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Cancer cachexia is associated with a decrease in skeletal muscle mitochondrial oxidative capacities without alteration of ATP production efficiency

BACKGROUND: Cancer cachexia is a complex syndrome related to a negative energy balance resulting in muscle wasting. Implication of muscle mitochondrial bioenergetics alterations during cancer cachexia was suggested. Therefore, the aim of this study was to explore the efficiency of oxidative phosphor...

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Autores principales: Julienne, Cloé M., Dumas, Jean-François, Goupille, Caroline, Pinault, Michelle, Berri, Cécile, Collin, Anne, Tesseraud, Sophie, Couet, Charles, Servais, Stephane
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Springer-Verlag 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3505576/
https://www.ncbi.nlm.nih.gov/pubmed/22648737
http://dx.doi.org/10.1007/s13539-012-0071-9
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author Julienne, Cloé M.
Dumas, Jean-François
Goupille, Caroline
Pinault, Michelle
Berri, Cécile
Collin, Anne
Tesseraud, Sophie
Couet, Charles
Servais, Stephane
author_facet Julienne, Cloé M.
Dumas, Jean-François
Goupille, Caroline
Pinault, Michelle
Berri, Cécile
Collin, Anne
Tesseraud, Sophie
Couet, Charles
Servais, Stephane
author_sort Julienne, Cloé M.
collection PubMed
description BACKGROUND: Cancer cachexia is a complex syndrome related to a negative energy balance resulting in muscle wasting. Implication of muscle mitochondrial bioenergetics alterations during cancer cachexia was suggested. Therefore, the aim of this study was to explore the efficiency of oxidative phosphorylation in skeletal muscle mitochondria in a preclinical model of cancer cachexia. METHODS: Berlin–Druckrey IX rats with peritoneal carcinosis (PC) were used as a model of cancer cachexia with healthy pair-fed rats (PF) as control. Hindlimb muscle morphology and fibre type composition were analysed in parallel with ubiquitin ligases and UCP gene expression. Oxidative phosphorylation was investigated in isolated muscle mitochondria by measuring oxygen consumption and ATP synthesis rate. RESULTS: PC rats underwent significant muscle wasting affecting fast glycolytic muscles due to a reduction in fibre cross-sectional area. MuRF1 and MAFbx gene expression were significantly increased (9- and 3.5-fold, respectively) in the muscle of PC compared to PF rats. Oxygen consumption in non-phosphorylating state and the ATP/O were similar in both groups. Muscle UCP2 gene was overexpressed in PC rats. State III and the uncoupled state were significantly lower in muscle mitochondria from PC rats with a parallel reduction in complex IV activity (−30 %). CONCLUSION: This study demonstrated that there was neither alteration in ATP synthesis efficiency nor mitochondrial uncoupling in skeletal muscle of cachectic rats despite UCP2 gene overexpression. Muscle mitochondrial oxidative capacities were reduced due to a decrease in complex IV activity. This mitochondrial bioenergetics alteration could participate to insulin resistance, lipid droplet accumulation and lactate production.
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spelling pubmed-35055762012-12-06 Cancer cachexia is associated with a decrease in skeletal muscle mitochondrial oxidative capacities without alteration of ATP production efficiency Julienne, Cloé M. Dumas, Jean-François Goupille, Caroline Pinault, Michelle Berri, Cécile Collin, Anne Tesseraud, Sophie Couet, Charles Servais, Stephane J Cachexia Sarcopenia Muscle Original Article BACKGROUND: Cancer cachexia is a complex syndrome related to a negative energy balance resulting in muscle wasting. Implication of muscle mitochondrial bioenergetics alterations during cancer cachexia was suggested. Therefore, the aim of this study was to explore the efficiency of oxidative phosphorylation in skeletal muscle mitochondria in a preclinical model of cancer cachexia. METHODS: Berlin–Druckrey IX rats with peritoneal carcinosis (PC) were used as a model of cancer cachexia with healthy pair-fed rats (PF) as control. Hindlimb muscle morphology and fibre type composition were analysed in parallel with ubiquitin ligases and UCP gene expression. Oxidative phosphorylation was investigated in isolated muscle mitochondria by measuring oxygen consumption and ATP synthesis rate. RESULTS: PC rats underwent significant muscle wasting affecting fast glycolytic muscles due to a reduction in fibre cross-sectional area. MuRF1 and MAFbx gene expression were significantly increased (9- and 3.5-fold, respectively) in the muscle of PC compared to PF rats. Oxygen consumption in non-phosphorylating state and the ATP/O were similar in both groups. Muscle UCP2 gene was overexpressed in PC rats. State III and the uncoupled state were significantly lower in muscle mitochondria from PC rats with a parallel reduction in complex IV activity (−30 %). CONCLUSION: This study demonstrated that there was neither alteration in ATP synthesis efficiency nor mitochondrial uncoupling in skeletal muscle of cachectic rats despite UCP2 gene overexpression. Muscle mitochondrial oxidative capacities were reduced due to a decrease in complex IV activity. This mitochondrial bioenergetics alteration could participate to insulin resistance, lipid droplet accumulation and lactate production. Springer-Verlag 2012-05-31 2012-12 /pmc/articles/PMC3505576/ /pubmed/22648737 http://dx.doi.org/10.1007/s13539-012-0071-9 Text en © The Author(s) 2012 https://creativecommons.org/licenses/by-nc/4.0/ This article is distributed under the terms of the Creative Commons Attribution Noncommercial License which permits any noncommercial use, distribution, and reproduction in any medium, provided the original author(s) and source are credited.
spellingShingle Original Article
Julienne, Cloé M.
Dumas, Jean-François
Goupille, Caroline
Pinault, Michelle
Berri, Cécile
Collin, Anne
Tesseraud, Sophie
Couet, Charles
Servais, Stephane
Cancer cachexia is associated with a decrease in skeletal muscle mitochondrial oxidative capacities without alteration of ATP production efficiency
title Cancer cachexia is associated with a decrease in skeletal muscle mitochondrial oxidative capacities without alteration of ATP production efficiency
title_full Cancer cachexia is associated with a decrease in skeletal muscle mitochondrial oxidative capacities without alteration of ATP production efficiency
title_fullStr Cancer cachexia is associated with a decrease in skeletal muscle mitochondrial oxidative capacities without alteration of ATP production efficiency
title_full_unstemmed Cancer cachexia is associated with a decrease in skeletal muscle mitochondrial oxidative capacities without alteration of ATP production efficiency
title_short Cancer cachexia is associated with a decrease in skeletal muscle mitochondrial oxidative capacities without alteration of ATP production efficiency
title_sort cancer cachexia is associated with a decrease in skeletal muscle mitochondrial oxidative capacities without alteration of atp production efficiency
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3505576/
https://www.ncbi.nlm.nih.gov/pubmed/22648737
http://dx.doi.org/10.1007/s13539-012-0071-9
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