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细胞骨架组织在轴突延伸过程中的改变及其在生长过程调控中的作用。

Alteration of cytoskeletal organization during axonal elongation and its role in regulating the growth process.

机构信息

Department of Biological Science, Florida Slate University, Tallahassee, FL 32306-3050 (U.S.A.).

出版信息

Restor Neurol Neurosci. 1990 Jan 1;1(3):179-87. doi: 10.3233/RNN-1990-13402.

Abstract

The composition and organization of the axonal cytoskeleton vary from neuron to neuron and the ability of a nerve to regenerate may, at least in part, depend on the pre-existing nature of the cytoskeleton. In axons, where the cytoskeletal elements are loosely organized enough material may be mobilized after an injury to allow elongation to proceed. However, if microtubules and neurofilaments interact closely with each other, it may not be possible for enough material to be released from or to migrate through a complex network. As a consequence material is not provided to the growing tip and elongation cannot proceed beyond the initial sprouting.

摘要

轴突细胞骨架的组成和结构在不同神经元之间存在差异,神经的再生能力至少部分取决于细胞骨架的固有特性。在轴突中,细胞骨架元素的组织较为松散,因此在受伤后可能会有足够的物质被动员起来,从而使轴突延伸。然而,如果微管和神经丝之间相互紧密地作用,那么可能无法从复杂的网络中释放或迁移出足够的物质。因此,没有物质提供给生长的尖端,延伸也就无法在初始发芽后继续进行。

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