Key result
Clopidogrel normalized increased phenylephrine-induced vascular contractions (133% vs 182.2%) and impaired vasodilation to acetylcholine in Ang II-treated rats without changing blood pressure.
Why the study?
Does clopidogrel improve arterial function in AngII-hypertensive rats?
Does clopidogrel improve arterial function in AngII-hypertensive rats?
Absolute Event Rate: 133% vs 182.2%
Clopidogrel improves hypertension-related vascular functional changes in AngII-infused rats independent of direct vascular P2Y12 receptor actions, suggesting a role for activated platelets in endothelial dysfunction.
Does not support clopidogrel for hypertension; leaves open platelet inhibition for human endothelial dysfunction.
The P2Y12 receptor antagonist clopidogrel blocks platelet aggregation, improves systemic endothelial nitric oxide bioavailability, and has anti-inflammatory effects. Since P2Y12 receptors have been identified in the vasculature, we hypothesized that clopidogrel ameliorates angiotensin II (Ang II) -induced vascular functional changes by blockade of P2Y12 receptors in the vasculature. Male Sprague Dawley rats were infused with Ang II (60 ng.min-1) or vehicle for 14 days. The animals were treated with clopidogrel (10mg*kg-1*day-1) or vehicle. Vascular reactivity was evaluated in second-order mesenteric arteries. Clopidogrel treatment did not change systolic blood pressure [(mmHg) control-vehicle, 117+/-7.1 vs. control- Clopidogrel, 125+/-4.2; AngII-vehicle, 197+/-10.7 vs. AngII-Clopidogrel, 198+/-5.2], but it normalized increased phenylephrine-induced vascular contractions [(%KCl) vehicle-treated, 182.2+/-18 vs. Clopidogrel, 133+/-14%), as well as impaired vasodilation to acetylcholine [(%) vehicle-treated, 71.7+/-2.2 vs. Clopidogrel, 85.3+/-2.8) in Ang II-treated animals. Vascular expression of P2Y12 receptor was determined by western blot. Pharmacological characterization of vascular P2Y12 was performed with the P2Y12 agonist 2-MeS-ADP. Although 2-MeSADP induced endothelium-dependent relaxation [(Emax %) = 71%+/-12), as well as contractile vascular responses (Emax %= 83+/-12) these actions are not mediated by P2Y12 receptor activation. 2-MeS-ADP produced similar vascular responses in control and Ang II rats. These results indicate potential effects of Clopidogrel, such as improvement of hypertension-related vascular functional changes that are not associated with direct actions of clopidogrel in the vasculature, supporting the concept that activated platelets contribute to endothelial dysfunction, possibly via impaired NO bioavailability.
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Giachini et al. (2009) studied Angiotensin II-induced hypertension. Clopidogrel vs. Vehicle was evaluated on Phenylephrine-induced vascular contractions (%KCl) in Ang II-treated animals. Clopidogrel normalized increased phenylephrine-induced vascular contractions (133% vs 182.2%) and impaired vasodilation to acetylcholine in Ang II-treated rats without changing blood pressure.
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