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Low-intensity training provokes adaptive extracellular matrix turnover of a muscular dystrophy model

Recommendations of therapeutic exercise in Duchenne muscular dystrophy are still controversial. The hypothesis that a low-intensity training (LIT) protocol leads to muscle adaptations on mdx mice model was tested. Dystrophic male mice with 8 weeks old were separated in exercised (mdxE, n= 8) and sed...

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Autores principales: Gaiad, Thaís P., Oliveira, Murilo X., Lobo, Adalfredo R., Libório, Lívia R., Pinto, Priscilla A.F., Fernandes, Danielle C., Santos, Ana Paula, Ambrósio, Carlos Eduardo, Machado, Alex Sander D.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Korean Society of Exercise Rehabilitation 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5747205/
https://www.ncbi.nlm.nih.gov/pubmed/29326902
http://dx.doi.org/10.12965/jer.1735094.547
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author Gaiad, Thaís P.
Oliveira, Murilo X.
Lobo, Adalfredo R.
Libório, Lívia R.
Pinto, Priscilla A.F.
Fernandes, Danielle C.
Santos, Ana Paula
Ambrósio, Carlos Eduardo
Machado, Alex Sander D.
author_facet Gaiad, Thaís P.
Oliveira, Murilo X.
Lobo, Adalfredo R.
Libório, Lívia R.
Pinto, Priscilla A.F.
Fernandes, Danielle C.
Santos, Ana Paula
Ambrósio, Carlos Eduardo
Machado, Alex Sander D.
author_sort Gaiad, Thaís P.
collection PubMed
description Recommendations of therapeutic exercise in Duchenne muscular dystrophy are still controversial. The hypothesis that a low-intensity training (LIT) protocol leads to muscle adaptations on mdx mice model was tested. Dystrophic male mice with 8 weeks old were separated in exercised (mdxE, n= 8) and sedentary (mdxC, n= 8) groups. Wild-type mice were used as control (WT, n= 8) group. Exercised group underwent a LIT protocol (9 m/min, 30 min, 3 days/wk, 60 days) on a horizontal treadmill. At day 60 all animals were analyzed regarding parameters of markers of muscle lesion and extracellular matrix turnover of muscle tissue by collagens fibers on tibial anterior muscle. Histomorphometry attested that centrally located nuclei fibers and the coefficient of variance of minimal Feret’s diameter was similar in mdxE and mdxC groups (P= 1.000) and both groups presented higher mean values than WT group (P< 0.001). Fraction area of collagen fibers of mdxE group was lower than mdxC group (P= 0,027) and similar to WT group (P= 0,751). Intramuscular area of Col3 of the mdxE group was higher than mdxC and WT groups (P<0.001). Intramuscular area of Col1 on the mdxE group was similar to the mdxC group (P= 1.000) and both groups were higher than WT group (P< 0.001). LIT protocol had not influenced muscle injuries resulting from the dystrophin-deficiency membrane fragility. Although, LIT had provoked adaptations on extracellular matrix bringing higher elastic feature to dystrophic muscle tissue.
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spelling pubmed-57472052018-01-11 Low-intensity training provokes adaptive extracellular matrix turnover of a muscular dystrophy model Gaiad, Thaís P. Oliveira, Murilo X. Lobo, Adalfredo R. Libório, Lívia R. Pinto, Priscilla A.F. Fernandes, Danielle C. Santos, Ana Paula Ambrósio, Carlos Eduardo Machado, Alex Sander D. J Exerc Rehabil Original Article Recommendations of therapeutic exercise in Duchenne muscular dystrophy are still controversial. The hypothesis that a low-intensity training (LIT) protocol leads to muscle adaptations on mdx mice model was tested. Dystrophic male mice with 8 weeks old were separated in exercised (mdxE, n= 8) and sedentary (mdxC, n= 8) groups. Wild-type mice were used as control (WT, n= 8) group. Exercised group underwent a LIT protocol (9 m/min, 30 min, 3 days/wk, 60 days) on a horizontal treadmill. At day 60 all animals were analyzed regarding parameters of markers of muscle lesion and extracellular matrix turnover of muscle tissue by collagens fibers on tibial anterior muscle. Histomorphometry attested that centrally located nuclei fibers and the coefficient of variance of minimal Feret’s diameter was similar in mdxE and mdxC groups (P= 1.000) and both groups presented higher mean values than WT group (P< 0.001). Fraction area of collagen fibers of mdxE group was lower than mdxC group (P= 0,027) and similar to WT group (P= 0,751). Intramuscular area of Col3 of the mdxE group was higher than mdxC and WT groups (P<0.001). Intramuscular area of Col1 on the mdxE group was similar to the mdxC group (P= 1.000) and both groups were higher than WT group (P< 0.001). LIT protocol had not influenced muscle injuries resulting from the dystrophin-deficiency membrane fragility. Although, LIT had provoked adaptations on extracellular matrix bringing higher elastic feature to dystrophic muscle tissue. Korean Society of Exercise Rehabilitation 2017-12-27 /pmc/articles/PMC5747205/ /pubmed/29326902 http://dx.doi.org/10.12965/jer.1735094.547 Text en Copyright © 2017 Korean Society of Exercise Rehabilitation This is an Open Access article distributed under the terms of the Creative Commons Attribution Non-Commercial License (http://creativecommons.org/licenses/by-nc/4.0/) which permits unrestricted non-commercial use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Original Article
Gaiad, Thaís P.
Oliveira, Murilo X.
Lobo, Adalfredo R.
Libório, Lívia R.
Pinto, Priscilla A.F.
Fernandes, Danielle C.
Santos, Ana Paula
Ambrósio, Carlos Eduardo
Machado, Alex Sander D.
Low-intensity training provokes adaptive extracellular matrix turnover of a muscular dystrophy model
title Low-intensity training provokes adaptive extracellular matrix turnover of a muscular dystrophy model
title_full Low-intensity training provokes adaptive extracellular matrix turnover of a muscular dystrophy model
title_fullStr Low-intensity training provokes adaptive extracellular matrix turnover of a muscular dystrophy model
title_full_unstemmed Low-intensity training provokes adaptive extracellular matrix turnover of a muscular dystrophy model
title_short Low-intensity training provokes adaptive extracellular matrix turnover of a muscular dystrophy model
title_sort low-intensity training provokes adaptive extracellular matrix turnover of a muscular dystrophy model
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5747205/
https://www.ncbi.nlm.nih.gov/pubmed/29326902
http://dx.doi.org/10.12965/jer.1735094.547
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