Role of supplementary L-carnitine in exercise and exercise recovery.

Medicine and sport science Pub Date : 2012-01-01 Epub Date: 2012-10-15 DOI:10.1159/000341934
Amy Huang, Kevin Owen
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引用次数: 17

Abstract

L-Carnitine is a conditionally essential nutrient and plays an important role in mitochondrial β-oxidation. As a dietary supplement for athletes, L-carnitine has been investigated for its potential to enhance β-oxidation during exercise ultimately to improve performance. While some studies have shown a positive impact on VO(2 max) and other performance measures, other studies have found contradictory results. As such, investigations to a different mechanism by which L-carnitine supplementation could impact exercise and recovery were explored. Based on findings from cardiovascular research that L-carnitine enhances vascular endothelial function, an alternate hypothesis was developed. The hypothesis is centered on improving blood flow to muscle tissues and decreasing hypoxic stress and its resulting sequelae. Studies have shown a decrease in markers of purine catabolism and free radical generation and muscle soreness as a result of L-carnitine supplementation. Direct assessment of muscle tissue damage via magnetic resonance imaging also indicates the ability of L-carnitine to attenuate tissue damage related to hypoxic stress. L-Carnitine is regarded as a safe supplement for athletes and has been shown to positively impact the recovery process after exercise.

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补充左旋肉碱在运动和运动恢复中的作用。
左旋肉碱是一种条件必需营养素,在线粒体β氧化中起重要作用。作为运动员的膳食补充剂,人们研究了左旋肉碱在运动过程中增强β氧化的潜力,最终提高运动成绩。虽然一些研究表明对VO(2max)和其他性能指标有积极影响,但其他研究发现了相互矛盾的结果。因此,研究人员探索了补充左旋肉碱影响运动和恢复的不同机制。基于心血管研究的发现,左旋肉碱增强血管内皮功能,另一种假设被提出。该假说的核心是改善肌肉组织的血液流动,减少缺氧应激及其产生的后遗症。研究表明,补充左旋肉碱可以减少嘌呤分解代谢和自由基产生的标记物以及肌肉酸痛。通过磁共振成像直接评估肌肉组织损伤也表明左旋肉碱能够减轻与缺氧应激相关的组织损伤。左旋肉碱被认为是运动员的安全补充,并已被证明对运动后的恢复过程有积极的影响。
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