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左旋肉碱摄入对运动诱导的肌肉损伤和氧化应激的影响:叙述性范围综述。

Effects of L-Carnitine Intake on Exercise-Induced Muscle Damage and Oxidative Stress: A Narrative Scoping Review.

机构信息

Department of Anatomy and Radiology, Faculty of Health Sciences, GIR Physical Exercise and Aging, University of Valladolid, Campus Los Pajaritos, 42004 Soria, Spain.

Department of Surgery, Ophthalmology, Otorhinolaryngology and Physiotherapy, Faculty of Medicine, Hospital Clínico Universitario de Valladolid, 47003 Valladolid, Spain.

出版信息

Nutrients. 2023 May 31;15(11):2587. doi: 10.3390/nu15112587.

Abstract

Exercise-induced muscle damage results in decreased physical performance that is accompanied by an inflammatory response in muscle tissue. The inflammation process occurs with the infiltration of phagocytes (neutrophils and macrophages) that play a key role in the repair and regeneration of muscle tissue. In this context, high intensity or long-lasting exercise results in the breakdown of cell structures. The removal of cellular debris is performed by infiltrated phagocytes, but with the release of free radicals as collateral products. L-carnitine is a key metabolite in cellular energy metabolism, but at the same time, it exerts antioxidant actions in the neuromuscular system. L-carnitine eliminates reactive oxygen and nitrogen species that, in excess, alter DNA, lipids and proteins, disturbing cell function. Supplementation using L-carnitine results in an increase in serum L-carnitine levels that correlates positively with the decrease in cell alterations induced by oxidative stress situations, such as hypoxia. The present narrative scoping review focuses on the critical evaluation of the efficacy of L-carnitine supplementation on exercise-induced muscle damage, particularly in postexercise inflammatory and oxidative damage. Although both concepts appear associated, only in two studies were evaluated together. In addition, other studies explored the effect of L-carnitine in perception of fatigue and delayed onset of muscle soreness. In view of the studies analyzed and considering the role of L-carnitine in muscle bioenergetics and its antioxidant potential, this supplement could help in postexercise recovery. However, further studies are needed to conclusively clarify the mechanisms underlying these protective effects.

摘要

运动引起的肌肉损伤导致身体机能下降,同时伴有肌肉组织的炎症反应。炎症过程伴随着吞噬细胞(中性粒细胞和巨噬细胞)的浸润而发生,吞噬细胞在肌肉组织的修复和再生中起着关键作用。在这种情况下,高强度或长时间的运动导致细胞结构的破坏。细胞碎片的清除是由浸润的吞噬细胞完成的,但同时也会释放自由基作为副产物。左旋肉碱是细胞能量代谢的关键代谢物,但同时在神经肌肉系统中发挥抗氧化作用。左旋肉碱消除了活性氧和活性氮物质,这些物质过多会改变 DNA、脂质和蛋白质,扰乱细胞功能。左旋肉碱的补充会导致血清左旋肉碱水平升高,与氧化应激情况下(如缺氧)细胞改变的减少呈正相关。本叙述性范围审查重点是对左旋肉碱补充剂对运动引起的肌肉损伤的功效进行批判性评估,特别是在运动后炎症和氧化损伤方面。尽管这两个概念似乎相关,但只有两项研究同时进行了评估。此外,其他研究还探讨了左旋肉碱对疲劳感和延迟性肌肉酸痛的影响。鉴于分析的研究并考虑到左旋肉碱在肌肉生物能量学中的作用及其抗氧化潜力,这种补充剂可能有助于运动后的恢复。然而,需要进一步的研究来明确这些保护作用的机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c939/10255885/cbd7f88e27e1/nutrients-15-02587-g001.jpg

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