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Neuromuscular Electrical Stimulation Induces Skeletal Muscle Fiber Remodeling and Specific Gene Expression Profile in Healthy Elderly

Skeletal muscle aging is a multifactorial process strictly related to progressive weakness. One of the results that were focused on was the fiber phenotype modification and their loss. The physiological muscle recruitment to contraction, basically prosecuted under volitional control, can also be eng...

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Autores principales: Mancinelli, Rosa, Toniolo, Luana, Di Filippo, Ester Sara, Doria, Christian, Marrone, Mariangela, Maroni, Camilla Reina, Verratti, Vittore, Bondi, Danilo, Maccatrozzo, Lisa, Pietrangelo, Tiziana, Fulle, Stefania
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6890722/
https://www.ncbi.nlm.nih.gov/pubmed/31827446
http://dx.doi.org/10.3389/fphys.2019.01459
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author Mancinelli, Rosa
Toniolo, Luana
Di Filippo, Ester Sara
Doria, Christian
Marrone, Mariangela
Maroni, Camilla Reina
Verratti, Vittore
Bondi, Danilo
Maccatrozzo, Lisa
Pietrangelo, Tiziana
Fulle, Stefania
author_facet Mancinelli, Rosa
Toniolo, Luana
Di Filippo, Ester Sara
Doria, Christian
Marrone, Mariangela
Maroni, Camilla Reina
Verratti, Vittore
Bondi, Danilo
Maccatrozzo, Lisa
Pietrangelo, Tiziana
Fulle, Stefania
author_sort Mancinelli, Rosa
collection PubMed
description Skeletal muscle aging is a multifactorial process strictly related to progressive weakness. One of the results that were focused on was the fiber phenotype modification and their loss. The physiological muscle recruitment to contraction, basically prosecuted under volitional control, can also be engaged by means of Neuromuscular Electrical Stimulation (NMES). Knowing that the NMES is effective in improving muscle strength in active healthy elderly, the aim was to investigate which physiological modifications were able to produce in the Vastus lateralis muscle and the pathways involved. It was found that NMES increased the cross sectional area and the isometric strength of type II myofibers together with the activated myogenic pathway in order to shift glycolytic toward the oxidative phenotype II myofibers, at a molecular level and with an increase of maximal voluntary contraction (MVC) at a functional level. Using the TaqMan low density array on 48 different genes, we found that NMES specific gene regulation highlighted: (i) increased protein synthesis with respect to protein degradation; (ii) the activation of an apoptotic pathway involved in the differentiation process; (iii) increased regeneration signals; (iv) oxidative enzyme regulation. These pathways were validated via confirmatory RT-PCR for genes involved in the regeneration process as well as Myosin isoforms. We also investigated the oxidative stress status analyzing superoxide anion levels, the protein expression of two different superoxide dismutase and the activity of both catalase and superoxide anion dismutase, being two main antioxidant enzymes. In conclusion, data demonstrates that NMES is effective in producing physiological adaptation on Vastus Lateralis of active healthy elderly as well as providing new insights for further research on elderly who experienced muscle detriment for periodic or permanent immobility.
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spelling pubmed-68907222019-12-11 Neuromuscular Electrical Stimulation Induces Skeletal Muscle Fiber Remodeling and Specific Gene Expression Profile in Healthy Elderly Mancinelli, Rosa Toniolo, Luana Di Filippo, Ester Sara Doria, Christian Marrone, Mariangela Maroni, Camilla Reina Verratti, Vittore Bondi, Danilo Maccatrozzo, Lisa Pietrangelo, Tiziana Fulle, Stefania Front Physiol Physiology Skeletal muscle aging is a multifactorial process strictly related to progressive weakness. One of the results that were focused on was the fiber phenotype modification and their loss. The physiological muscle recruitment to contraction, basically prosecuted under volitional control, can also be engaged by means of Neuromuscular Electrical Stimulation (NMES). Knowing that the NMES is effective in improving muscle strength in active healthy elderly, the aim was to investigate which physiological modifications were able to produce in the Vastus lateralis muscle and the pathways involved. It was found that NMES increased the cross sectional area and the isometric strength of type II myofibers together with the activated myogenic pathway in order to shift glycolytic toward the oxidative phenotype II myofibers, at a molecular level and with an increase of maximal voluntary contraction (MVC) at a functional level. Using the TaqMan low density array on 48 different genes, we found that NMES specific gene regulation highlighted: (i) increased protein synthesis with respect to protein degradation; (ii) the activation of an apoptotic pathway involved in the differentiation process; (iii) increased regeneration signals; (iv) oxidative enzyme regulation. These pathways were validated via confirmatory RT-PCR for genes involved in the regeneration process as well as Myosin isoforms. We also investigated the oxidative stress status analyzing superoxide anion levels, the protein expression of two different superoxide dismutase and the activity of both catalase and superoxide anion dismutase, being two main antioxidant enzymes. In conclusion, data demonstrates that NMES is effective in producing physiological adaptation on Vastus Lateralis of active healthy elderly as well as providing new insights for further research on elderly who experienced muscle detriment for periodic or permanent immobility. Frontiers Media S.A. 2019-11-27 /pmc/articles/PMC6890722/ /pubmed/31827446 http://dx.doi.org/10.3389/fphys.2019.01459 Text en Copyright © 2019 Mancinelli, Toniolo, Di Filippo, Doria, Marrone, Maroni, Verratti, Bondi, Maccatrozzo, Pietrangelo and Fulle. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Physiology
Mancinelli, Rosa
Toniolo, Luana
Di Filippo, Ester Sara
Doria, Christian
Marrone, Mariangela
Maroni, Camilla Reina
Verratti, Vittore
Bondi, Danilo
Maccatrozzo, Lisa
Pietrangelo, Tiziana
Fulle, Stefania
Neuromuscular Electrical Stimulation Induces Skeletal Muscle Fiber Remodeling and Specific Gene Expression Profile in Healthy Elderly
title Neuromuscular Electrical Stimulation Induces Skeletal Muscle Fiber Remodeling and Specific Gene Expression Profile in Healthy Elderly
title_full Neuromuscular Electrical Stimulation Induces Skeletal Muscle Fiber Remodeling and Specific Gene Expression Profile in Healthy Elderly
title_fullStr Neuromuscular Electrical Stimulation Induces Skeletal Muscle Fiber Remodeling and Specific Gene Expression Profile in Healthy Elderly
title_full_unstemmed Neuromuscular Electrical Stimulation Induces Skeletal Muscle Fiber Remodeling and Specific Gene Expression Profile in Healthy Elderly
title_short Neuromuscular Electrical Stimulation Induces Skeletal Muscle Fiber Remodeling and Specific Gene Expression Profile in Healthy Elderly
title_sort neuromuscular electrical stimulation induces skeletal muscle fiber remodeling and specific gene expression profile in healthy elderly
topic Physiology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6890722/
https://www.ncbi.nlm.nih.gov/pubmed/31827446
http://dx.doi.org/10.3389/fphys.2019.01459
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