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Assessing Endothelial Vasodilator Function with the Endo-PAT 2000
Published on: October 16, 2010
Endothelial Protection, AT1 blockade and Cholesterol-Dependent Oxidative Stress: the EPAS trial
Henning Morawietz1, Sandra Erbs, Jürgen Holtz
1Department of Vascular Endothelium and Microcirculation, Medical Faculty Carl Gustav Carus, University of Technology Dresden, Fetscherstr. 74, D-01307 Dresden, Germany. Henning.Morawietz@tu-dresden.de
Insights
Statins and angiotensin type 1 (AT1) receptor blockers improve endothelial function and anti-atherosclerotic gene expression in patients with coronary artery disease. Combined therapy showed the greatest benefit, enhancing endothelial health.
Area of Science:
- Cardiovascular Medicine
- Pharmacology
- Molecular Biology
Background:
- Statins and AT1 receptor blockers are established cardiovascular disease treatments.
- The EPAS trial investigated their impact on endothelial gene expression and function.
- Coronary artery disease patients were studied to assess anti-atherosclerotic effects.
Purpose of the Study:
- To evaluate the independent and combined effects of statins and AT1 blockers.
- To assess therapy-driven changes in endothelial gene expression.
- To determine the impact on endothelial function in coronary artery disease patients.
Main Methods:
- Randomized trial with 60 coronary artery disease patients undergoing CABG surgery.
- Four treatment groups: control, statin, AT1 blocker, and combination therapy.
- Analysis of endothelial expression quotient (Q) in internal mammary artery biopsies.
Main Results:
- Statin therapy significantly increased the anti-atherosclerotic endothelial expression quotient (lnQ).
- AT1 blockade showed a trend towards increasing lnQ.
- Combination therapy further elevated lnQ and improved endothelial function in artery rings.
Conclusions:
- Both statin and AT1 blocker therapies independently improve endothelial gene expression and function.
- Combined therapy offers enhanced anti-atherosclerotic benefits.
- These findings support the use of combined therapy for cardiovascular protection.
Background:
Statins and angiotensin type 1 (AT1) receptor blockers reduce cardiovascular mortality and morbidity. In the Endothelial Protection, AT1 blockade and Cholesterol-Dependent Oxidative Stress (EPAS) trial, impact of independent or combined statin and AT1 receptor blocker therapy on endothelial expression of anti-atherosclerotic and proatherosclerotic genes and endothelial function in arteries of patients with coronary artery disease were tested.
Methods And Results:
Sixty patients with stable coronary artery disease undergoing elective coronary artery bypass grafting (CABG) surgery were randomized 4 weeks before surgery to: (A) control without inhibition of renin-angiotensin system or statin; (B) statin (pravastatin 40 mg/d); (C) AT1 blockade (irbesartan 150 mg/d); or (D) combination of statin and AT1 blocker in same dosages. Primary end point was a priori therapy-dependent regulation of an anti-atherosclerotic endothelial expression quotient Q including mRNA expression (in arbitrary units measured by real-time polymerase chain reaction) of endothelial nitric oxide synthase and C-type natriuretic peptide, divided by expression of oxidized low-density lipoprotein receptor LOX-1 and NAD(P)H oxidase subunit gp91phox in left internal mammary arteries biopsies obtained by CABG surgery; 49 patients completed the study. Statin therapy increased lnQ from 3.2+/-0.4 to 4.4+/-0.4 significantly versus control. AT(1) blockade showed a trend to increase lnQ to 4.2+/-0.5. Combination of statin and AT1 blocker further increased lnQ to 5.1+/-0.6, but a putative interaction of both therapies in lnQ was not significant. Furthermore, preoperative therapy with statin, AT1 blocker and their combination improved endothelial function in internal mammary artery rings.
Conclusions:
Statin and AT1 blocker therapy independently and in combination improve an anti-atherosclerotic endothelial expression quotient and endothelial function.
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