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Wnt7a treatment ameliorates muscular dystrophy

机译:Wnt7a治疗可改善肌营养不良

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摘要

Duchenne muscular dystrophy (DMD) is a devastating genetic muscular disorder of childhood marked by progressive debilitating muscle weakness and wasting, and ultimately death in the second or third decade of life. Wnt7a signaling through its receptor Fzd7 accelerates and augments regeneration by stimulating satellite stem cell expansion through the planar cell polarity pathway, as well as myofiber hypertrophy through the AKT/mammalian target of rapamycin (mTOR) anabolic pathway. We investigated the therapeutic potential of the secreted factor Wnt7a for focal treatment of dystrophic DMD muscles using the mdx mouse model, and found that Wnt7a treatment efficiently induced satellite cell expansion and myofiber hypertrophy in treated mucles in mdx mice. Importantly, Wnt7a treatment resulted in a significant increase in muscle strength, as determined by generation of specific force. Furthermore, Wnt7a reduced the level of contractile damage, likely by inducing a shift in fiber type toward slow-twitch. Finally, we found that Wnt7a similarly induced myotube hypertrophy and a shift in fiber type toward slow-twitch in human primary myotubes. Taken together, our findings suggest that Wnt7a is a promising candidate for development as an ameliorative treatment for DMD.
机译:杜兴氏肌营养不良症(DMD)是儿童期的毁灭性遗传性肌肉疾病,其特征是进行性衰弱性肌肉无力和消瘦,并最终在生命的第二个或第三个十年中死亡。通过其受体Fzd7传递的Wnt7a信号通过刺激通过平面细胞极性途径的卫星干细胞扩增,以及通过AKT /雷帕霉素合成代谢途径的哺乳动物靶标(mTOR)引起的肌纤维肥大,来加速和增强再生。我们调查了分泌因子Wnt7a对使用mdx小鼠模型进行营养不良性DMD肌肉的局部治疗的治疗潜力,并发现Wnt7a治疗有效地在mdx小鼠中诱导了卫星细胞扩张和肌纤维肥大。重要的是,Wnt7a治疗导致肌肉力量显着增加,这是通过产生比力来确定的。此外,Wnt7a可能通过引起纤维类型向缓慢抽搐的转移而降低了收缩损伤的水平。最后,我们发现Wnt7a类似地诱导了肌原肌肥大,并在人类原发性肌原肌中向缓慢抽搐转移了纤维类型。两者合计,我们的发现表明Wnt7a是发展为DMD的改良疗法的有希望的候选者。

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