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Assessing Endothelial Vasodilator Function with the Endo-PAT 2000
Published on: October 16, 2010
Coronary vasomotor response to acetylcholine relates to risk factors for coronary artery disease
J A Vita1, C B Treasure, E G Nabel
1Department of Medicine, Brigham and Women's Hospital, Boston, Massachusetts 02115.
Insights
Coronary artery disease risk factors are linked to impaired endothelial function. Acetylcholine
Area of Science:
- Cardiovascular Medicine
- Endothelial Function Research
- Vascular Biology
Background:
- Acetylcholine's effect on arteries varies with health conditions, indicating endothelial cell function.
- In patients with smooth coronary arteries, acetylcholine can cause both dilation and constriction.
- Endothelial dysfunction is a key factor in cardiovascular disease development.
Purpose of the Study:
- To investigate the relationship between coronary artery disease risk factors and acetylcholine's vascular response.
- To determine if endothelial function, assessed via acetylcholine infusion, correlates with cardiovascular risk profiles.
Main Methods:
- Acetylcholine was infused into coronary arteries of 34 patients with smooth coronary arteries.
- Quantitative angiography assessed coronary artery diameter changes in response to acetylcholine.
- Statistical analysis, including stepwise regression, identified associations between risk factors and acetylcholine response.
Main Results:
- Acetylcholine response varied widely, from significant dilation to marked constriction.
- Nitroglycerin induced vasodilation in all patients, confirming normal smooth muscle function.
- Serum cholesterol, male gender, family history, age, and number of risk factors were independently associated with acetylcholine response.
Conclusions:
- Coronary risk factors correlate with a loss of endothelium-dependent vasodilation.
- Acetylcholine-induced vasoconstriction may indicate early endothelial dysfunction preceding or marking sub-angiographic atherosclerosis.
Abstract:
In animals, acetylcholine dilates normal arteries and produces vasoconstriction in the presence of hypercholesterolemia, hypertension, or atherosclerosis, reflecting endothelial cell dysfunction. In patients with angiographically smooth coronary arteries, acetylcholine has been reported to produce both vasodilation and constriction. To test the hypothesis that the acetylcholine response relates to risk factors for coronary artery disease, acetylcholine 10(-8) to 10(-6) M was infused into the left anterior descending or circumflex coronary artery, and diameter changes were assessed with quantitative angiography in 34 patients with angiographically smooth coronary arteries. The acetylcholine response ranged from +37% (dilation) to -53% (constriction) at the peak acetylcholine dose. All coronary arteries dilated in response to nitroglycerin (26 +/- 17%), suggesting an abnormality of endothelial function in the patients with a constrictor response to acetylcholine. By multiple stepwise regression analysis, serum cholesterol (p less than 0.01), male gender (p less than 0.001), family history (p less than 0.05), age (p less than 0.05), cholesterol level (p less than 0.01), and total number of risk factors (p less than 0.0001) were independently associated with the acetylcholine response. Thus, coronary risk factors are associated with loss of endothelium-dependent vasodilation. The development of vasoconstriction is likely to be an abnormality of endothelial function that precedes atherosclerosis or an early marker of atherosclerosis not detectable by angiography.
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