使这些细胞成为中枢神经系统神经突向外生长的特别有吸引力的底物,并且它们增加了在神经胶质细胞正常发育过程中,胚胎胶质细胞上类似分子可能在指导轴突生长中发挥作用的可能性。

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