Ascorbic acid stimulates the in vitro myoblast proliferation and migration of pacu (Piaractus mesopotamicus)

The postembryonic growth of skeletal muscle in teleost fish involves myoblast proliferation, migration and differentiation, encompassing the main events of embryonic myogenesis. Ascorbic acid plays important cellular and biochemical roles as an antioxidant and contributes to the proper collagen bios...

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Veröffentlicht in:Scientific reports 2019-02, Vol.9 (1), p.2229-2229, Article 2229
Hauptverfasser: Duran, Bruno Oliveira Silva, Góes, Guilherme Alcarás, Zanella, Bruna Tereza Thomazini, Freire, Paula Paccielli, Valente, Jessica Silvino, Salomão, Rondinelle Artur Simões, Fernandes, Ana, Mareco, Edson Assunção, Carvalho, Robson Francisco, Dal-Pai-Silva, Maeli
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Sprache:eng
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Zusammenfassung:The postembryonic growth of skeletal muscle in teleost fish involves myoblast proliferation, migration and differentiation, encompassing the main events of embryonic myogenesis. Ascorbic acid plays important cellular and biochemical roles as an antioxidant and contributes to the proper collagen biosynthesis necessary for the structure of connective and bone tissues. However, whether ascorbic acid can directly influence the mechanisms of fish myogenesis and skeletal muscle growth remains unclear. The aim of our work was to evaluate the effects of ascorbic acid supplementation on the in vitro myoblast proliferation and migration of pacu ( Piaractus mesopotamicus ). To provide insight into the potential antioxidant role of ascorbic acid, we also treated myoblasts in vitro with menadione, which is a powerful oxidant. Our results show that ascorbic acid-supplemented myoblasts exhibit increased proliferation and migration and are protected against the oxidative stress caused by menadione. In addition, ascorbic acid increased the activity of the antioxidant enzyme superoxide dismutase and the expression of myog and mtor , which are molecular markers related to skeletal muscle myogenesis and protein synthesis, respectively. This work reveals a direct influence of ascorbic acid on the mechanisms of pacu myogenesis and highlights the potential use of ascorbic acid for stimulating fish skeletal muscle growth.
ISSN:2045-2322
2045-2322
DOI:10.1038/s41598-019-38536-4