Literature DB >> 16443782

Increased myocardial oxygen consumption reduces cardiac efficiency in diabetic mice.

Ole-Jakob How1, Ellen Aasum, David L Severson, W Y Anna Chan, M Faadiel Essop, Terje S Larsen.   

Abstract

Altered cardiac metabolism and function (diabetic cardiomyopathy) has been observed in diabetes. We hypothesize that cardiac efficiency, the ratio of cardiac work (pressure-volume area [PVA]) and myocardial oxygen consumption (MVo(2)), is reduced in diabetic hearts. Experiments used ex vivo working hearts from control db/+, db/db (type 2 diabetes), and db/+ mice given streptozotocin (STZ; type 1 diabetes). PVA and ventricular function were assessed with a 1.4-F pressure-volume catheter at low (0.3 mmol/l) and high (1.4 mmol/l) fatty acid concentrations with simultaneous measurements of MVo(2). Substrate oxidation and mitochondrial respiration were measured in separate experiments. Diabetic hearts showed decreased cardiac efficiency, revealed as an 86 and 57% increase in unloaded MVo(2) in db/db and STZ-administered hearts, respectively. The slope of the PVA-MVo(2) regression line was increased for db/db hearts after elevation of fatty acids, suggesting that contractile inefficiency could also contribute to the overall reduction in cardiac efficiency. The end-diastolic and end-systolic pressure-volume relationships in db/db hearts were shifted to the left with elevated end-diastolic pressure, suggesting left ventricular remodeling and/or myocardial stiffness. Thus, by means of pressure-volume technology, we have for the first time documented decreased cardiac efficiency in diabetic hearts caused by oxygen waste for noncontractile purposes.

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Year:  2006        PMID: 16443782     DOI: 10.2337/diabetes.55.02.06.db05-1164

Source DB:  PubMed          Journal:  Diabetes        ISSN: 0012-1797            Impact factor:   9.461


  74 in total

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4.  Myocardial twitch duration and the dependence of oxygen consumption on pressure-volume area: experiments and modelling.

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Review 8.  Cardiac dysfunction and oxidative stress in the metabolic syndrome: an update on antioxidant therapies.

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9.  Restoring redox balance enhances contractility in heart trabeculae from type 2 diabetic rats exposed to high glucose.

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Review 10.  Animal models of insulin resistance and heart failure.

Authors:  Mauricio Velez; Smita Kohli; Hani N Sabbah
Journal:  Heart Fail Rev       Date:  2014-01       Impact factor: 4.214

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