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Loss of adult skeletal muscle stem cells drives age-related neuromuscular junction degeneration

机译:成年骨骼肌干细胞的丢失驱动与年龄有关的神经肌肉接头变性

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摘要

Neuromuscular junction degeneration is a prominent aspect of sarcopenia, the age-associated loss of skeletal muscle integrity. Previously, we showed that muscle stem cells activate and contribute to mouse neuromuscular junction regeneration in response to denervation (Liu et al., 2015). Here, we examined gene expression profiles and neuromuscular junction integrity in aged mouse muscles, and unexpectedly found limited denervation despite a high level of degenerated neuromuscular junctions. Instead, degenerated neuromuscular junctions were associated with reduced contribution from muscle stem cells. Indeed, muscle stem cell depletion was sufficient to induce neuromuscular junction degeneration at a younger age. Conversely, prevention of muscle stem cell and derived myonuclei loss was associated with attenuation of age-related neuromuscular junction degeneration, muscle atrophy, and the promotion of aged muscle force generation. Our observations demonstrate that deficiencies in muscle stem cell fate and post-synaptic myogenesis provide a cellular basis for age-related neuromuscular junction degeneration and associated skeletal muscle decline.>DOI:
机译:神经肌肉接头变性是肌肉减少症的一个突出方面,即与年龄相关的骨骼肌完整性丧失。以前,我们证明了肌肉干细胞会因去神经支配而激活并促进小鼠神经肌肉接头的再生(Liu等人,2015)。在这里,我们检查了衰老小鼠肌肉中的基因表达谱和神经肌肉接头的完整性,并且尽管神经退行性神经连接的水平很高,但出人意料地发现了有限的神经支配。相反,退化的神经肌肉接头与肌肉干细胞的贡献减少有关。确实,肌肉干细胞的耗竭足以在年轻时引起神经肌肉接头变性。相反,预防肌肉干细胞和衍生的肌核丢失与衰老相关的神经肌肉接头变性,肌肉萎缩和促进衰老的肌肉力量生成有关。我们的观察结果表明,肌肉干细胞命运和突触后肌发生的缺陷为年龄相关的神经肌肉接头变性和相关的骨骼肌衰退提供了细胞基础。> DOI:

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