周围神经系统损伤中的免疫细胞生物学。

Yiming Xia, Min Cai, Yiyue Zhou, Yi Yao, Maorong Jiang, Dandan Gu, Dengbing Yao
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引用次数: 0

摘要

背景:周围神经系统(PNS)在损伤后表现出显著的再生能力。PNS再生依赖于神经元本身以及各种其他细胞类型,包括雪旺细胞、免疫细胞和非神经元细胞。目的:综述免疫细胞(SCs)在PNS损伤和修复过程中的重要作用。结果:周围神经损伤过程中,巨噬细胞在各种细胞因子的诱导下向损伤部位浸润,主要聚集在损伤部位远端神经和背根神经节(DRG),损伤部位近端神经少量聚集。巨噬细胞在损伤期间的表型仍然存在争议,但最近的单细胞测序分析可能提供新的见解。在周围神经系统损伤中,巨噬细胞参与了沃勒氏变性,以及轴突再生过程中神经桥的重建和血管生成。中性粒细胞在损伤过程中早期出现,主要存在于损伤部位和远端节段。外周神经系统损伤后,来自外周血的未成熟中性粒细胞起主要作用。周围神经系统损伤后,淋巴细胞虽然只占巨噬细胞和中性粒细胞的一小部分,但仍发挥着重要作用,包括Treg细胞、B细胞和NK细胞。大量免疫细胞在损伤部位聚集,不仅导致沃勒氏变性,而且导致轴突再生。结论:综上所述,本文总结了目前对PNS损伤后免疫细胞浸润机制的认识,为今后研究免疫细胞在周围神经损伤中的作用提供了新的思路。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Immune Cell Biology in Peripheral Nervous System Injury.

Background: The peripheral nervous system (PNS) exhibits remarkable regenerative capability after injury. PNS regeneration relies on neurons themselves as well as a variety of other cell types, including Schwann cells, immune cells, and non-neuronal cells.

Objectives: This paper focuses on summarizing the critical roles of immune cells (SCs) in the injury and repair processes of the PNS.

Results: During peripheral nerve injury, macrophages infiltrate the site under the induction of various cytokines, primarily accumulating at the dorsal root ganglia (DRG) and the nerve distal to the injury site, with only a small number detected at the nerve proximal to the injury site. The phenotype of macrophages during injury remains controversial, but recent single-cell sequencing analyses may provide new insights. In peripheral nervous system injury, macrophages participate in Wallerian degeneration as well as in the reconstruction of nerve bridges and angiogenesis during axonal regeneration. Neutrophils appear early in the injury process and are primarily present at the injury site and the distal segment. After peripheral nervous system injury, immature neutrophils from the peripheral blood play a major role. Although lymphocytes constitute only a small fraction compared to macrophages and neutrophils after peripheral nervous system injury, they still play important roles, including Treg cells, B cells, and NK cells. A large number of immune cells accumulate at the injury site, contributing not only to Wallerian degeneration but also to axonal regeneration.

Conclusion: In conclusion, this paper summarizes current knowledge regarding the mechanisms of immune cell infiltration after PNS injury, providing new insights for future research on the role of immune cells in peripheral nerve injury.

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