Nitro-Oleic Acid Inhibits Angiotensin II–Induced Hypertension

Author:

Zhang Jifeng1,Villacorta Luis1,Chang Lin1,Fan Zhenzhen1,Hamblin Milton1,Zhu Tianqing1,Chen Chen S.1,Cole Marsha P.1,Schopfer Francisco J.1,Deng Cheri X.1,Garcia-Barrio Minerva T.1,Feng Ying-Hong1,Freeman Bruce A.1,Chen Y. Eugene1

Affiliation:

1. From the Cardiovascular Center (J.Z., L.V., L.C., M.H., T.Z., Y.E.C.); and Department of Biomedical Engineering (Z.F., C.X.D.), College of Engineering, University of Michigan; Department of Pharmacology & Chemical Biology (C.S.C., M.P.C., F.J.S., B.A.F.), University of Pittsburgh, Pa; Cardiovascular Research Institute (M.T.G.-B.), Morehouse School of Medicine, Atlanta, Ga; and Department of Pharmacology (Y.-H.F.), Uniformed Services University of the Health Sciences, Bethesda, Md.

Abstract

Rationale: Nitro-oleic acid (OA-NO 2 ) is a bioactive, nitric-oxide derived fatty acid with physiologically relevant vasculoprotective properties in vivo. OA-NO 2 exerts cell signaling actions as a result of its strong electrophilic nature and mediates pleiotropic cell responses in the vasculature. Objective: The present study sought to investigate the protective role of OA-NO 2 in angiotensin (Ang) II–induced hypertension. Methods and Results: We show that systemic administration of OA-NO 2 results in a sustained reduction of Ang II–induced hypertension in mice and exerts a significant blood pressure lowering effect on preexisting hypertension established by Ang II infusion. OA-NO 2 significantly inhibits Ang II contractile response as compared to oleic acid (OA) in mesenteric vessels. The improved vasoconstriction is specific for the Ang II type 1 receptor (AT 1 R)-mediated signaling because vascular contraction by other G-protein–coupled receptors is not altered in response to OA-NO 2 treatment. From the mechanistic viewpoint, OA-NO 2 lowers Ang II–induced hypertension independently of peroxisome proliferation-activated receptor (PPAR)γ activation. Rather, OA-NO 2 , but not OA, specifically binds to the AT 1 R, reduces heterotrimeric G-protein coupling, and inhibits IP 3 (inositol-1,4,5-trisphosphate) and calcium mobilization, without inhibiting Ang II binding to the receptor. Conclusions: These results demonstrate that OA-NO 2 diminishes the pressor response to Ang II and inhibits AT 1 R-dependent vasoconstriction, revealing OA-NO 2 as a novel antagonist of Ang II–induced hypertension.

Publisher

Ovid Technologies (Wolters Kluwer Health)

Subject

Cardiology and Cardiovascular Medicine,Physiology

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