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Identification of Withania somnifera-Silybum marianum-Trigonella foenum-graecum Formulation as a Nutritional Supplement to Contrast Muscle Atrophy and Sarcopenia

Background: Muscle atrophy, i.e., the loss of skeletal muscle mass and function, is an unresolved problem associated with aging (sarcopenia) and several pathological conditions. The imbalance between myofibrillary protein breakdown (especially the adult isoforms of myosin heavy chain, MyHC) and synt...

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Autores principales: Salvadori, Laura, Mandrone, Manuela, Manenti, Tommaso, Ercolani, Catia, Cornioli, Luca, Lianza, Mariacaterina, Tomasi, Paola, Chiappalupi, Sara, Di Filippo, Ester Sara, Fulle, Stefania, Poli, Ferruccio, Sorci, Guglielmo, Riuzzi, Francesca
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7824275/
https://www.ncbi.nlm.nih.gov/pubmed/33375229
http://dx.doi.org/10.3390/nu13010049
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author Salvadori, Laura
Mandrone, Manuela
Manenti, Tommaso
Ercolani, Catia
Cornioli, Luca
Lianza, Mariacaterina
Tomasi, Paola
Chiappalupi, Sara
Di Filippo, Ester Sara
Fulle, Stefania
Poli, Ferruccio
Sorci, Guglielmo
Riuzzi, Francesca
author_facet Salvadori, Laura
Mandrone, Manuela
Manenti, Tommaso
Ercolani, Catia
Cornioli, Luca
Lianza, Mariacaterina
Tomasi, Paola
Chiappalupi, Sara
Di Filippo, Ester Sara
Fulle, Stefania
Poli, Ferruccio
Sorci, Guglielmo
Riuzzi, Francesca
author_sort Salvadori, Laura
collection PubMed
description Background: Muscle atrophy, i.e., the loss of skeletal muscle mass and function, is an unresolved problem associated with aging (sarcopenia) and several pathological conditions. The imbalance between myofibrillary protein breakdown (especially the adult isoforms of myosin heavy chain, MyHC) and synthesis, and the reduction of muscle regenerative potential are main causes of muscle atrophy. Methods: Starting from one-hundred dried hydroalcoholic extracts of medical plants, we identified those able to contrast the reduction of C2C12 myotube diameter in well-characterized in vitro models mimicking muscle atrophy associated to inflammatory states, glucocorticoid treatment or nutrient deprivation. Based on their ability to rescue type II MyHC (MyHC-II) expression in atrophying conditions, six extracts with different phytochemical profiles were selected, mixed in groups of three, and tested on atrophic myotubes. The molecular mechanism underpinning the effects of the most efficacious formulation, and its efficacy on myotubes obtained from muscle biopsies of young and sarcopenic subjects were also investigated. Results: We identified WST (Withania somnifera, Silybum marianum, Trigonella foenum-graecum) formulation as extremely efficacious in protecting C2C12 myotubes against MyHC-II degradation by stimulating Akt (protein kinase B)-dependent protein synthesis and p38 MAPK (p38 mitogen-activated protein kinase)/myogenin-dependent myoblast differentiation. WST sustains trophism in C2C12 and young myotubes, and rescues the size, developmental MyHC expression and myoblast fusion in sarcopenic myotubes. Conclusion: WST strongly counteracts muscle atrophy associated to different conditions in vitro. The future validation in vivo of our results might lead to the use of WST as a food supplement to sustain muscle mass in diffuse atrophying conditions, and to reverse the age-related functional decline of human muscles, thus improving people quality of life and reducing social and health-care costs.
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spelling pubmed-78242752021-01-24 Identification of Withania somnifera-Silybum marianum-Trigonella foenum-graecum Formulation as a Nutritional Supplement to Contrast Muscle Atrophy and Sarcopenia Salvadori, Laura Mandrone, Manuela Manenti, Tommaso Ercolani, Catia Cornioli, Luca Lianza, Mariacaterina Tomasi, Paola Chiappalupi, Sara Di Filippo, Ester Sara Fulle, Stefania Poli, Ferruccio Sorci, Guglielmo Riuzzi, Francesca Nutrients Article Background: Muscle atrophy, i.e., the loss of skeletal muscle mass and function, is an unresolved problem associated with aging (sarcopenia) and several pathological conditions. The imbalance between myofibrillary protein breakdown (especially the adult isoforms of myosin heavy chain, MyHC) and synthesis, and the reduction of muscle regenerative potential are main causes of muscle atrophy. Methods: Starting from one-hundred dried hydroalcoholic extracts of medical plants, we identified those able to contrast the reduction of C2C12 myotube diameter in well-characterized in vitro models mimicking muscle atrophy associated to inflammatory states, glucocorticoid treatment or nutrient deprivation. Based on their ability to rescue type II MyHC (MyHC-II) expression in atrophying conditions, six extracts with different phytochemical profiles were selected, mixed in groups of three, and tested on atrophic myotubes. The molecular mechanism underpinning the effects of the most efficacious formulation, and its efficacy on myotubes obtained from muscle biopsies of young and sarcopenic subjects were also investigated. Results: We identified WST (Withania somnifera, Silybum marianum, Trigonella foenum-graecum) formulation as extremely efficacious in protecting C2C12 myotubes against MyHC-II degradation by stimulating Akt (protein kinase B)-dependent protein synthesis and p38 MAPK (p38 mitogen-activated protein kinase)/myogenin-dependent myoblast differentiation. WST sustains trophism in C2C12 and young myotubes, and rescues the size, developmental MyHC expression and myoblast fusion in sarcopenic myotubes. Conclusion: WST strongly counteracts muscle atrophy associated to different conditions in vitro. The future validation in vivo of our results might lead to the use of WST as a food supplement to sustain muscle mass in diffuse atrophying conditions, and to reverse the age-related functional decline of human muscles, thus improving people quality of life and reducing social and health-care costs. MDPI 2020-12-26 /pmc/articles/PMC7824275/ /pubmed/33375229 http://dx.doi.org/10.3390/nu13010049 Text en © 2020 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Salvadori, Laura
Mandrone, Manuela
Manenti, Tommaso
Ercolani, Catia
Cornioli, Luca
Lianza, Mariacaterina
Tomasi, Paola
Chiappalupi, Sara
Di Filippo, Ester Sara
Fulle, Stefania
Poli, Ferruccio
Sorci, Guglielmo
Riuzzi, Francesca
Identification of Withania somnifera-Silybum marianum-Trigonella foenum-graecum Formulation as a Nutritional Supplement to Contrast Muscle Atrophy and Sarcopenia
title Identification of Withania somnifera-Silybum marianum-Trigonella foenum-graecum Formulation as a Nutritional Supplement to Contrast Muscle Atrophy and Sarcopenia
title_full Identification of Withania somnifera-Silybum marianum-Trigonella foenum-graecum Formulation as a Nutritional Supplement to Contrast Muscle Atrophy and Sarcopenia
title_fullStr Identification of Withania somnifera-Silybum marianum-Trigonella foenum-graecum Formulation as a Nutritional Supplement to Contrast Muscle Atrophy and Sarcopenia
title_full_unstemmed Identification of Withania somnifera-Silybum marianum-Trigonella foenum-graecum Formulation as a Nutritional Supplement to Contrast Muscle Atrophy and Sarcopenia
title_short Identification of Withania somnifera-Silybum marianum-Trigonella foenum-graecum Formulation as a Nutritional Supplement to Contrast Muscle Atrophy and Sarcopenia
title_sort identification of withania somnifera-silybum marianum-trigonella foenum-graecum formulation as a nutritional supplement to contrast muscle atrophy and sarcopenia
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7824275/
https://www.ncbi.nlm.nih.gov/pubmed/33375229
http://dx.doi.org/10.3390/nu13010049
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