Chronic endothelin receptor antagonism attenuated the decrease in plasma NOx (-28.2% and -38.9% vs -74.8%) and preserved coronary endothelial function in experimental porcine hypercholesterolemia.
RCT (n=23)
Randomized to 3 groups
Does chronic endothelin receptor antagonism preserve coronary endothelial function and increase nitric oxide in experimental porcine hypercholesterolemia?
Chronic endothelin receptor antagonism preserves coronary endothelial function and nitric oxide activity in a porcine model of hypercholesterolemia.
Absolute Event Rate: -28.2% vs -74.8%
Hypercholesterolemia is associated with increased circulating and tissue endothelin-1 immunoreactivity, decreased nitric oxide (NO) activity, and altered endothelial function. We tested the hypothesis that chronic endothelin receptor antagonism preserves endothelial function and increases NO in experimental porcine hypercholesterolemia. Pigs were randomized to 3 groups: Group 1, a 2% high-cholesterol (HC) diet alone (n=7); group 2, RO-48-5695, a combined endothelin receptor antagonist, and an HC diet (n=8); and group 3, ABT-627, a selective endothelin-A receptor antagonist, and an HC diet (n=8). Coronary epicardial and arteriolar endothelial function was determined by a dose-response relaxation to bradykinin (10(-11) to 10(-6) mol/L), in all groups and in pigs maintained on a normal diet. Plasma total oxidized products of NO (NO(x)) were determined by chemiluminescence at baseline and after 12 weeks. Bradykinin-stimulated coronary epicardial and arteriolar relaxation in group 1 was attenuated compared with normal-diet controls. This relaxation was normalized with endothelin receptor antagonism. Plasma NO(x) decreased after 12 weeks in group 1 (-74.8+/-5.5%). This decrease was attenuated in the endothelin receptor antagonist groups (group 2, -28.2+/-15.0%; group 3, -38.9+/-20.6%). Chronic endothelin receptor antagonism preserves coronary endothelial function and increases NO in hypercholesterolemia. This study supports a role of endothelin-1 in the regulation of NO activity and suggests a possible therapeutic role for endothelin receptor antagonists in hypercholesterolemia.
Best et al. (Mon,) conducted a rct in Experimental porcine hypercholesterolemia (n=23). RO-48-5695 (combined endothelin receptor antagonist) or ABT-627 (selective endothelin-A receptor antagonist) vs. High-cholesterol diet alone was evaluated on Decrease in plasma total oxidized products of NO (NOx) at 12 weeks. Chronic endothelin receptor antagonism attenuated the decrease in plasma NOx (-28.2% and -38.9% vs -74.8%) and preserved coronary endothelial function in experimental porcine hypercholesterolemia.
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