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Effects of old age on human skeletal muscle energetics during fatiguing contractions with and without blood flow.

机译:衰老对有或没有血流的收缩性疲劳过程中人体骨骼肌能量的影响。

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We recently reported lower glycolytic flux (ATP(GLY)) and increased reliance on oxidative ATP synthesis (ATP(OX)) in contracting muscle of older compared to young humans. To further investigate this age-related difference in the pathways of ATP synthesis, we used magnetic resonance spectroscopy to determine the rates of ATP(OX), ATP(GLY) and net phosphocreatine hydrolysis in vivo during maximal muscle contractions under free-flow (FF) and ischaemic (ISC) conditions in the ankle dorsiflexors of 20 young (27 +/- 3 years; 10 male, 10 female) and 18 older (70 +/- 5 years; 10 male, 8 female) adults. We hypothesized that ATP(GLY) would be higher in young compared to old during FF contractions, but that old would be unable to increase ATP(GLY) during ISC to match that of the young, which would suggest impaired glycolytic ATP synthesis with old age. Peak glycolytic flux during FF was lower in older (0.8 +/- 0.1 mm ATP s(-1)) compared to young (1.4 +/- 0.1 mm ATP s(-1), P < 0.001) subjects. During ISC, peak ATP(GLY) increased in old to a level similar to that of young (1.4 +/- 0.2 mm ATP s(-1), 1.3 +/- 0.2 mm ATP s(-1), respectively; P = 0.86), suggesting that glycolytic function remains intact in aged muscle in vivo. Notably, older adults fatigued less than young during both FF and ISC (P
机译:我们最近报道了与年轻人相比,老年人的收缩肌肉中糖酵解通量(ATP(GLY))降低,对氧化ATP合成(ATP(OX))的依赖性增加。为了进一步研究这种年龄相关的ATP合成途径的差异,我们使用磁共振波谱法确定了自由流动(FF)下最大肌肉收缩过程中体内ATP(OX),ATP(GLY)和净磷酸肌酸水解的速率。 )和20名年轻(27 +/- 3岁; 10名男性,10名女性)和18名年龄较大(70 +/- 5岁; 10名男性,8名女性)成人的踝背屈肌缺血性(ISC)状况。我们假设FF收缩期间年轻人的ATP(GLY)会比老年人的高,但是在ISC期间,老年人将无法增加ATP(GLY)以匹配年轻人的ATP(GLY),这表明老年人的糖酵解ATP合成受损。与年轻人(1.4 +/- 0.1 mm ATP s(-1),P <0.001)相比,老年(0.8 +/- 0.1 mm ATP s(-1))FF期间的峰值糖酵解通量要低。在ISC期间,老年人的ATP(GLY)峰值增加到与年轻人相似的水平(分别为1.4 +/- 0.2 mm ATP s(-1),1.3 +/- 0.2 mm ATP s(-1); P = 0.86),表明糖酵解功能在体内衰老的肌肉中保持完整。值得注意的是,在FF和ISC期间,老年人的疲劳小于年轻人(P <或= 0.004)。这些结果提供了新的证据,即在最大等距背屈期间,老年人骨骼肌的体内糖酵解功能未受损,并暗示了代谢经济差异的潜在作用,因此,代谢产物的积累在老年人的抗疲劳性中也可能发挥作用。

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