Advances in relieving exercise fatigue for curcumin: Molecular targets, bioavailability, and potential mechanism

Author:

Zhang Huijuan123ORCID,Kang Rui123,Song Tiancong123,Ren Feiyue123,Liu Jie123,Wang Jing123ORCID

Affiliation:

1. School of Food and Health Beijing Technology & Business University (BTBU) Beijing China

2. National Center of Technology Innovation for Grain Industry (Comprehensive Utilization of Edible By‐Products) Beijing Technology and Business University Beijing China

3. Key Laboratory of Special Food Supervision Technology for State Market Regulation Beijing China

Abstract

AbstractIntense and prolonged physical activity can lead to a decrease in muscle capacity, making it difficult to maintain the desired exercise intensity and resulting in exercise fatigue. The long‐term effects of exercise fatigue can be very damaging to the body, so it is an urgent problem to be addressed. The intervention of foodborne active substances will be an effective measure. There is growing evidence that the molecular structure and function of curcumin have a positive effect on relieving fatigue. In this review, we summarize curcumin's molecular structure, which enables it to bind to a wealth of molecular targets, regulate signaling pathways, and thus alleviate exercise fatigue through a variety of mechanisms, including reducing oxidative stress, inhibiting inflammation, reducing metabolite accumulation, and regulating energy metabolism. The effects of curcumin on fatigue‐related markers were analyzed from the perspective of animal models and human models and based on the bidirectional interaction between curcumin and intestinal microbiota: Intestinal microbiota can transform curcumin, and curcumin regulates gut microbiota through metabolic pathways, providing a new perspective for alleviating fatigue. This review contributes to a more comprehensive understanding of the possible molecular mechanisms of curcumin in anti‐fatigue and provides a new possibility for the development of functional foods in the future.

Funder

Natural Science Foundation of Beijing Municipality

Publisher

Wiley

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