Nutritional Strategies for Muscle Atrophy: Current Evidence and Underlying Mechanisms

Author:

Shen Yuntian1,Zhang Chen1,Dai Chaolun2,Zhang Yijie2,Wang Kexin1,Gao Zihui1,Chen Xin3,Yang Xiaoming1,Sun Hualin1ORCID,Yao Xinlei1ORCID,Xu Lingchi1,Liu Hua4

Affiliation:

1. Key Laboratory of Neuroregeneration of Jiangsu and Ministry of Education Co‐Innovation Center of Neuroregeneration, NMPA Key Laboratory for Research and Evaluation of Tissue Engineering Technology Products Nantong University Nantong Jiangsu Province 226001 P. R. China

2. Department of Clinical Medicine Medical College Nantong University Nantong P. R. China 226001

3. Department of Neurology Affiliated Hospital of Nantong University Nantong Jiangsu Province 226001 P. R. China

4. Department of Orthopedics Haian Hospital of Traditional Chinese Medicine Nantong Jiangsu Province 226600 P. R. China

Abstract

AbstractSkeletal muscle can undergo detrimental changes in various diseases, leading to muscle dysfunction and atrophy, thus severely affecting people's lives. Along with exercise, there is a growing interest in the potential of nutritional support against muscle atrophy. This review provides a brief overview of the molecular mechanisms driving skeletal muscle atrophy and summarizes recent advances in nutritional interventions for preventing and treating muscle atrophy. The nutritional supplements include amino acids and their derivatives (such as leucine, β‐hydroxy, β‐methylbutyrate, and creatine), various antioxidant supplements (like Coenzyme Q10 and mitoquinone, resveratrol, curcumin, quercetin, Omega 3 fatty acids), minerals (such as magnesium and selenium), and vitamins (such as vitamin B, vitamin C, vitamin D, and vitamin E), as well as probiotics and prebiotics (like Lactobacillus, Bifidobacterium, and 1‐kestose). Furthermore, the study discusses the impact of a combined approach involving nutritional support and physical therapy to prevent muscle atrophy, suggests appropriate multi‐nutritional and multi‐modal interventions based on individual conditions to optimize treatment outcomes, and enhances the recovery of muscle function for patients. By understanding the molecular mechanisms behind skeletal muscle atrophy and implementing appropriate interventions, it is possible to enhance the recovery of muscle function and improve patients' quality of life.

Funder

National Natural Science Foundation of China

Publisher

Wiley

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