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Exercise Training Restores Cardiac MicroRNA-1 and MicroRNA-29c to Nonpathological Levels in Obese Rats

We previously reported that aerobic exercise training (AET) consisted of 10 weeks of 60-min swimming sessions, and 5 days/week AET counteracts CH in obesity. Here, we evaluated the role of microRNAs and their target genes that are involved in heart collagen deposition and calcium signaling, as well...

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Autores principales: Silveira, André C., Fernandes, Tiago, Soci, Úrsula P. R., Gomes, João L. P., Barretti, Diego L., Mota, Glória G. F., Negrão, Carlos Eduardo, Oliveira, Edilamar M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Hindawi 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5613694/
https://www.ncbi.nlm.nih.gov/pubmed/29138674
http://dx.doi.org/10.1155/2017/1549014
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author Silveira, André C.
Fernandes, Tiago
Soci, Úrsula P. R.
Gomes, João L. P.
Barretti, Diego L.
Mota, Glória G. F.
Negrão, Carlos Eduardo
Oliveira, Edilamar M.
author_facet Silveira, André C.
Fernandes, Tiago
Soci, Úrsula P. R.
Gomes, João L. P.
Barretti, Diego L.
Mota, Glória G. F.
Negrão, Carlos Eduardo
Oliveira, Edilamar M.
author_sort Silveira, André C.
collection PubMed
description We previously reported that aerobic exercise training (AET) consisted of 10 weeks of 60-min swimming sessions, and 5 days/week AET counteracts CH in obesity. Here, we evaluated the role of microRNAs and their target genes that are involved in heart collagen deposition and calcium signaling, as well as the cardiac remodeling induced by AET in obese Zucker rats. Among the four experimental Zucker groups: control lean rats (LZR), control obese rats (OZR), trained lean rats (LZR + TR), and trained obese rats (OZR + TR), heart weight was greater in the OZR than in the LZR group due to increased cardiac intramuscular fat and collagen. AET seems to exert a protective role in normalizing the heart weight in the OZR + TR group. Cardiac microRNA-29c expression was decreased in OZR compared with the LZR group, paralleled by an increase in the collagen volumetric fraction (CVF). MicroRNA-1 expression was upregulated while the expression of its target gene NCX1 was decreased in OZR compared with the LZR group. Interestingly, AET restored cardiac microRNA-1 to nonpathological levels in the OZR-TR group. Our findings suggest that AET could be used as a nonpharmacological therapy for the reversal of pathological cardiac remodeling and cardiac dysfunction in obesity.
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spelling pubmed-56136942017-11-14 Exercise Training Restores Cardiac MicroRNA-1 and MicroRNA-29c to Nonpathological Levels in Obese Rats Silveira, André C. Fernandes, Tiago Soci, Úrsula P. R. Gomes, João L. P. Barretti, Diego L. Mota, Glória G. F. Negrão, Carlos Eduardo Oliveira, Edilamar M. Oxid Med Cell Longev Research Article We previously reported that aerobic exercise training (AET) consisted of 10 weeks of 60-min swimming sessions, and 5 days/week AET counteracts CH in obesity. Here, we evaluated the role of microRNAs and their target genes that are involved in heart collagen deposition and calcium signaling, as well as the cardiac remodeling induced by AET in obese Zucker rats. Among the four experimental Zucker groups: control lean rats (LZR), control obese rats (OZR), trained lean rats (LZR + TR), and trained obese rats (OZR + TR), heart weight was greater in the OZR than in the LZR group due to increased cardiac intramuscular fat and collagen. AET seems to exert a protective role in normalizing the heart weight in the OZR + TR group. Cardiac microRNA-29c expression was decreased in OZR compared with the LZR group, paralleled by an increase in the collagen volumetric fraction (CVF). MicroRNA-1 expression was upregulated while the expression of its target gene NCX1 was decreased in OZR compared with the LZR group. Interestingly, AET restored cardiac microRNA-1 to nonpathological levels in the OZR-TR group. Our findings suggest that AET could be used as a nonpharmacological therapy for the reversal of pathological cardiac remodeling and cardiac dysfunction in obesity. Hindawi 2017 2017-08-23 /pmc/articles/PMC5613694/ /pubmed/29138674 http://dx.doi.org/10.1155/2017/1549014 Text en Copyright © 2017 André C. Silveira et al. http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Silveira, André C.
Fernandes, Tiago
Soci, Úrsula P. R.
Gomes, João L. P.
Barretti, Diego L.
Mota, Glória G. F.
Negrão, Carlos Eduardo
Oliveira, Edilamar M.
Exercise Training Restores Cardiac MicroRNA-1 and MicroRNA-29c to Nonpathological Levels in Obese Rats
title Exercise Training Restores Cardiac MicroRNA-1 and MicroRNA-29c to Nonpathological Levels in Obese Rats
title_full Exercise Training Restores Cardiac MicroRNA-1 and MicroRNA-29c to Nonpathological Levels in Obese Rats
title_fullStr Exercise Training Restores Cardiac MicroRNA-1 and MicroRNA-29c to Nonpathological Levels in Obese Rats
title_full_unstemmed Exercise Training Restores Cardiac MicroRNA-1 and MicroRNA-29c to Nonpathological Levels in Obese Rats
title_short Exercise Training Restores Cardiac MicroRNA-1 and MicroRNA-29c to Nonpathological Levels in Obese Rats
title_sort exercise training restores cardiac microrna-1 and microrna-29c to nonpathological levels in obese rats
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5613694/
https://www.ncbi.nlm.nih.gov/pubmed/29138674
http://dx.doi.org/10.1155/2017/1549014
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