Neuronal maturation and axon regeneration: unfixing circuitry to enable repair

IF 34.7 1区 医学 Q1 Neuroscience Nature Reviews Neuroscience Pub Date : 2024-08-20 DOI:10.1038/s41583-024-00849-3
Brett J. Hilton, Jarred M. Griffin, James W. Fawcett, Frank Bradke
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Abstract

Mammalian neurons lose the ability to regenerate their central nervous system axons as they mature during embryonic or early postnatal development. Neuronal maturation requires a transformation from a situation in which neuronal components grow and assemble to one in which these components are fixed and involved in the machinery for effective information transmission and computation. To regenerate after injury, neurons need to overcome this fixed state to reactivate their growth programme. A variety of intracellular processes involved in initiating or sustaining neuronal maturation, including the regulation of gene expression, cytoskeletal restructuring and shifts in intracellular trafficking, have been shown to prevent axon regeneration. Understanding these processes will contribute to the identification of targets to promote repair after injury or disease.

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神经元成熟与轴突再生:解除电路固定以实现修复
哺乳动物的神经元在胚胎或出生后早期发育成熟时,会失去再生中枢神经系统轴突的能力。神经元的成熟需要从神经元成分生长和组装的状态转变为这些成分固定并参与有效信息传输和计算机制的状态。为了在受伤后再生,神经元需要克服这种固定状态,重新激活其生长程序。事实证明,涉及启动或维持神经元成熟的各种细胞内过程,包括基因表达调控、细胞骨架重组和细胞内贩运转移,都会阻碍轴突再生。了解这些过程将有助于确定促进损伤或疾病后修复的目标。
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来源期刊
Nature Reviews Neuroscience
Nature Reviews Neuroscience 医学-神经科学
CiteScore
35.00
自引率
0.60%
发文量
104
审稿时长
6-12 weeks
期刊介绍: Nature Reviews Neuroscience is a journal that is part of the Nature Reviews portfolio. It focuses on the multidisciplinary science of neuroscience, which aims to provide a complete understanding of the structure and function of the central nervous system. Advances in molecular, developmental, and cognitive neuroscience have made it possible to tackle longstanding neurobiological questions. However, the wealth of knowledge generated by these advancements has created a need for new tools to organize and communicate this information efficiently. Nature Reviews Neuroscience aims to fulfill this need by offering an authoritative, accessible, topical, and engaging resource for scientists interested in all aspects of neuroscience. The journal covers subjects such as cellular and molecular neuroscience, development of the nervous system, sensory and motor systems, behavior, regulatory systems, higher cognition and language, computational neuroscience, and disorders of the brain. Editorial decisions for the journal are made by a team of full-time professional editors who are PhD-level scientists.
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