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莱菔硫烷对体内外线粒体介导的肌肉损伤和氧化应激的抗疲劳作用。

Anti-fatigue effect of Lepidium meyenii Walp. (Maca) on preventing mitochondria-mediated muscle damage and oxidative stress in vivo and vitro.

机构信息

State Key Laboratory of Food Science and Technology, School of Food Science and Technology, Jiangnan University, Wuxi, 214122, China.

出版信息

Food Funct. 2021 Apr 7;12(7):3132-3141. doi: 10.1039/d1fo00383f. Epub 2021 Mar 17.

Abstract

Maca (Lepidium meyenii Walp.) has emerged as a popular functional plant food due to its various pharmacological properties, including anti-oxidation, anti-inflammation and anti-fatigue activity. In this study, we investigated the role of Maca aqueous extract (ME) on muscle during exercise-induced fatigue both in vivo and in vitro. As a result, ME significantly enhanced mouse leg grip-strength and increased exercise endurance in the rota-rod test. ME could clear the accumulation of metabolites - blood lactic acid (BLA), blood urea nitrogen (BUN) and reactive oxygen species (ROS) levels after weight-loaded forced swimming. Focusing on muscle, we found that the administration of ME strengthened mouse muscle structures so that exercise-induced metabolic stress was alleviated by upregulating NAD/NADH. Furthermore, ME inhibited the reduction of the viability and accumulation of ROS by treatment with HO in C2C12 skeletal muscle cells. ME-induced activation of energy metabolism in skeletal muscle might up-regulate mitochondrial biogenesis and function, thereby protecting against oxidative stress-induced damage. We concluded that the effects of Maca played a crucial role in the regulation of exercise-induced fatigue in mouse muscle, which could be expected to serve as a functional food supplement for improving exercise performance and alleviating physical fatigue.

摘要

玛咖(Lepidium meyenii Walp.)由于其各种药理学特性,包括抗氧化、抗炎和抗疲劳活性,已成为一种受欢迎的功能性植物食品。在这项研究中,我们研究了玛咖水提物(ME)在体内和体外运动性疲劳期间对肌肉的作用。结果表明,ME 显著增强了小鼠腿部握力,并提高了转棒试验中的运动耐力。ME 可以清除负重游泳后代谢物的积累 - 血乳酸(BLA)、血尿素氮(BUN)和活性氧(ROS)水平。专注于肌肉,我们发现 ME 增强了小鼠肌肉结构,从而通过上调 NAD/NADH 减轻运动引起的代谢应激。此外,ME 通过用 HO 处理 C2C12 骨骼肌细胞来抑制细胞活力降低和 ROS 积累。ME 诱导的骨骼肌能量代谢激活可能上调线粒体生物发生和功能,从而防止氧化应激诱导的损伤。我们得出结论,玛咖的作用在调节小鼠肌肉运动性疲劳中起着关键作用,有望作为改善运动表现和缓解身体疲劳的功能性食品补充剂。

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