Lacidipine Inhibits Adhesion Molecule and Oxidase Expression Independent of Blood Pressure Reduction in Angiotensin-Induced Vascular Injury

Author:

Park Joon-Keun1,Fiebeler Anette1,Muller Dominik N.1,Mervaala Eero M.A.1,Dechend Ralf1,Abou-Rebyeh Faikah1,Luft Friedrich C.1,Haller Hermann1

Affiliation:

1. Department of Nephrology, Medical School Hannover (J-K.P., A.F., F.A-R., H.H.), Germany; Franz Volhard Clinic, Medical Faculty of the Charité, Humboldt University of Berlin (D.N.M., R.D., F.C.L.), Germany; Institute of Biomedicine, University of Helsinki (E.M.A.M.), Finland.

Abstract

Dihydropyridines can inhibit gene expression in-vitro and may have a protective vascular effect independent of blood pressure reduction. We tested the hypothesis that lacidipine prevents induction of inducible NO synthase (iNOS), influences leukocyte adhesion and infiltration, inhibits nuclear factor (NF)-κB transcription factor activity, and ameliorates end-organ damage in a transgenic rat model of angiotensin (Ang) II–dependent organ sclerosis. We treated rats transgenic for human renin and angiotensinogen (dTGR) from week 4 to 7 with lacidipine (0.3 or 3 mg/kg by gavage). Blood pressure was measured by tail cuff. Organ damage was assessed by histology and immunohistochemistry. Adhesion molecules and cytokines were analyzed by immunohistochemistry. Transcription factors were analyzed by mobility shift assays. Untreated dTGR developed moderate hypertension, cardiac hypertrophy, and severe renal damage with albuminuria. Lacidipine decreased blood pressure slightly at the low dose and substantially at the higher dose. However, both treatments reduced albuminuria and plasma creatinine to the same degree ( P <0.05). Intercellular adhesion molecule-1 (ICAM-1) was markedly reduced by lacidipine as well as renal neutrophil and monocyte infiltration. Lacidipine reduced mitogen-activated protein (MAP) kinase phosphorylation and iNOS expression in both cortex and medulla. NF-κB and AP-1 were activated in dTGR but reduced by lacidipine. Lacidipine ameliorates Ang II-induced end-organ damage independent of blood pressure lowering, perhaps by inhibiting the MAP kinase pathway and NF-κB activation.

Publisher

Ovid Technologies (Wolters Kluwer Health)

Subject

Internal Medicine

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