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Mitochondrial Respiratory Capacity and Content Are Normal in Young Insulin-Resistant Obese Humans

Considerable debate exists about whether alterations in mitochondrial respiratory capacity and/or content play a causal role in the development of insulin resistance during obesity. The current study was undertaken to determine whether such alterations are present during the initial stages of insuli...

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Autores principales: Fisher-Wellman, Kelsey H., Weber, Todd M., Cathey, Brook L., Brophy, Patricia M., Gilliam, Laura A.A., Kane, Constance L., Maples, Jill M., Gavin, Timothy P., Houmard, Joseph A., Neufer, P. Darrell
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Diabetes Association 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3868052/
https://www.ncbi.nlm.nih.gov/pubmed/23974920
http://dx.doi.org/10.2337/db13-0940
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author Fisher-Wellman, Kelsey H.
Weber, Todd M.
Cathey, Brook L.
Brophy, Patricia M.
Gilliam, Laura A.A.
Kane, Constance L.
Maples, Jill M.
Gavin, Timothy P.
Houmard, Joseph A.
Neufer, P. Darrell
author_facet Fisher-Wellman, Kelsey H.
Weber, Todd M.
Cathey, Brook L.
Brophy, Patricia M.
Gilliam, Laura A.A.
Kane, Constance L.
Maples, Jill M.
Gavin, Timothy P.
Houmard, Joseph A.
Neufer, P. Darrell
author_sort Fisher-Wellman, Kelsey H.
collection PubMed
description Considerable debate exists about whether alterations in mitochondrial respiratory capacity and/or content play a causal role in the development of insulin resistance during obesity. The current study was undertaken to determine whether such alterations are present during the initial stages of insulin resistance in humans. Young (∼23 years) insulin-sensitive lean and insulin-resistant obese men and women were studied. Insulin resistance was confirmed through an intravenous glucose tolerance test. Measures of mitochondrial respiratory capacity and content as well as H(2)O(2) emitting potential and the cellular redox environment were performed in permeabilized myofibers and primary myotubes prepared from vastus lateralis muscle biopsy specimens. No differences in mitochondrial respiratory function or content were observed between lean and obese subjects, despite elevations in H(2)O(2) emission rates and reductions in cellular glutathione. These findings were apparent in permeabilized myofibers as well as in primary myotubes. The results suggest that reductions in mitochondrial respiratory capacity and content are not required for the initial manifestation of peripheral insulin resistance.
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spelling pubmed-38680522015-01-01 Mitochondrial Respiratory Capacity and Content Are Normal in Young Insulin-Resistant Obese Humans Fisher-Wellman, Kelsey H. Weber, Todd M. Cathey, Brook L. Brophy, Patricia M. Gilliam, Laura A.A. Kane, Constance L. Maples, Jill M. Gavin, Timothy P. Houmard, Joseph A. Neufer, P. Darrell Diabetes Metabolism Considerable debate exists about whether alterations in mitochondrial respiratory capacity and/or content play a causal role in the development of insulin resistance during obesity. The current study was undertaken to determine whether such alterations are present during the initial stages of insulin resistance in humans. Young (∼23 years) insulin-sensitive lean and insulin-resistant obese men and women were studied. Insulin resistance was confirmed through an intravenous glucose tolerance test. Measures of mitochondrial respiratory capacity and content as well as H(2)O(2) emitting potential and the cellular redox environment were performed in permeabilized myofibers and primary myotubes prepared from vastus lateralis muscle biopsy specimens. No differences in mitochondrial respiratory function or content were observed between lean and obese subjects, despite elevations in H(2)O(2) emission rates and reductions in cellular glutathione. These findings were apparent in permeabilized myofibers as well as in primary myotubes. The results suggest that reductions in mitochondrial respiratory capacity and content are not required for the initial manifestation of peripheral insulin resistance. American Diabetes Association 2014-01 2013-12-13 /pmc/articles/PMC3868052/ /pubmed/23974920 http://dx.doi.org/10.2337/db13-0940 Text en © 2014 by the American Diabetes Association. Readers may use this article as long as the work is properly cited, the use is educational and not for profit, and the work is not altered. See http://creativecommons.org/licenses/by-nc-nd/3.0/ for details.
spellingShingle Metabolism
Fisher-Wellman, Kelsey H.
Weber, Todd M.
Cathey, Brook L.
Brophy, Patricia M.
Gilliam, Laura A.A.
Kane, Constance L.
Maples, Jill M.
Gavin, Timothy P.
Houmard, Joseph A.
Neufer, P. Darrell
Mitochondrial Respiratory Capacity and Content Are Normal in Young Insulin-Resistant Obese Humans
title Mitochondrial Respiratory Capacity and Content Are Normal in Young Insulin-Resistant Obese Humans
title_full Mitochondrial Respiratory Capacity and Content Are Normal in Young Insulin-Resistant Obese Humans
title_fullStr Mitochondrial Respiratory Capacity and Content Are Normal in Young Insulin-Resistant Obese Humans
title_full_unstemmed Mitochondrial Respiratory Capacity and Content Are Normal in Young Insulin-Resistant Obese Humans
title_short Mitochondrial Respiratory Capacity and Content Are Normal in Young Insulin-Resistant Obese Humans
title_sort mitochondrial respiratory capacity and content are normal in young insulin-resistant obese humans
topic Metabolism
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3868052/
https://www.ncbi.nlm.nih.gov/pubmed/23974920
http://dx.doi.org/10.2337/db13-0940
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