Laboratory of Biochemistry of Proteins, Federal University of State of Rio de Janeiro, Brazil.
OMICS. 2011 Oct;15(10):695-704. doi: 10.1089/omi.2011.0010.
Physical exercise affects hematological equilibrium and metabolism. This study evaluated the biochemical and hematological responses of a male world-class athlete in sailing who is ranked among the top athletes on the official ISAF ranking list of windsurfing, class RS:X. The results describe the metabolic adaptations of this athlete in response to exercise in two training situations: the first when the athlete was using the usual training and dietary protocol, and the second following training and nutritional interventions based on a careful analysis of his diet and metabolic changes measured in a simulated competition. The intervention protocol for this study consisted of a 3-month facility-based program using neuromuscular training (NT), aerobic training (AT), and nutritional changes to promote anabolism and correct micronutrient malnutrition. Nutritional and training intervention produced an increase in the plasma availability of branched-chain amino acids (BCAAs), aromatic amino acids (AAAs), alanine, glutamate, and glutamine during exercise. Both training and nutritional interventions reduced ammonemia, uricemia, and uremia. In addition, we are able to correct a significant drop in potassium levels during races by correct supplementation. Due to the uniqueness of this experiment, these results may not apply to other windsurfers, but we nonetheless had the opportunity to characterize the metabolic adaptations of this athlete. We also proposed the importance of in-field metabolic analyses to the understanding, support, and training of world-class elite athletes.
体育锻炼会影响血液平衡和新陈代谢。本研究评估了一名世界级帆船运动员的血液生化和血液学反应,该运动员在国际帆联帆船 RS:X 级别的官方排名中位列顶尖运动员之一。结果描述了该运动员在两种训练情况下对运动的代谢适应:第一种情况是运动员使用通常的训练和饮食方案,第二种情况是在对其饮食和代谢变化进行仔细分析后,根据模拟比赛进行的训练和营养干预。本研究的干预方案包括为期 3 个月的基于设施的计划,包括神经肌肉训练 (NT)、有氧运动 (AT) 和营养改变,以促进合成代谢和纠正微量营养素营养不良。营养和训练干预增加了运动过程中支链氨基酸 (BCAA)、芳香族氨基酸 (AAA)、丙氨酸、谷氨酸和谷氨酰胺的血浆可用性。训练和营养干预均降低了氨血症、尿酸血症和尿毒症。此外,我们能够通过正确的补充纠正比赛中钾水平的显著下降。由于实验的独特性,这些结果可能不适用于其他帆船运动员,但我们仍有机会描述该运动员的代谢适应。我们还提出了在现场进行代谢分析对于理解、支持和训练世界级精英运动员的重要性。