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Epigenetic Regulation of Axon Regeneration after Neural Injury

机译:神经损伤后轴突再生的表观遗传调控

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摘要

When peripheral axons are damaged, neuronal injury signaling pathways induce transcriptional changes that support axon regeneration and consequent functional recovery. The recent development of bioinformatics techniques has allowed for the identification of many of the regeneration-associated genes that are regulated by neural injury, yet it remains unclear how global changes in transcriptome are coordinated. In this article, we review recent studies on the epigenetic mechanisms orchestrating changes in gene expression in response to nerve injury. We highlight the importance of epigenetic mechanisms in discriminating efficient axon regeneration in the peripheral nervous system and very limited axon regrowth in the central nervous system and discuss the therapeutic potential of targeting epigenetic regulators to improve neural recovery.
机译:当周围轴突受损时,神经元损伤信号通路会诱导支持轴突再生和随后功能恢复的转录变化。生物信息学技术的最新发展已允许鉴定许多受神经损伤调节的再生相关基因,但仍不清楚转录组的整体变化如何协调。在本文中,我们回顾了有关表观遗传机制协调对神经损伤的反应基因表达变化的最新研究。我们强调表观遗传机制在区分周围神经系统中有效轴突再生和中枢神经系统中轴突再生非常有限的重要性,并讨论了靶向表观遗传调节物以改善神经恢复的治疗潜力。

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