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Maximizing functional axon repair in the injured central nervous system: Lessons from neuronal development

机译:受伤中枢神经系统中的功能性Axon修复最大化:神经元发展的课程

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The failure of damaged axons to regrow underlies disability in central nervous system injury and disease. Therapies that stimulate axon repair will be critical to restore function. Extensive axon regeneration can be induced by manipulation of oncogenes and tumor suppressors; however, it has been difficult to translate this into functional recovery in models of spinal cord injury. The current challenge is to maximize the functional integration of regenerating axons to recover motor and sensory behaviors. Insights into axonal growth and wiring during nervous system development are helping guide new approaches to boost regeneration and functional connectivity after injury in the mature nervous system. Here we discuss our current understanding of axonal behavior after injury and prospects for the development of drugs to optimize axon regeneration and functional recovery after CNS injury. Developmental Dynamics 247:18–23, 2018 . ? 2017 Wiley Periodicals, Inc.
机译:损坏的轴突失败在中枢神经系统损伤和疾病中进行了残疾。 刺激轴突修复的疗法对于恢复功能至关重要。 可以通过操纵癌肠和肿瘤抑制剂来诱导广泛的轴突再生; 然而,难以将其转化为脊髓损伤模型中的功能恢复。 目前的挑战是最大化再生轴突的功能集成,以回收电动机和感官行为。 神经系统开发期间轴突生长和接线的见解是帮助引导新方法在成熟神经系统损伤后提高再生和功能性连接。 在这里,我们讨论了我们目前对伤害后轴突行为的理解,并在CNS损伤后优化轴突再生和功能恢复的前景。 发展动力学247:18-23,2018。 还 2017年Wiley期刊,Inc。

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