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Myocardial Mitochondrial and Contractile Function Are Preserved in Mice Lacking Adiponectin

Adiponectin deficiency leads to increased myocardial infarct size following ischemia reperfusion and to exaggerated cardiac hypertrophy following pressure overload, entities that are causally linked to mitochondrial dysfunction. In skeletal muscle, lack of adiponectin results in impaired mitochondri...

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Autores principales: Braun, Martin, Hettinger, Niko, Koentges, Christoph, Pfeil, Katharina, Cimolai, Maria C., Hoffmann, Michael M., Osterholt, Moritz, Doenst, Torsten, Bode, Christoph, Bugger, Heiko
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4364743/
https://www.ncbi.nlm.nih.gov/pubmed/25785965
http://dx.doi.org/10.1371/journal.pone.0119416
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author Braun, Martin
Hettinger, Niko
Koentges, Christoph
Pfeil, Katharina
Cimolai, Maria C.
Hoffmann, Michael M.
Osterholt, Moritz
Doenst, Torsten
Bode, Christoph
Bugger, Heiko
author_facet Braun, Martin
Hettinger, Niko
Koentges, Christoph
Pfeil, Katharina
Cimolai, Maria C.
Hoffmann, Michael M.
Osterholt, Moritz
Doenst, Torsten
Bode, Christoph
Bugger, Heiko
author_sort Braun, Martin
collection PubMed
description Adiponectin deficiency leads to increased myocardial infarct size following ischemia reperfusion and to exaggerated cardiac hypertrophy following pressure overload, entities that are causally linked to mitochondrial dysfunction. In skeletal muscle, lack of adiponectin results in impaired mitochondrial function. Thus, it was our objective to investigate whether adiponectin deficiency impairs mitochondrial energetics in the heart. At 8 weeks of age, heart weight-to-body weight ratios were not different between adiponectin knockout (ADQ(-/-)) mice and wildtypes (WT). In isolated working hearts, cardiac output, aortic developed pressure and cardiac power were preserved in ADQ(-/-) mice. Rates of fatty acid oxidation, glucose oxidation and glycolysis were unchanged between groups. While myocardial oxygen consumption was slightly reduced (-24%) in ADQ(-/-) mice in isolated working hearts, rates of maximal ADP-stimulated mitochondrial oxygen consumption and ATP synthesis in saponin-permeabilized cardiac fibers were preserved in ADQ(-/-) mice with glutamate, pyruvate or palmitoyl-carnitine as a substrate. In addition, enzymatic activity of respiratory complexes I and II was unchanged between groups. Phosphorylation of AMP-activated protein kinase and SIRT1 activity were not decreased, expression and acetylation of PGC-1α were unchanged, and mitochondrial content of OXPHOS subunits was not decreased in ADQ(-/-) mice. Finally, increasing energy demands due to prolonged subcutaneous infusion of isoproterenol did not differentially affect cardiac contractility or mitochondrial function in ADQ(-/-) mice compared to WT. Thus, mitochondrial and contractile function are preserved in hearts of mice lacking adiponectin, suggesting that adiponectin may be expendable in the regulation of mitochondrial energetics and contractile function in the heart under non-pathological conditions.
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spelling pubmed-43647432015-03-23 Myocardial Mitochondrial and Contractile Function Are Preserved in Mice Lacking Adiponectin Braun, Martin Hettinger, Niko Koentges, Christoph Pfeil, Katharina Cimolai, Maria C. Hoffmann, Michael M. Osterholt, Moritz Doenst, Torsten Bode, Christoph Bugger, Heiko PLoS One Research Article Adiponectin deficiency leads to increased myocardial infarct size following ischemia reperfusion and to exaggerated cardiac hypertrophy following pressure overload, entities that are causally linked to mitochondrial dysfunction. In skeletal muscle, lack of adiponectin results in impaired mitochondrial function. Thus, it was our objective to investigate whether adiponectin deficiency impairs mitochondrial energetics in the heart. At 8 weeks of age, heart weight-to-body weight ratios were not different between adiponectin knockout (ADQ(-/-)) mice and wildtypes (WT). In isolated working hearts, cardiac output, aortic developed pressure and cardiac power were preserved in ADQ(-/-) mice. Rates of fatty acid oxidation, glucose oxidation and glycolysis were unchanged between groups. While myocardial oxygen consumption was slightly reduced (-24%) in ADQ(-/-) mice in isolated working hearts, rates of maximal ADP-stimulated mitochondrial oxygen consumption and ATP synthesis in saponin-permeabilized cardiac fibers were preserved in ADQ(-/-) mice with glutamate, pyruvate or palmitoyl-carnitine as a substrate. In addition, enzymatic activity of respiratory complexes I and II was unchanged between groups. Phosphorylation of AMP-activated protein kinase and SIRT1 activity were not decreased, expression and acetylation of PGC-1α were unchanged, and mitochondrial content of OXPHOS subunits was not decreased in ADQ(-/-) mice. Finally, increasing energy demands due to prolonged subcutaneous infusion of isoproterenol did not differentially affect cardiac contractility or mitochondrial function in ADQ(-/-) mice compared to WT. Thus, mitochondrial and contractile function are preserved in hearts of mice lacking adiponectin, suggesting that adiponectin may be expendable in the regulation of mitochondrial energetics and contractile function in the heart under non-pathological conditions. Public Library of Science 2015-03-18 /pmc/articles/PMC4364743/ /pubmed/25785965 http://dx.doi.org/10.1371/journal.pone.0119416 Text en © 2015 Braun 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
Braun, Martin
Hettinger, Niko
Koentges, Christoph
Pfeil, Katharina
Cimolai, Maria C.
Hoffmann, Michael M.
Osterholt, Moritz
Doenst, Torsten
Bode, Christoph
Bugger, Heiko
Myocardial Mitochondrial and Contractile Function Are Preserved in Mice Lacking Adiponectin
title Myocardial Mitochondrial and Contractile Function Are Preserved in Mice Lacking Adiponectin
title_full Myocardial Mitochondrial and Contractile Function Are Preserved in Mice Lacking Adiponectin
title_fullStr Myocardial Mitochondrial and Contractile Function Are Preserved in Mice Lacking Adiponectin
title_full_unstemmed Myocardial Mitochondrial and Contractile Function Are Preserved in Mice Lacking Adiponectin
title_short Myocardial Mitochondrial and Contractile Function Are Preserved in Mice Lacking Adiponectin
title_sort myocardial mitochondrial and contractile function are preserved in mice lacking adiponectin
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4364743/
https://www.ncbi.nlm.nih.gov/pubmed/25785965
http://dx.doi.org/10.1371/journal.pone.0119416
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