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成年鱼类视投射中再生轴突的生长与寻路

Growth and pathfinding of regenerating axons in the optic projection of adult fish.

作者信息

Becker Catherina G, Becker Thomas

机构信息

Centre for Neuroscience Research, University of Edinburgh, Summerhall, Edinburgh, United Kingdom.

出版信息

J Neurosci Res. 2007 Sep;85(12):2793-9. doi: 10.1002/jnr.21121.

Abstract

In contrast to mammals, teleost fish are able to regrow severed long-range projection axons in the central nervous system (CNS), leading to recovery of function. The optic projection in teleost fish is used to study neuron-intrinsic and environmental molecular factors that determine successful axon regrowth and navigation through a complex CNS pathway back to original targets. Here we review evidence for regeneration-specific regulation and robust expression of growth- and pathfinding-associated genes in regenerating retinal ganglion cell (RGC) axons of adult fish. The environment of the CNS in fish appears to contain few inhibitory molecules and at the same time a number of promoting molecules for axon regrowth. Finally, some environmental cues that are used as guidance cues for developing RGC axons are also present in continuously growing adult animals. These molecules may serve as guidance cues for the precise navigation of axons from newly generated RGCs in adult animals as well as of regenerating RGC axons after a lesion. The application of new molecular techniques especially to adult zebrafish, is likely to produce new insights into successful axonal regeneration in the CNS of fish and the absence thereof in mammals.

摘要

与哺乳动物不同,硬骨鱼能够在中枢神经系统(CNS)中再生被切断的长距离投射轴突,从而实现功能恢复。硬骨鱼的视觉投射被用于研究决定轴突能否成功再生并通过复杂的中枢神经系统通路导航回到原始靶点的神经元内在分子因素和环境分子因素。在此,我们综述了成年鱼类再生视网膜神经节细胞(RGC)轴突中生长和路径寻找相关基因的再生特异性调控及强表达的证据。鱼类中枢神经系统的环境似乎几乎不包含抑制性分子,同时含有许多促进轴突再生的分子。最后,一些在发育中的RGC轴突用作引导线索的环境线索在持续生长的成年动物中也存在。这些分子可能作为引导线索,用于成年动物新生成的RGC轴突以及损伤后再生的RGC轴突的精确导航。尤其是将新的分子技术应用于成年斑马鱼,可能会对鱼类中枢神经系统中成功的轴突再生以及哺乳动物中轴突再生失败的情况产生新的见解。

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