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Published on: December 23, 2014
Acute and chronic angiotensin-1 receptor antagonism reverses endothelial dysfunction in atherosclerosis
A Prasad1, T Tupas-Habib, W H Schenke
1Cardiology Branch, Office of Biostatistics Research, National Heart, Lung, and Blood Institute, National Institutes of Health, Bethesda, MD, USA.
Insights
Angiotensin-1 (AT(1)) receptor inhibition with losartan improved endothelial dysfunction in atherosclerosis patients by enhancing nitric oxide availability. This suggests AT(1) receptor blockade may offer therapeutic benefits for atherosclerosis.
Area of Science:
- Cardiovascular Medicine
- Pharmacology
- Vascular Biology
Background:
- The renin-angiotensin system plays a role in atherogenesis by promoting endothelial dysfunction.
- Angiotensin-1 (AT(1)) receptor blockade is investigated for its potential to improve endothelial function.
Purpose of the Study:
- To determine if AT(1) receptor inhibition improves endothelial dysfunction in patients with atherosclerosis.
- To assess the impact of losartan on microvascular responses and vasodilation.
Main Methods:
- Microvascular responses to vasoactive agents were studied in patients with atherosclerosis and controls before and after intra-arterial losartan.
- Flow-mediated brachial artery vasodilation was assessed using ultrasound after 8 weeks of oral losartan therapy.
- Serum nitric oxide levels were measured.
Main Results:
- Intra-arterial losartan inhibited angiotensin II-mediated vasoconstriction and augmented acetylcholine-induced vasodilation in patients.
- Oral losartan therapy improved flow-mediated brachial artery dilation and increased serum nitric oxide levels.
- Responses to reactive hyperemia were enhanced, while sodium nitroprusside and nitroglycerin responses remained unchanged.
Conclusions:
- AT(1) receptor inhibition reverses endothelial dysfunction in atherosclerosis patients.
- Improved nitric oxide availability is a key mechanism for the observed benefits.
- AT(1) receptor blockade may hold long-term therapeutic potential for atherosclerosis.
Background:
The renin-angiotensin system may contribute to atherogenesis through the promotion of endothelial dysfunction. The present study was performed to determine whether angiotensin-1 (AT(1)) receptor inhibition improves endothelial dysfunction.
Methods And Results:
In the femoral circulation of 19 patients with atherosclerosis and of 9 control subjects, we studied microvascular responses to reactive hyperemia, angiotensin II, acetylcholine, and sodium nitroprusside before and after the administration of intra-arterial losartan (10 mg). Femoral artery flow velocity was measured with a Doppler flow wire, and the femoral vascular resistance index (FVRI) was calculated as mean arterial pressure divided by flow velocity. Losartan induced a minor (5.9+/-2%, P=0. 02) reduction in FVRI and inhibited angiotensin II-mediated vasoconstriction in both patient groups (P<0.01). After the administration of losartan, acetylcholine-mediated vasodilation was augmented in patients (44+/-5% to 58+/-4% reduction in FVRI with infusion at a rate of 150 microgram/min, P<0.001) but not control subjects. Vasodilation during reactive hyperemia was also greater after AT(1) receptor inhibition (P=0.03) in patients, but the response to sodium nitroprusside remained unchanged. In a separate group of 31 patients with atherosclerosis, we investigated the effect of 8 weeks of oral losartan therapy on brachial artery flow-mediated vasodilation with the use of high-resolution ultrasound. Oral losartan therapy improved flow-mediated brachial artery dilation (1.4+/-0.9% to 3.2+/-0.8%, P=0.03) but had no effect on the nitroglycerin response. Serum nitrogen oxide levels increased from 21.6+/-1.7 to 26.7+/-2.4 micromol/L (P=0.008).
Conclusions:
The results of the present study indicate that inhibition of the AT(1) receptor in patients with atherosclerosis reverses endothelial dysfunction by improving NO availability and therefore may have long-term therapeutic benefits.
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