首页> 外文期刊>The Journal of Physiology >Age-related differences in the dose-response relationship of muscle protein synthesis to resistance exercise in young and old men.
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Age-related differences in the dose-response relationship of muscle protein synthesis to resistance exercise in young and old men.

机译:男女年龄相关的肌肉蛋白质合成与抵抗运动的剂量反应关系中的年龄相关差异。

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We investigated how myofibrillar protein synthesis (MPS) and muscle anabolic signalling were affected by resistance exercise at 20-90% of 1 repetition maximum (1 RM) in two groups (25 each) of post-absorptive, healthy, young (24 +/- 6 years) and old (70 +/- 5 years) men with identical body mass indices (24 +/- 2 kg m(-2)). We hypothesized that, in response to exercise, anabolic signalling molecule phosphorylation and MPS would be modified in a dose-dependant fashion, but to a lesser extent in older men. Vastus lateralis muscle was sampled before, immediately after, and 1, 2 and 4 h post-exercise. MPS was measured by incorporation of [1,2-(13)C] leucine (gas chromatography-combustion-mass spectrometry using plasma [1,2-(13)C]alpha-ketoisocaparoate as surrogate precursor); the phosphorylation of p70 ribosomal S6 kinase (p70s6K) and eukaryotic initiation factor 4E binding protein 1 (4EBP1) was measured using Western analysis with anti-phosphoantibodies. In each group, there was a sigmoidal dose-response relationship between MPS at 1-2 h post-exercise and exercise intensity, which was blunted (P < 0.05) in the older men. At all intensities, MPS fell in both groups to near-basal values by 2-4 h post-exercise. The phosphorylation of p70s6K and 4EBP1 at 60-90% 1 RM was blunted in older men. At 1 h post-exercise at 60-90% 1 RM, p70s6K phosphorylation predicted the rate of MPS at 1-2 h post-exercise in the young but not in the old. The results suggest that in the post-absorptive state: (i) MPS is dose dependant on intensity rising to a plateau at 60-90% 1 RM; (ii) older men show anabolic resistance of signalling and MPS to resistance exercise.
机译:我们研究了在两组(每组25个)吸收后,健康,年轻(24 + /)的1次重复最大值(1 RM)的20-90%抵抗运动对肌原纤维蛋白合成(MPS)和肌肉合成代谢信号的影响。 -6岁)和体重指数相同(24 +/- 2 kg m(-2))的老年(70 +/- 5岁)男性。我们假设,响应运动,合成代谢信号分子的磷酸化和MPS会以剂量依赖的方式被修饰,但在老年男性中的作用较小。在运动前,运动后,运动后1、2和4 h取样外侧外侧肌。通过掺入[1,2-(13)C]亮氨酸来测量MPS(气相色谱-燃烧-质谱法,使用血浆[1,2-(13)C]α-酮异己酸酯作为替代前体);使用抗磷酸抗体的Western分析测量p70核糖体S6激酶(p70s6K)和真核起始因子4E结合蛋白1(4EBP1)的磷酸化。在每组中,运动后1-2小时的MPS与运动强度之间存在S型剂量反应关系,在老年男性中这种现象变钝(P <0.05)。在所有强度下,运动后2-4小时,两组的MPS均降至接近基础值。在年龄较大的男性中,p70s6K和4EBP1在60-90%1 RM的磷酸化作用减弱。运动后1小时以1 RM的60-90%进行磷酸化,p70s6K预测年轻人运动后1-2小时的MPS发生率,但老年人没有。结果表明,在吸收后状态下:(i)MPS的剂量取决于在60-90%1 RM时上升至平稳的强度; (ii)年长的男性对信号传导和MPS的合成代谢具有抵抗力。

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