Energetics and metabolism in the failing heart: important but poorly understood.
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Metabolic shifts during aging and pathologyDetermination of Fatty Acid Metabolism with Dynamic [11C]Palmitate Positron Emission Tomography of Mouse Heart In Vivo.Prevalence and clinical impact of iron deficiency and anaemia among outpatients with chronic heart failure: The PrEP Registry.Regulation of pyruvate metabolism and human diseaseIncreased expression of fatty-acid and calcium metabolism genes in failing human heart.Impaired transcriptional response of the murine heart to cigarette smoke in the setting of high fat diet and obesity.In vivo assessment of cardiac metabolism and function in the abdominal aortic banding model of compensated cardiac hypertrophyFatty Acid Oxidation and Cardiovascular Risk during Menopause: A Mitochondrial Connection?Abnormal Glucose Tolerance Is Associated with a Reduced Myocardial Metabolic Flexibility in Patients with Dilated CardiomyopathyMetabolic inflexibility: when mitochondrial indecision leads to metabolic gridlock.Iron deficiency and heart failure: diagnostic dilemmas and therapeutic perspectives.Advances in the Study of Heart Development and Disease Using Zebrafish.Comparative differential proteomic profiles of nonfailing and failing hearts after in vivo thoracic aortic constriction in mice overexpressing FKBP12.6.Metabolic gene expression profile in circulating mononuclear cells reflects obesity-associated metabolic inflexibility.Rethinking Heart Failure.Mitochondrial diseases and the heart: an overview of molecular basis, diagnosis, treatment and clinical course.Metabolic remodeling in chronic heart failure.Effect of Moderate Exercise on Mitochondrial Proteome in Heart Tissue of Spontaneous Hypertensive Rats.Dynamic adaptation of myocardial proteome during heart failure developmentOrgan protective mechanisms common to extremes of physiology: a window through hibernation biology.Suicidal erythrocyte death, eryptosis, as a novel mechanism in heart failure-associated anaemia.Mitophagy and Mitochondrial Quality Control Mechanisms in the Heart.Prenatal exposure to bisphenol A at the reference dose impairs mitochondria in the heart of neonatal rats.Mouse strain differences in metabolic fluxes and function of ex vivo working hearts.Plasma acylcarnitine concentrations reflect the acylcarnitine profile in cardiac tissues.Combination of angiotensin II and l-NG-nitroarginine methyl ester exacerbates mitochondrial dysfunction and oxidative stress to cause heart failure.Dioxygen and Metabolism; Dangerous Liaisons in Cardiac Function and Disease.
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P2860
Energetics and metabolism in the failing heart: important but poorly understood.
description
article científic
@ca
article scientifique
@fr
articolo scientifico
@it
artigo científico
@pt
bilimsel makale
@tr
scientific article published on July 2010
@en
vedecký článok
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vetenskaplig artikel
@sv
videnskabelig artikel
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vědecký článek
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name
Energetics and metabolism in the failing heart: important but poorly understood.
@en
Energetics and metabolism in the failing heart: important but poorly understood.
@nl
type
label
Energetics and metabolism in the failing heart: important but poorly understood.
@en
Energetics and metabolism in the failing heart: important but poorly understood.
@nl
prefLabel
Energetics and metabolism in the failing heart: important but poorly understood.
@en
Energetics and metabolism in the failing heart: important but poorly understood.
@nl
P2093
P2860
P1476
Energetics and metabolism in the failing heart: important but poorly understood.
@en
P2093
Aslan T Turer
Christopher B Newgard
Craig R Malloy
P2860
P304
P356
10.1097/MCO.0B013E32833A55A5
P577
2010-07-01T00:00:00Z