Department of Cell and Developmental Biology, Perelman School of Medicine, University of Pennsylvania, Philadelphia, Pennsylvania, United States of America.
Laboratory of Molecular and Developmental Biology, National Institute of Genetics, and Department of Genetics, The Graduate University for Advanced Studies (SOKENDAI), Mishima, Shizuoka, Japan.
PLoS Biol. 2023 Aug 17;21(8):e3002223. doi: 10.1371/journal.pbio.3002223. eCollection 2023 Aug.
A critical step for functional recovery from peripheral nerve injury is for regenerating axons to connect with their pre-injury targets. Reestablishing pre-injury target specificity is particularly challenging for limb-innervating axons as they encounter a plexus, a network where peripheral nerves converge, axons from different nerves intermingle, and then re-sort into target-specific bundles. Here, we examine this process at a plexus located at the base of the zebrafish pectoral fin, equivalent to tetrapod forelimbs. Using live cell imaging and sparse axon labeling, we find that regenerating motor axons from 3 nerves coalesce into the plexus. There, they intermingle and sort into distinct branches, and then navigate to their original muscle domains with high fidelity that restores functionality. We demonstrate that this regeneration process includes selective retraction of mistargeted axons, suggesting active correction mechanisms. Moreover, we find that Schwann cells are enriched and associate with axons at the plexus, and that Schwann cell ablation during regeneration causes profound axonal mistargeting. Our data provide the first real-time account of regenerating vertebrate motor axons navigating a nerve plexus and reveal a previously unappreciated role for Schwann cells to promote axon sorting at a plexus during regeneration.
外周神经损伤后功能恢复的关键步骤是使再生轴突与损伤前的靶标相连接。对于支配肢体的轴突来说,重新建立损伤前的靶标特异性尤其具有挑战性,因为它们会遇到神经丛,这是一个外周神经汇聚的网络,不同神经的轴突相互交织,然后再重新分类成特定靶标的束。在这里,我们在斑马鱼胸鳍基部的一个神经丛中研究了这个过程,这个神经丛相当于四足动物的前肢。通过活细胞成像和稀疏的轴突标记,我们发现来自 3 条神经的再生运动轴突汇聚到神经丛中。在那里,它们相互交织并分类成不同的分支,然后以很高的保真度导航到它们原来的肌肉区域,从而恢复功能。我们证明了这个再生过程包括对错误靶向轴突的选择性回缩,这表明存在主动的校正机制。此外,我们发现神经丛中雪旺细胞丰富,并与轴突相关联,而在再生过程中消融雪旺细胞会导致轴突严重错误靶向。我们的数据提供了第一个实时记录的再生脊椎动物运动轴突在神经丛中导航的实例,并揭示了雪旺细胞在再生过程中促进神经丛中轴突分类的以前未被认识到的作用。