Department of Biological Sciences, Faculty of Science, University of Manitoba, Winnipeg, R3T 2N2, Canada.
Department of Animal and Marine Bioresource Sciences, Graduate School of Agriculture, Kyushu University, Higashi-ku Fukuoka, 8128581, Japan.
Biol Rev Camb Philos Soc. 2017 Aug;92(3):1389-1405. doi: 10.1111/brv.12286. Epub 2016 Jun 13.
Current research on skeletal muscle injury and regeneration highlights the crucial role of nerve-muscle interaction in the restoration of innervation during that process. Activities of muscle satellite or stem cells, recognized as the 'currency' of myogenic repair, have a pivotal role in these events, as shown by ongoing research. More recent investigation of myogenic signalling events reveals intriguing roles for semaphorin3A (Sema3A), secreted by activated satellite cells, in the muscle environment during development and regeneration. For example, Sema3A makes important contributions to regulating the formation of blood vessels, balancing bone formation and bone remodelling, and inflammation, and was recently implicated in the establishment of fibre-type distribution through effects on myosin heavy chain gene expression. This review highlights the active or potential contributions of satellite-cell-derived Sema3A to regulation of the processes of motor neurite ingrowth into a regenerating muscle bed. Successful restoration of functional innervation during muscle repair is essential; this review emphasizes the integrative role of satellite-cell biology in the progressive coordination of adaptive cellular and tissue responses during the injury-repair process in voluntary muscle.
目前骨骼肌损伤与再生的研究强调了神经-肌肉相互作用在神经再支配过程中的关键作用。肌肉卫星细胞或干细胞的活性,被认为是肌生成修复的“货币”,在这些事件中起着关键作用,这是正在进行的研究表明的。最近对肌生成信号事件的研究揭示了在发育和再生过程中,由激活的卫星细胞分泌的神经丝蛋白 3A(Sema3A)在肌肉环境中发挥的有趣作用。例如,Sema3A 对调节血管形成、平衡骨形成和骨重塑以及炎症做出了重要贡献,并通过对肌球蛋白重链基因表达的影响,最近被牵连到纤维类型分布的建立中。这篇综述强调了卫星细胞衍生的 Sema3A 对运动神经元轴突向内生长到再生肌肉床的过程的调节的积极或潜在贡献。在肌肉修复过程中成功恢复功能性神经支配至关重要;本综述强调了卫星细胞生物学在自主肌肉损伤修复过程中适应性细胞和组织反应的逐步协调中的综合作用。