Roles of Macrophages and Their Interactions with Schwann Cells After Peripheral Nerve Injury.

IF 3.6 4区 医学 Q3 CELL BIOLOGY
Guanggeng Wu, Xiaoyue Wen, Rui Kuang, KoonHei Winson Lui, Bo He, Ge Li, Zhaowei Zhu
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Abstract

The adult peripheral nervous system has a significant ability for regeneration compared to the central nervous system. This is related to the unique neuroimmunomodulation after peripheral nerve injury (PNI). Unlike the repair of other tissues after injury, Schwann cells (SCs) respond immediately to the trauma and send out signals to precisely recruit macrophages to the injured site. Then, macrophages promote the degradation of the damaged myelin sheath by phagocytosis of local debris. At the same time, macrophages and SCs jointly secrete various cytokines to reconstruct a microenvironment suitable for nerve regeneration. This unique pathophysiological process associated with macrophages provides important targets for the repair and treatment of PNI, as well as an important reference for guiding the repair of other nerve injuries. To understand these processes more systematically, this paper describes the characteristics of macrophage activation and metabolism in PNI, discusses the underlying molecular mechanism of interaction between macrophages and SCs, and reviews the latest research progress of crosstalk regulation between macrophages and SCs. These concepts and therapeutic strategies are summarized to provide a reference for the more effective use of macrophages in the repair of PNI.

Abstract Image

周围神经损伤后巨噬细胞的作用及其与许旺细胞的相互作用
与中枢神经系统相比,成人周围神经系统的再生能力很强。这与周围神经损伤(PNI)后独特的神经免疫调节有关。与其他组织损伤后的修复不同,许旺细胞(SCs)会立即对创伤做出反应,并发出信号将巨噬细胞精确地招募到损伤部位。然后,巨噬细胞通过吞噬局部碎片促进受损髓鞘的降解。与此同时,巨噬细胞和自细胞共同分泌各种细胞因子,重建适合神经再生的微环境。这种与巨噬细胞相关的独特病理生理过程为 PNI 的修复和治疗提供了重要靶点,也为指导其他神经损伤的修复提供了重要参考。为了更系统地了解这些过程,本文阐述了 PNI 中巨噬细胞活化和新陈代谢的特点,讨论了巨噬细胞与 SCs 相互作用的潜在分子机制,并回顾了巨噬细胞与 SCs 之间串联调控的最新研究进展。本文总结了这些概念和治疗策略,为更有效地利用巨噬细胞修复 PNI 提供参考。
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来源期刊
CiteScore
7.70
自引率
0.00%
发文量
137
审稿时长
4-8 weeks
期刊介绍: Cellular and Molecular Neurobiology publishes original research concerned with the analysis of neuronal and brain function at the cellular and subcellular levels. The journal offers timely, peer-reviewed articles that describe anatomic, genetic, physiologic, pharmacologic, and biochemical approaches to the study of neuronal function and the analysis of elementary mechanisms. Studies are presented on isolated mammalian tissues and intact animals, with investigations aimed at the molecular mechanisms or neuronal responses at the level of single cells. Cellular and Molecular Neurobiology also presents studies of the effects of neurons on other organ systems, such as analysis of the electrical or biochemical response to neurotransmitters or neurohormones on smooth muscle or gland cells.
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