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首页> 外文期刊>Journal of neurotrauma >Chemorepellent axon guidance molecules in spinal cord injury.
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Chemorepellent axon guidance molecules in spinal cord injury.

机译:化学驱性轴突指导分子在脊髓损伤中的作用。

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Regenerating axons stop growing when they reach the border of the glial-fibrotic scar, presumably because they encounter a potent molecular barrier inhibiting growth cone advance. Chemorepulsive axon guidance molecules provide a non-permissive environment restricting and channeling axon growth in the developing nervous system. These molecules could also act as growth-inhibitory molecules in the regenerating nervous system. The receptors for repulsive guidance cues are expressed in the mature nervous system, suggesting that adult neurons are sensitive to the activity of developmentally active repulsive proteins. In this review, we summarize recent observations on semaphorins, ephrins, and slits in the injured brain and spinal cord, providing evidence that these proteins are major players in inhibiting axonal regeneration and establishing the glial-fibrotic scar.
机译:当再生轴突到达神经胶质纤维化疤痕的边界时,其停止生长,可能是因为它们遇到了抑制生长锥前进的有效分子屏障。化学脉冲轴突引导分子提供了一个非许可的环境,该环境限制和引导发育中的神经系统中轴突的生长。这些分子还可以在再生神经系统中充当生长抑制分子。排斥指导信号的受体在成熟的神经系统中表达,表明成年神经元对发育活跃的排斥蛋白的活性敏感。在这篇综述中,我们总结了最近对受损的大脑和脊髓中的信号量,ephrins和缝隙的观察结果,提供了这些蛋白质在抑制轴突再生和建立神经胶质纤维化瘢痕中的主要作用的证据。

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