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天然活性成分在对抗运动疲劳中调节的信号通路——综述

Signaling pathways regulated by natural active ingredients in the fight against exercise fatigue-a review.

作者信息

Zhao Rongyue, Wu Ruomeng, Jin Junjie, Ning Ke, Wang Zhuo, Yi Xuejie, Kapilevich Leonid, Liu Jiao

机构信息

College of Exercise and Health, Shenyang Sport University, Shenyang, China.

Exercise and Health Research Center, Department of Kinesiology, Shenyang Sport University, Shenyang, Liaoning, China.

出版信息

Front Pharmacol. 2023 Dec 14;14:1269878. doi: 10.3389/fphar.2023.1269878. eCollection 2023.

Abstract

Exercise fatigue is a normal protective mechanism of the body. However, long-term fatigue hinders normal metabolism and exercise capacity. The generation and recovery from exercise fatigue involves alterations in multiple signaling pathways, mainly AMPK, PI3K/Akt, Nrf2/ARE, NF-κB, PINK1/Parkin, and BDNF/TrkB, as well as MAPK signaling pathways that mediate energy supply, reduction of metabolites, oxidative stress homeostasis, muscle fiber type switching, and central protective effects. In recent studies, a rich variety of natural active ingredients have been identified in traditional Chinese medicines and plant extracts with anti-fatigue effects, opening up the field of research in new anti-fatigue drugs. In this review we give an overview of the signaling pathways associated with the activity of natural food active ingredients against exercise fatigue. Such a comprehensive review is necessary to understand the potential of these materials as preventive measures and treatments of exercise fatigue. We expect the findings highlighted and discussed here will help guide the development of new health products and provide a theoretical and scientific basis for future research on exercise fatigue.

摘要

运动疲劳是身体的一种正常保护机制。然而,长期疲劳会阻碍正常代谢和运动能力。运动疲劳的产生和恢复涉及多种信号通路的改变,主要包括AMPK、PI3K/Akt、Nrf2/ARE、NF-κB、PINK1/Parkin和BDNF/TrkB,以及介导能量供应、代谢产物减少、氧化应激稳态、肌纤维类型转换和中枢保护作用的MAPK信号通路。在最近的研究中,在具有抗疲劳作用的中药和植物提取物中发现了丰富多样的天然活性成分,为新的抗疲劳药物研究领域开辟了道路。在这篇综述中,我们概述了与天然食品活性成分抗运动疲劳活性相关的信号通路。这样全面的综述对于理解这些物质作为运动疲劳预防措施和治疗方法的潜力是必要的。我们期望这里突出强调和讨论的研究结果将有助于指导新健康产品的开发,并为未来运动疲劳研究提供理论和科学依据。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/69a3/10752993/08ee9d1b9e8c/fphar-14-1269878-g001.jpg

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