Cardiovascular and muscular plasticity in an endurance-master athlete following 12 weeks of detraining and retraining: A case study.

Nadège Zanou, Vincent Gremeaux, Nicolas Place, R. Lepers
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Abstract

Introduction This study aimed at examining the cardiorespiratory and muscular adaptations following 12 weeks of detraining and retraining in a 53-year-old endurance master athlete. Methods Data were collected before and after detraining and after retraining. Maximal oxygen uptake (VO2max) was evaluated during maximal cycling exercise. Proteins involved in muscle contraction, mitochondrial function and glycolysis were investigated using western blot analysis. Results VO2max decreased by 7% after detraining and was 5% greater than baseline after retraining. Detraining induced an important increase in the ryanodine receptor type 1 protein levels (RyR1, +44%) with a decrease in the protein levels of its stabilizer FKBP12 (-24%). We observed a 138% increase in the sarco-endoplasmic reticulum ATPase 1 protein and a 42% increase in the myosin heavy chain fast-twitch protein in response to detraining, suggesting transformation towards a more glycolytic phenotype. This was associated with depressed levels of the mitochondrial biogenesis and oxidative phosphorylation (OXPHOS) proteins, while the expression of the mitochondrial dynamic proteins appeared stimulated. Twelve weeks of retraining reversed almost all the alterations observed in muscle proteins, but specifically increased mitochondrial biogenesis, OXPHOS and antioxidant defense proteins as well as the glucose transporter 4 (Glut -4, +36%) and hexokinase (+100%) proteins levels compared to baseline. The mitochondrial dynamic proteins were further increased with the retraining. Discussion/Conclusion These data provide novel information on cardiorespiratory and muscular plasticity suggesting that highly endurance-trained athletes might show substantial muscular adaptations while retrained after a detraining period and call for more extensive clinical trials.
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耐力大师级运动员经过 12 周的脱离训练和再训练后的心血管和肌肉可塑性:个案研究。
导言 本研究旨在对一名 53 岁的耐力大师级运动员进行为期 12 周的脱离训练和再训练后的心肺功能和肌肉适应性进行研究。方法 收集脱离训练前后和重新训练后的数据。评估了最大自行车运动时的最大摄氧量(VO2max)。使用 Western 印迹分析法研究了肌肉收缩、线粒体功能和糖酵解过程中涉及的蛋白质。结果 在脱离训练后,最大氧饱和度降低了 7%,而在重新训练后,最大氧饱和度比基线高出 5%。非训练导致雷诺丁受体 1 型蛋白水平(RyR1,+44%)显著增加,而其稳定剂 FKBP12 的蛋白水平却下降了(-24%)。我们观察到,肌浆内质网 ATPase 1 蛋白水平增加了 138%,肌球蛋白重链快速牵引蛋白水平增加了 42%,这表明肌肉在脱离训练后向更多糖酵解的表型转变。这与线粒体生物生成和氧化磷酸化(OXPHOS)蛋白水平下降有关,而线粒体动态蛋白的表达似乎受到了刺激。12 周的再训练几乎逆转了肌肉蛋白质中观察到的所有变化,但与基线相比,线粒体生物生成、氧化磷酸化和抗氧化防御蛋白质以及葡萄糖转运体 4(Glut -4,+36%)和己糖激酶(+100%)蛋白质的水平都有显著提高。线粒体动态蛋白随着再训练进一步增加。讨论/结论 这些数据提供了有关心肺功能和肌肉可塑性的新信息,表明经过高度耐力训练的运动员在脱离训练期后进行再训练时可能会出现大量的肌肉适应性变化,因此需要进行更广泛的临床试验。
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