Failing energetics in failing hearts
- 1 May 2000
- journal article
- review article
- Published by Springer Nature in Current Cardiology Reports
- Vol. 2 (3) , 212-217
- https://doi.org/10.1007/s11886-000-0071-9
Abstract
The perpetual and vigorous nature of heart muscle work requires efficient myocardial energetics. This depends not only on adequate ATP production, but also on efficient delivery of ATP to muscle ATPases and rapid removal of ADP and other by-products of ATP hydrolysis. Indeed, recent evidence indicates that defects in communication between ATP-producing and ATP-consuming cellular sites are a major factor contributing to energetic deficiency in heart failure. In particular, the failing myocardium is characterized by reduced catalytic activity of creatine kinase, adenylate kinase, carbonic anhydrase, and glycolytic enzymes, which collectively facilitate ATP delivery and promote removal of ADP, Pi, and H+ from cellular ATPases. Although energy transfer through adenylate kinase and glycolytic enzymes has been recognized as an adaptive mechanism supporting compromised muscle energetics, in the failing myocardium the total compensatory potential of these systems is diminished. A gradual accumulation of defects at various steps in myocardial energetic signaling, along with compromised compensatory mechanisms, precipitates failure of the whole cardiac energetic system, ultimately contributing to myocardial dysfunction. These advances in our understanding of the molecular bioenergetics in heart failure provide a new perspective toward improving the energetic balance of the failing myocardium.Keywords
This publication has 54 references indexed in Scilit:
- Octamer-dimer Transitions of Mitochondrial Creatine Kinase in Heart DiseaseJournal of Molecular and Cellular Cardiology, 1999
- Intermittent Ischemia: Energy Metabolism, Cellular Volume Regulation, Adenosine and Insights into PreconditioningJournal of Molecular and Cellular Cardiology, 1997
- The Release of Cytochrome c from Mitochondria: A Primary Site for Bcl-2 Regulation of ApoptosisScience, 1997
- Regulation of myocardial carbohydrate metabolism under normal and ischaemic conditionsPotential for pharmacological interventionsPublished by Oxford University Press (OUP) ,1997
- Reduction of Myocardial Myoglobin in Bovine Dilated CardiomyopathyJournal of Molecular and Cellular Cardiology, 1997
- Suppression of Creatine Kinase-catalyzed Phosphotransfer Results in Increased Phosphoryl Transfer by Adenylate Kinase in Intact Skeletal MuscleJournal of Biological Chemistry, 1996
- Myocardial Ca2+- and ATP-cycling imbalances in end-stage dilated and ischemic cardiomyopathiesCardiovascular Research, 1995
- Myocardial adenine nucleotide concentrations and myocardial norepinephrine content in patients with heart failure secondary to idiopathic dilated or ischemic cardiomyopathyThe American Journal of Cardiology, 1992
- Energy metabolism in preconditioned and control myocardium: Effect of total ischemiaJournal of Molecular and Cellular Cardiology, 1991
- Glycolysis in heart failure: a31P-NMR and surface fluorometry studyBasic Research in Cardiology, 1990