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Effects of supplemental oxygen administration on coronary blood flow in patients undergoing cardiac catheterization
Patrick H McNulty1, Nicholas King, Sofia Scott
1Department of Medicine, Pennsylvania State College of Medicine, Milton S. Hershey Medical Center, Hershey, Pennsylvania 17033, USA. pmcnulty@psu.edu <pmcnulty@psu.edu>
Insights
Supplemental oxygen therapy in heart disease patients significantly increases coronary vascular resistance and reduces coronary blood flow. This effect may stem from nitric oxide (NO) degradation in the coronary microcirculation.
Area of Science:
- Cardiology
- Vascular Physiology
- Medical Research
Background:
- Supplemental oxygen is common for heart disease patients.
- Oxygen's impact on coronary circulation is not fully understood.
- Vasoactive properties of oxygen are known in other vascular beds.
Purpose of the Study:
- To investigate the effects of supplemental oxygen on coronary blood flow (CBF) in patients with coronary heart disease.
- To determine if 100% oxygen affects coronary vascular resistance and nitric oxide (NO) metabolism.
Main Methods:
- 18 patients with stable coronary heart disease were studied during cardiac catheterization.
- Coronary blood flow, conduit coronary diameter, and NO metabolites were measured.
- Effects of breathing 100% oxygen versus room air on CBF response to acetylcholine and adenosine were assessed.
Main Results:
- Breathing 100% oxygen increased coronary resistance by ~40% and decreased CBF by ~30%.
- Oxygen breathing blunted the CBF response to acetylcholine (endothelium-dependent) but not adenosine (endothelium-independent).
- Increased nitrotyrosine in coronary venous plasma suggests NO oxidative quenching.
Conclusions:
- Supplemental oxygen administration significantly increases coronary vascular resistance in patients with coronary heart disease.
- The mechanism may involve oxidative degradation of nitric oxide (NO) in the coronary microcirculation.
- These findings highlight potential risks of supplemental oxygen in cardiac patients.
Abstract:
Patients with heart disease are frequently treated with supplemental oxygen. Although oxygen can exhibit vasoactive properties in many vascular beds, its effects on the coronary circulation have not been fully characterized. To examine whether supplemental oxygen administration affects coronary blood flow (CBF) in a clinical setting, we measured in 18 patients with stable coronary heart disease the effects of breathing 100% oxygen by face mask for 15 min on CBF (via coronary Doppler flow wire), conduit coronary diameter, CBF response to intracoronary infusion of the endothelium-dependent dilator ACh and to the endothelium-independent dilator adenosine, as well as arterial and coronary venous concentrations of the nitric oxide (NO) metabolites nitrotyrosine, NO(2)(-), and NO(3)(-). Relative to breathing room air, breathing of 100% oxygen increased coronary resistance by approximately 40%, decreased CBF by approximately 30%, increased the appearance of nitrotyrosine in coronary venous plasma, and significantly blunted the CBF response to ACh. Oxygen breathing elicited these changes without affecting the diameter of large-conduit coronary arteries, coronary venous concentrations of NO(2)(-) and NO(3)(-), or the coronary vasodilator response to adenosine. Administering supplemental oxygen to patients undergoing cardiac catheterization substantially increases coronary vascular resistance by a mechanism that may involve oxidative quenching of NO within the coronary microcirculation.
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