Mechanisms in endocrinology: diabetic cardiomyopathy: pathophysiology and potential metabolic interventions state of the art review

Heart failure is a major cause of morbidity and mortality in type 2 diabetes. Type 2 diabetes contributes to the development of heart failure through a variety of mechanisms, including disease-specific myocardial structural, functional and metabolic changes. This review will focus on the contemporar...

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Main Authors: Levelt, E, Gulsin, G, Neubauer, S, McCann, G
Format: Journal article
Language:English
Published: BioScientifica 2018
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author Levelt, E
Gulsin, G
Neubauer, S
McCann, G
author_facet Levelt, E
Gulsin, G
Neubauer, S
McCann, G
author_sort Levelt, E
collection OXFORD
description Heart failure is a major cause of morbidity and mortality in type 2 diabetes. Type 2 diabetes contributes to the development of heart failure through a variety of mechanisms, including disease-specific myocardial structural, functional and metabolic changes. This review will focus on the contemporary contributions of state of the art non-invasive technologies to our understanding of diabetic cardiomyopathy, including data on cardiac disease phenotype, cardiac energy metabolism and energetic deficiency, ectopic and visceral adiposity, diabetic liver disease, metabolic modulation strategies and cardiovascular outcomes with new classes of glucose-lowering therapies.
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spelling oxford-uuid:9664367d-a0b8-4504-a2b9-6bf402f859042022-03-26T23:52:39ZMechanisms in endocrinology: diabetic cardiomyopathy: pathophysiology and potential metabolic interventions state of the art reviewJournal articlehttp://purl.org/coar/resource_type/c_dcae04bcuuid:9664367d-a0b8-4504-a2b9-6bf402f85904EnglishSymplectic Elements at OxfordBioScientifica2018Levelt, EGulsin, GNeubauer, SMcCann, GHeart failure is a major cause of morbidity and mortality in type 2 diabetes. Type 2 diabetes contributes to the development of heart failure through a variety of mechanisms, including disease-specific myocardial structural, functional and metabolic changes. This review will focus on the contemporary contributions of state of the art non-invasive technologies to our understanding of diabetic cardiomyopathy, including data on cardiac disease phenotype, cardiac energy metabolism and energetic deficiency, ectopic and visceral adiposity, diabetic liver disease, metabolic modulation strategies and cardiovascular outcomes with new classes of glucose-lowering therapies.
spellingShingle Levelt, E
Gulsin, G
Neubauer, S
McCann, G
Mechanisms in endocrinology: diabetic cardiomyopathy: pathophysiology and potential metabolic interventions state of the art review
title Mechanisms in endocrinology: diabetic cardiomyopathy: pathophysiology and potential metabolic interventions state of the art review
title_full Mechanisms in endocrinology: diabetic cardiomyopathy: pathophysiology and potential metabolic interventions state of the art review
title_fullStr Mechanisms in endocrinology: diabetic cardiomyopathy: pathophysiology and potential metabolic interventions state of the art review
title_full_unstemmed Mechanisms in endocrinology: diabetic cardiomyopathy: pathophysiology and potential metabolic interventions state of the art review
title_short Mechanisms in endocrinology: diabetic cardiomyopathy: pathophysiology and potential metabolic interventions state of the art review
title_sort mechanisms in endocrinology diabetic cardiomyopathy pathophysiology and potential metabolic interventions state of the art review
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AT gulsing mechanismsinendocrinologydiabeticcardiomyopathypathophysiologyandpotentialmetabolicinterventionsstateoftheartreview
AT neubauers mechanismsinendocrinologydiabeticcardiomyopathypathophysiologyandpotentialmetabolicinterventionsstateoftheartreview
AT mccanng mechanismsinendocrinologydiabeticcardiomyopathypathophysiologyandpotentialmetabolicinterventionsstateoftheartreview