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Greater loss of mitochondrial function with ageing is associated with earlier onset of sarcopenia in C. elegans

机译:线粒体功能随着衰老而更大的丧失与秀丽隐杆线虫少肌症的早期发作有关

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摘要

Sarcopenia, the age-related decline of muscle, is a significant and growing public health burden. C. elegans, a model organism for investigating the mechanisms of ageing, also displays sarcopenia, but the underlying mechanism(s) remain elusive. Here, we use C. elegans natural scaling of lifespan in response to temperature to examine the relationship between mitochondrial content, mitochondrial function, and sarcopenia. Mitochondrial content and maximal mitochondrial ATP production rates (MAPR) display an inverse relationship to lifespan, while onset of MAPR decline displays a direct relationship. Muscle mitochondrial structure, sarcomere structure, and movement decline also display a direct relationship with longevity. Notably, the decline in mitochondrial network structure occurs earlier than sarcomere decline, and correlates more strongly with loss of movement, and scales with lifespan. These results suggest that mitochondrial function is critical in the ageing process and more robustly explains the onset and progression of sarcopenia than loss of sarcomere structure.
机译:肌肉减少症是与年龄相关的肌肉下降,是严重且日益增加的公共卫生负担。秀丽隐杆线虫(C. elegans)是一种研究衰老机制的模型生物,它也显示出肌肉减少症,但潜在的机制仍然难以捉摸。在这里,我们使用线虫寿命的自然尺度响应温度来检查线粒体含量,线粒体功能和肌肉减少症之间的关系。线粒体含量和最大线粒体ATP生产率(MAPR)与寿命成反比,而MAPR下降的发作则与寿命成正比。肌肉线粒体结构,肌节结构和运动衰退也与寿命长短有直接关系。值得注意的是,线粒体网络结构的下降发生在肌节下降之前,并且与运动丧失更密切相关,并且与寿命成比例。这些结果表明线粒体功能在衰老过程中至关重要,并且比肌节结构的丧失更能强有力地解释少肌症的发作和进展。

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