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Influence of Circadian Time Structure on Acute Hormonal Responses to a Single Bout of Heavy-Resistance Exercise in Weight-Trained Men

机译:昼夜节律时间结构对体重训练男子单次重阻力运动急性荷尔蒙反应的影响

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Both testosterone (T) and cortisol (C) exhibit circadian rhythmicity being highest in the morning and lowest in the evening. T is a potent stimulator of protein synthesis and may possess anti-catabolic properties within skeletal muscle, and C affects protein turnover, thereby altering the balance between hormone-mediated anabolic and catabolic activity. Physiological reactions of these hormones and training adaptations may influence the post-exercise recovery phase by modulating anabolic and catabolic processes, therefore affecting metabolic equilibrium, and may lead to intensification of catabolic processes. We investigated the effect of the circadian system on the T and C response of weight-trained men to heavy resistance exercise. Thirteen young (21.8±2.2 yr) weight-trained men (12 months training experience) performed an eight-station heavy-resistance exercise protocol on two separate occasions (AM: 06:00 h and PM: 18:00 h), completing 3 sets of 8–10 repetitions at 75% of each subject's one-repetition maximum (1-RM). Blood samples were obtained prior to, during, and following the exercise bout, and serum total T and C concentrations were determined by competitive immunoassay technique. Performing the single bout of heavy-resistance exercise in the PM as compared to the AM positively altered the C and T/C ratio hormonal response. Pre-exercise C concentrations were significantly lower (p < 0.05) in the PM session, which resulted in a lower peak value, and the accompanying increased T/C ratio suggested a reduced catabolic environment. These data demonstrate that the exercise-induced hormonal profile can be influenced by the circadian time structure toward a profile more favorable for anabolism, therefore optimizing skeletal muscle hypertrophic adaptations associated with resistance exercise.
机译:睾丸激素(T)和皮质醇(C)的昼夜节律都在早上最高,晚上最低。 T是蛋白质合成的有效刺激剂,可能在骨骼肌中具有抗分解代谢的特性,而C影响蛋白质更新,从而改变了激素介导的合成代谢和分解代谢活性之间的平衡。这些激素的生理反应和训练适应性可能会通过调节合成代谢和分解代谢过程来影响运动后恢复阶段,从而影响代谢平衡,并可能导致分解代谢过程的加剧。我们调查了昼夜节律系统对受过重训练的男性对重阻力运动的T和C反应的影响。十三名(21.8±2.2岁)的受过重量训练的年轻人(具有12个月的训练经验)在两次单独的情况下(上午:06:00小时和下午:18:00小时)进行了八站式高强度运动方案,完成了3次一组8-10次重复,每个受试者的一次重复最大值(1-RM)的75%。在运动前,运动中和运动后采集血样,并通过竞争性免疫测定技术测定血清总T和C浓度。与AM相比,在PM中进行单次重度阻力锻炼可积极改变C和T / C比的激素反应。运动前C浓度在PM阶段显着降低(p <0.05),这导致较低的峰值,并且随之而来的T / C比升高表明分解代谢环境减少。这些数据表明,运动引起的荷尔蒙概况可受昼夜节律时间结构的影响而趋向于更适合合成代谢的概况,因此可优化与抵抗运动相关的骨骼肌肥大适应性。

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