Department of Sports Medicine, China Medical University, Taichung City, Taiwan.
Department of Orthopedic Surgery, China Medical University Hospital, Taichung City, Taiwan.
Int J Biol Sci. 2023 Jan 22;19(4):1049-1062. doi: 10.7150/ijbs.79169. eCollection 2023.
A balance between muscle injury and regeneration is critical for sustaining muscle function during myogenesis. Melatonin is well recognized for its involvement in neuroprotective activities, immune system regulation and suppression of inflammatory responses. This study set out to provide evidence that melatonin improves muscle regeneration during skeletal muscle differentiation. We began with cloning a stable cell line expressing Pax7 knockdown C2C12 cells. We then investigated markers of muscle degradation and regeneration after treating growth medium and differentiated medium with melatonin. Bioinformatics analysis of RNA sequencing results revealed that melatonin regulates muscle differentiation and that Wnt cascades are involved in the mechanism of muscle differentiation. Screening of miRNA online databases revealed that miR-3475-3p is a specific binding site on Pax7 and acts as a negative regulator of Pax7, which is involved in melatonin-induced muscle differentiation. We then investigated the effects of melatonin treatment in the early stage of glycerol-induced skeletal muscle injury in mice. Rotarod performance, micro-computed tomography and immunohistochemistry findings showed that melatonin-induced increases in Pax7 expression rapidly rescue skeletal muscle differentiation and improve muscle fiber morphology in glycerol-induced muscle injury. Our data support the hypothesis that melatonin rapidly rescues skeletal muscle differentiation and the melatonin/Pax7 axis could therefore serve as an important therapeutic target to optimize muscle healing after injury.
肌肉损伤和再生之间的平衡对于在肌肉发生过程中维持肌肉功能至关重要。褪黑素因其参与神经保护活动、免疫系统调节和抑制炎症反应而得到广泛认可。本研究旨在提供证据表明褪黑素可改善骨骼肌分化过程中的肌肉再生。我们首先克隆了表达 Pax7 敲低的稳定细胞系 C2C12 细胞。然后,我们研究了用褪黑素处理生长培养基和分化培养基后肌肉降解和再生的标志物。RNA 测序结果的生物信息学分析表明,褪黑素调节肌肉分化,Wnt 级联参与肌肉分化的机制。在线 miRNA 数据库筛选显示,miR-3475-3p 是 Pax7 的特定结合位点,作为 Pax7 的负调节剂,参与了褪黑素诱导的肌肉分化。然后,我们研究了褪黑素治疗在小鼠甘油诱导的骨骼肌损伤早期的影响。旋转棒性能、微计算机断层扫描和免疫组织化学结果表明,褪黑素诱导的 Pax7 表达增加可迅速挽救骨骼肌分化,并改善甘油诱导的肌肉损伤中的肌肉纤维形态。我们的数据支持这样一种假设,即褪黑素可迅速挽救骨骼肌分化,并且褪黑素/Pax7 轴因此可以作为一种重要的治疗靶点,以优化损伤后的肌肉愈合。