New Trends to Treat Muscular Atrophy: A Systematic Review of Epicatechin

Author:

German Iris Jasmin Santos1ORCID,Pomini Karina Torres23ORCID,Andreo Jesus Carlos1,Shindo João Vitor Tadashi Cosin1,Castro Marcela Vialogo Marques de2,Detregiachi Claudia Rucco P.23,Araújo Adriano Cressoni23ORCID,Guiguer Elen Landgraf23ORCID,Fornari Laurindo Lucas3ORCID,Bueno Patrícia Cincotto dos Santos34,Souza Maricelma da Silva Soares de3,Gabaldi Marcia3,Barbalho Sandra Maria23ORCID,Shinohara André Luis1

Affiliation:

1. Department of Biological Sciences (Anatomy), School of Dentistry of Bauru, University of São Paulo, (FOB-USP), Alameda Doutor Octávio Pinheiro Brisolla, 9-75, Bauru 17012-901, São Paulo, Brazil

2. Postgraduate Program in Structural and Functional Interactions in Rehabilitation, University of Marilia (UNIMAR), Marília 17525-902, São Paulo, Brazil

3. Department of Biochemistry and Pharmacology, School of Medicine, University of Marília (UNIMAR), Avenida Hygino Muzzy Filho, 1001, Marília 17525-902, São Paulo, Brazil

4. Department of Animal Sciences, School of Veterinary Medicine, University of Marília (UNIMAR), Avenida Hygino Muzzy Filho, 1001, Marília 17525-902, São Paulo, Brazil

Abstract

Epicatechin is a polyphenol compound that promotes skeletal muscle differentiation and counteracts the pathways that participate in the degradation of proteins. Several studies present contradictory results of treatment protocols and therapeutic effects. Therefore, the objective of this systematic review was to investigate the current literature showing the molecular mechanism and clinical protocol of epicatechin in muscle atrophy in humans, animals, and myoblast cell-line. The search was conducted in Embase, PubMed/MEDLINE, Cochrane Library, and Web of Science. The qualitative analysis demonstrated that there is a commonness of epicatechin inhibitory action in myostatin expression and atrogenes MAFbx, FOXO, and MuRF1. Epicatechin showed positive effects on follistatin and on the stimulation of factors related to the myogenic actions (MyoD, Myf5, and myogenin). Furthermore, the literature also showed that epicatechin can interfere with mitochondrias’ biosynthesis in muscle fibers, stimulation of the signaling pathways of AKT/mTOR protein production, and amelioration of skeletal musculature performance, particularly when combined with physical exercise. Epicatechin can, for these reasons, exhibit clinical applicability due to the beneficial results under conditions that negatively affect the skeletal musculature. However, there is no protocol standardization or enough clinical evidence to draw more specific conclusions on its therapeutic implementation.

Funder

Brazilian National Council for Scientific and Technological Development (CNPq), Brazil

Publisher

MDPI AG

Subject

Food Science,Nutrition and Dietetics

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