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施万细胞迁移指导周围神经桥内的轴突再生。

Migrating Schwann cells direct axon regeneration within the peripheral nerve bridge.

机构信息

School of Pharmacy, Hubei University of Science and Technology, Xianning, Hubei Province, People's Republic of China.

Peninsula Medical School, Faculty of Health, Plymouth University, Plymouth, Devon, UK.

出版信息

Glia. 2021 Feb;69(2):235-254. doi: 10.1002/glia.23892. Epub 2020 Jul 22.

Abstract

Schwann cells within the peripheral nervous system possess a remarkable regenerative potential. Current research shows that peripheral nerve-associated Schwann cells possess the capacity to promote repair of multiple tissues including peripheral nerve gap bridging, skin wound healing, digit tip repair as well as tooth regeneration. One of the key features of the specialized repair Schwann cells is that they become highly motile. They not only migrate into the area of damaged tissue and become a key component of regenerating tissue but also secrete signaling molecules to attract macrophages, support neuronal survival, promote axonal regrowth, activate local mesenchymal stem cells, and interact with other cell types. Currently, the importance of migratory Schwann cells in tissue regeneration is most evident in the case of a peripheral nerve transection injury. Following nerve transection, Schwann cells from both proximal and distal nerve stumps migrate into the nerve bridge and form Schwann cell cords to guide axon regeneration. The formation of Schwann cell cords in the nerve bridge is key to successful peripheral nerve repair following transection injury. In this review, we first examine nerve bridge formation and the behavior of Schwann cell migration in the nerve bridge, and then discuss how migrating Schwann cells direct regenerating axons into the distal nerve. We also review the current understanding of signals that could activate Schwann cell migration and signals that Schwann cells utilize to direct axon regeneration. Understanding the molecular mechanism of Schwann cell migration could potentially offer new therapeutic strategies for peripheral nerve repair.

摘要

周围神经系统中的雪旺细胞具有显著的再生潜力。目前的研究表明,周围神经相关的雪旺细胞具有促进多种组织修复的能力,包括周围神经间隙桥接、皮肤伤口愈合、指尖修复以及牙齿再生。特化修复雪旺细胞的一个关键特征是它们具有高度的迁移能力。它们不仅迁移到受损组织区域并成为再生组织的关键组成部分,还分泌信号分子吸引巨噬细胞,支持神经元存活,促进轴突再生,激活局部间充质干细胞,并与其他细胞类型相互作用。目前,迁移性雪旺细胞在组织再生中的重要性在周围神经横断损伤中最为明显。在神经横断后,来自近端和远端神经残端的雪旺细胞迁移到神经桥中,并形成雪旺细胞索,以引导轴突再生。神经桥中雪旺细胞索的形成是横断损伤后成功修复周围神经的关键。在这篇综述中,我们首先检查神经桥的形成和雪旺细胞在神经桥中的迁移行为,然后讨论迁移性雪旺细胞如何引导再生轴突进入远端神经。我们还回顾了目前对激活雪旺细胞迁移的信号以及雪旺细胞用于引导轴突再生的信号的理解。了解雪旺细胞迁移的分子机制可能为周围神经修复提供新的治疗策略。

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