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Effects of exercise training on coronary collateralization and control of collateral resistance
Cristine L Heaps1, Janet L Parker
1Michael E. DeBakey Institute for Comparative Cardiovascular Science and Biomedical Devices, Department of Veterinary Physiology and Pharmacology, Texas A&M University, College Station, Texas 77843, USA. cheaps@cvm.tamu.edu
Insights
Exercise training may improve coronary collateral circulation in patients with coronary artery disease. This review explores how exercise impacts collateral vessel development and function, offering potential therapeutic benefits for heart disease management.
Area of Science:
- Cardiovascular Medicine
- Exercise Physiology
- Vascular Biology
Background:
- Coronary collateral vessels are crucial for supplying blood to ischemic heart muscle, especially in coronary artery disease.
- Collateral circulation varies significantly among individuals and plays a protective role in heart function.
- Therapeutic enhancement of collateral vessels is a key goal in managing coronary artery disease.
Purpose of the Study:
- To review the effects of exercise training on collateralization in the diseased heart.
- To examine exercise training's impact on vascular control in collateralized hearts.
- To identify future research directions for exercise-based cardiovascular therapies.
Main Methods:
- Literature review of studies on exercise training and coronary collateralization.
- Analysis of research investigating exercise effects on vascular endothelial and smooth muscle function.
- Synthesis of evidence regarding the role of collateralization in exercise benefits.
Main Results:
- Exercise training demonstrates therapeutic benefits in coronary artery disease patients with collateralization.
- The precise role of enhanced collateralization in mediating these benefits requires further investigation.
- Exercise influences vascular endothelial and smooth muscle control, impacting coronary tone.
Conclusions:
- Exercise training is a promising intervention for improving collateral circulation in coronary artery disease.
- Further research is needed to elucidate the cellular and molecular mechanisms involved.
- Emerging concepts in exercise and coronary artery disease may lead to novel therapeutic strategies.
Abstract:
Coronary collateral vessels serve as a natural protective mechanism to provide coronary flow to ischemic myocardium secondary to critical coronary artery stenosis. The innate collateral circulation of the normal human heart is typically minimal and considerable variability occurs in extent of collateralization in coronary artery disease patients. A well-developed collateral circulation has been documented to exert protective effects upon myocardial perfusion, contractile function, infarct size, and electrocardiographic abnormalities. Thus therapeutic augmentation of collateral vessel development and/or functional adaptations in collateral and collateral-dependent arteries to reduce resistance into the ischemic myocardium represent a desirable goal in the management of coronary artery disease. Tremendous evidence has provided documentation for the therapeutic benefits of exercise training programs in patients with coronary artery disease (and collateralization); mechanisms that underlie these benefits are numerous and multifaceted, and currently under investigation in multiple laboratories worldwide. The role of enhanced collateralization as a major beneficial contributor has not been fully resolved. This topical review highlights literature that examines the effects of exercise training on collateralization in the diseased heart, as well as effects of exercise training on vascular endothelial and smooth muscle control of regional coronary tone in the collateralized heart. Future directions for research in this area involve further delineation of cellular/molecular mechanisms involved in effects of exercise training on collateralized myocardium, as well as development of novel therapies based on emerging concepts regarding exercise training and coronary artery disease.
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