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Carbon Monoxide Improves Cardiac Function and Mitochondrial Population Quality in a Mouse Model of Metabolic Syndrome

AIMS: Metabolic syndrome induces cardiac dysfunction associated with mitochondria abnormalities. As low levels of carbon monoxide (CO) may improve myocardial and mitochondrial activities, we tested whether a CO-releasing molecule (CORM-3) reverses metabolic syndrome-induced cardiac alteration throug...

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Autores principales: Lancel, Steve, Montaigne, David, Marechal, Xavier, Marciniak, Camille, Hassoun, Sidi Mohamed, Decoster, Brigitte, Ballot, Caroline, Blazejewski, Caroline, Corseaux, Delphine, Lescure, Bernadette, Motterlini, Roberto, Neviere, Remi
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3411569/
https://www.ncbi.nlm.nih.gov/pubmed/22870253
http://dx.doi.org/10.1371/journal.pone.0041836
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author Lancel, Steve
Montaigne, David
Marechal, Xavier
Marciniak, Camille
Hassoun, Sidi Mohamed
Decoster, Brigitte
Ballot, Caroline
Blazejewski, Caroline
Corseaux, Delphine
Lescure, Bernadette
Motterlini, Roberto
Neviere, Remi
author_facet Lancel, Steve
Montaigne, David
Marechal, Xavier
Marciniak, Camille
Hassoun, Sidi Mohamed
Decoster, Brigitte
Ballot, Caroline
Blazejewski, Caroline
Corseaux, Delphine
Lescure, Bernadette
Motterlini, Roberto
Neviere, Remi
author_sort Lancel, Steve
collection PubMed
description AIMS: Metabolic syndrome induces cardiac dysfunction associated with mitochondria abnormalities. As low levels of carbon monoxide (CO) may improve myocardial and mitochondrial activities, we tested whether a CO-releasing molecule (CORM-3) reverses metabolic syndrome-induced cardiac alteration through changes in mitochondrial biogenesis, dynamics and autophagy. METHODS AND RESULTS: Mice were fed with normal diet (ND) or high-fat diet (HFD) for twelve weeks. Then, mice received two intraperitoneal injections of CORM-3 (10 mg.kg(−1)), with the second one given 16 hours after the first. Contractile function in isolated hearts and mitochondrial parameters were evaluated 24 hours after the last injection. Mitochondrial population was explored by electron microscopy. Changes in mitochondrial dynamics, biogenesis and autophagy were assessed by western-blot and RT-qPCR. Left ventricular developed pressure was reduced in HFD hearts. Mitochondria from HFD hearts presented reduced membrane potential and diminished ADP-coupled respiration. CORM-3 restored both cardiac and mitochondrial functions. Size and number of mitochondria increased in the HFD hearts but not in the CORM-3–treated HFD group. CORM-3 modulated HFD-activated mitochondrial fusion and biogenesis signalling. While autophagy was not activated in the HFD group, CORM-3 increased the autophagy marker LC3-II. Finally, ex vivo experiments demonstrated that autophagy inhibition by 3-methyladenine abolished the cardioprotective effects of CORM-3. CONCLUSION: CORM-3 may modulate pathways controlling mitochondrial quality, thus leading to improvements of mitochondrial efficiency and HFD-induced cardiac dysfunction.
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spelling pubmed-34115692012-08-06 Carbon Monoxide Improves Cardiac Function and Mitochondrial Population Quality in a Mouse Model of Metabolic Syndrome Lancel, Steve Montaigne, David Marechal, Xavier Marciniak, Camille Hassoun, Sidi Mohamed Decoster, Brigitte Ballot, Caroline Blazejewski, Caroline Corseaux, Delphine Lescure, Bernadette Motterlini, Roberto Neviere, Remi PLoS One Research Article AIMS: Metabolic syndrome induces cardiac dysfunction associated with mitochondria abnormalities. As low levels of carbon monoxide (CO) may improve myocardial and mitochondrial activities, we tested whether a CO-releasing molecule (CORM-3) reverses metabolic syndrome-induced cardiac alteration through changes in mitochondrial biogenesis, dynamics and autophagy. METHODS AND RESULTS: Mice were fed with normal diet (ND) or high-fat diet (HFD) for twelve weeks. Then, mice received two intraperitoneal injections of CORM-3 (10 mg.kg(−1)), with the second one given 16 hours after the first. Contractile function in isolated hearts and mitochondrial parameters were evaluated 24 hours after the last injection. Mitochondrial population was explored by electron microscopy. Changes in mitochondrial dynamics, biogenesis and autophagy were assessed by western-blot and RT-qPCR. Left ventricular developed pressure was reduced in HFD hearts. Mitochondria from HFD hearts presented reduced membrane potential and diminished ADP-coupled respiration. CORM-3 restored both cardiac and mitochondrial functions. Size and number of mitochondria increased in the HFD hearts but not in the CORM-3–treated HFD group. CORM-3 modulated HFD-activated mitochondrial fusion and biogenesis signalling. While autophagy was not activated in the HFD group, CORM-3 increased the autophagy marker LC3-II. Finally, ex vivo experiments demonstrated that autophagy inhibition by 3-methyladenine abolished the cardioprotective effects of CORM-3. CONCLUSION: CORM-3 may modulate pathways controlling mitochondrial quality, thus leading to improvements of mitochondrial efficiency and HFD-induced cardiac dysfunction. Public Library of Science 2012-08-01 /pmc/articles/PMC3411569/ /pubmed/22870253 http://dx.doi.org/10.1371/journal.pone.0041836 Text en © 2012 Lancel et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Lancel, Steve
Montaigne, David
Marechal, Xavier
Marciniak, Camille
Hassoun, Sidi Mohamed
Decoster, Brigitte
Ballot, Caroline
Blazejewski, Caroline
Corseaux, Delphine
Lescure, Bernadette
Motterlini, Roberto
Neviere, Remi
Carbon Monoxide Improves Cardiac Function and Mitochondrial Population Quality in a Mouse Model of Metabolic Syndrome
title Carbon Monoxide Improves Cardiac Function and Mitochondrial Population Quality in a Mouse Model of Metabolic Syndrome
title_full Carbon Monoxide Improves Cardiac Function and Mitochondrial Population Quality in a Mouse Model of Metabolic Syndrome
title_fullStr Carbon Monoxide Improves Cardiac Function and Mitochondrial Population Quality in a Mouse Model of Metabolic Syndrome
title_full_unstemmed Carbon Monoxide Improves Cardiac Function and Mitochondrial Population Quality in a Mouse Model of Metabolic Syndrome
title_short Carbon Monoxide Improves Cardiac Function and Mitochondrial Population Quality in a Mouse Model of Metabolic Syndrome
title_sort carbon monoxide improves cardiac function and mitochondrial population quality in a mouse model of metabolic syndrome
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3411569/
https://www.ncbi.nlm.nih.gov/pubmed/22870253
http://dx.doi.org/10.1371/journal.pone.0041836
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