Functional Nutrients to Ameliorate Neurogenic Muscle Atrophy

Metabolites. 2022 Nov 21;12(11):1149. doi: 10.3390/metabo12111149.

Abstract

Neurogenic muscle atrophy is a debilitating condition that occurs from nerve trauma in association with diseases or during aging, leading to reduced interaction between motoneurons and skeletal fibers. Current therapeutic approaches aiming at preserving muscle mass in a scenario of decreased nervous input include physical activity and employment of drugs that slow down the progression of the condition yet provide no concrete resolution. Nutritional support appears as a precious tool, adding to the success of personalized medicine, and could thus play a relevant part in mitigating neurogenic muscle atrophy. We herein summarize the molecular pathways triggered by denervation of the skeletal muscle that could be affected by functional nutrients. In this narrative review, we examine and discuss studies pertaining to the use of functional ingredients to counteract neurogenic muscle atrophy, focusing on their preventive or curative means of action within the skeletal muscle. We reviewed experimental models of denervation in rodents and in amyotrophic lateral sclerosis, as well as that caused by aging, considering the knowledge generated with use of animal experimental models and, also, from human studies.

Keywords: aging; muscle wasting; natural compounds; neurodegenerative diseases; nutraceuticals; sarcopenia.

Publication types

  • Review

Grants and funding

V.M. is funded by AFM Telethon, grant number 23531; D.C. is funded by SIRIC CURAMUS, grant number 2021ECUR10, and Sapienza University of Rome (Progetti Medi di Ateneo 2019); M.S. is funded by FAPESP, grant number 2012/50079-0 and 2020/07765-6.