首页> 外文期刊>Acta physiologica >Platelet releasate promotes skeletal myogenesis by increasing muscle stem cell commitment to differentiation and accelerates muscle regeneration following acute injury
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Platelet releasate promotes skeletal myogenesis by increasing muscle stem cell commitment to differentiation and accelerates muscle regeneration following acute injury

机译:血小板释放通过提高肌肉干细胞对分化的致病促进骨骼肌生成,并在急性损伤后加速肌肉再生

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Aim The use of platelets as biomaterials has gained intense research interest. However, the mechanisms regarding platelet-mediated skeletal myogenesis remain to be established. The aim of this study was to determine the role of platelet releasate in skeletal myogenesis and muscle stem cell fate in vitro and ex vivo respectively. Methods We analysed the effect of platelet releasate on proliferation and differentiation of C2C12 myoblasts by means of cell proliferation assays, immunohistochemistry, gene expression and cell bioenergetics. We expanded in vitro findings on single muscle fibres by determining the effect of platelet releasate on murine skeletal muscle stem cells using protein expression profiles for key myogenic regulatory factors. Results TRAP6 and collagen used for releasate preparation had a more pronounced effect on myoblast proliferation vs thrombin and sonicated platelets (P 0.05). In addition, platelet concentration positively correlated with myoblast proliferation. Platelet releasate increased myoblast and muscle stem cell proliferation in a dose-dependent manner, which was mitigated by VEGFR and PDGFR inhibition. Inhibition of VEGFR and PDGFR ablated MyoD expression on proliferating muscle stem cells, compromising their commitment to differentiation in muscle fibres (P 0.001). Platelet releasate was detrimental to myoblast fusion and affected differentiation of myoblasts in a temporal manner. Most importantly, we show that platelet releasate promotes skeletal myogenesis through the PDGF/VEGF-Cyclin D1-MyoD-Scrib-Myogenin axis and accelerates skeletal muscle regeneration after acute injury. Conclusion This study provides novel mechanistic insights on the role of platelet releasate in skeletal myogenesis and set the physiological basis for exploiting platelets as biomaterials in regenerative medicine.
机译:旨在使用血小板作为生物材料的兴趣。然而,关于血小板介导的骨骼肌生成的机制仍有待建立。本研究的目的是确定血小板在体外和离体中骨骼肌生成和肌肉干细胞命运中的作用。方法分析了血小板释放对C2C12肌细胞的增殖和分化的效果通过细胞增殖测定,免疫组化,基因表达和细胞生物能学。我们通过测定使用蛋白表达谱对关键肌原调控因子的蛋白表达曲线血小板骨骼肌干细胞的影响,在单肌纤维上扩展了单肌纤维的体外发现。结果用于释放制剂的Trap6和胶原蛋白对肌细胞增殖与凝血酶和超声血小板进行了更明显的影响(P <0.05)。此外,血小板浓度与肌细胞增殖正相关。血小板以依赖性方式释放增加肌细胞和肌肉干细胞增殖,用VEGFR和PDGFR抑制减轻。 VEGFR和PDGFR烧蚀MyOD在增殖肌肉干细胞上的抑制作用,损害它们对肌纤维中的分化的承诺(P <0.001)。血小板释放对肌细胞融合和影响肌细胞的效果是不存在的。最重要的是,我们表明血小板释放通过PDGF / VEGF-CyclinD1-Myod-Scrif-Scrif-Scrib-Myogenin轴促进骨骼肌生成,并在急性损伤后加速骨骼肌再生。结论本研究提供了对血小板在骨骼肌中的作用中的作用进行了新的机制见解,并为再生医学中的生物材料进行了利用血小板的生理基础。

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