Université Clermont Auvergne, INRAE, UNH, Unité de Nutrition Humaine, CRNH Auvergne, F-63000 Clermont-Ferrand, France.
Université Clermont Auvergne, INRAE, Metabolomic and Proteomic Exploration Facility, F-63000 Clermont-Ferrand, France.
Int J Mol Sci. 2022 Mar 28;23(7):3713. doi: 10.3390/ijms23073713.
Middle-aged and master endurance athletes exhibit similar physical performance and long-term muscle adaptation to aerobic exercise. Nevertheless, we hypothesized that the short-term plasticity of the skeletal muscle might be distinctly altered for master athletes when they are challenged by a single bout of prolonged moderate-intensity exercise. Six middle-aged (37Y) and five older (50Y) master highly-trained athletes performed a 24-h treadmill run (24TR). muscle biopsies were collected before and after the run and assessed for proteomics, fiber morphometry, intramyocellular lipid droplets (LD), mitochondrial oxidative activity, extracellular matrix (ECM), and micro-vascularisation. Before 24TR, muscle fiber type morphometry, intramyocellular LD, oxidative activity, ECM and micro-vascularisation were similar between master and middle-aged runners. For 37Y runners, 24TR was associated with ECM thickening, increased capillary-to-fiber interface, and an 89% depletion of LD in type-I fibers. In contrast, for 50Y runners, 24TR did not alter ECM and capillarization and poorly depleted LDs. Moreover, an impaired succinate dehydrogenase activity and functional class scoring of proteomes suggested reduced oxidative phosphorylation post-24TR exclusively in 50Y muscle. Collectively, our data support that middle-aged and master endurance athletes exhibit distinct transient plasticity in response to a single bout of ultra-endurance exercise, which may constitute early signs of muscle aging for master athletes.
中年和老年耐力运动员在有氧运动方面表现出相似的身体表现和长期的肌肉适应。然而,我们假设,当大师级运动员受到单次长时间中等强度运动的挑战时,他们的骨骼肌短期可塑性可能会明显改变。六名中年(37 岁)和五名老年(50 岁)的大师级高训练水平运动员进行了 24 小时跑步机跑步(24TR)。在跑步前后采集肌肉活检,并进行蛋白质组学、纤维形态计量学、肌内脂滴(LD)、线粒体氧化活性、细胞外基质(ECM)和微血管化评估。在 24TR 之前,肌肉纤维类型形态计量学、肌内 LD、氧化活性、ECM 和微血管化在大师级和中年跑步者之间相似。对于 37 岁的跑步者,24TR 与 ECM 增厚、毛细血管与纤维界面增加以及 I 型纤维中 LD 消耗 89%有关。相比之下,对于 50 岁的跑步者,24TR 不会改变 ECM 和毛细血管化,并且 LD 消耗很少。此外,琥珀酸脱氢酶活性和蛋白质组学功能分类评分受损表明,仅在 50 岁的肌肉中,24TR 后氧化磷酸化受损。总的来说,我们的数据支持中年和大师级耐力运动员在单次超耐力运动后表现出明显的短暂可塑性,这可能是大师级运动员肌肉衰老的早期迹象。