NLRP3 Inflammasome Mediates Aldosterone-Induced Vascular Damage

Author:

Bruder-Nascimento Thiago1,Ferreira Nathanne S.1,Zanotto Camila Z.1,Ramalho Fernanda1,Pequeno Isabela O.1,Olivon Vania C.1,Neves Karla B.1,Alves-Lopes Rheure1,Campos Eduardo1,Silva Carlos Alberto A.1,Fazan Rubens1,Carlos Daniela1,Mestriner Fabiola L.1,Prado Douglas1,Pereira Felipe V.1,Braga Tarcio1,Luiz Joao Paulo M.1,Cau Stefany B.1,Elias Paula C.1,Moreira Ayrton C.1,Câmara Niels O.1,Zamboni Dario S.1,Alves-Filho Jose Carlos1,Tostes Rita C.1

Affiliation:

1. From Department of Pharmacology (T.B.-N., N.S.F., C.Z.Z., F.R., I.O.P., V.C.O., K.B.N., R.A.-L., E.C., F.L.M., D.P., J.P.M.L., J.C.A.F., R.C.T.), Department of Physiology (C.A.A.S., R.F.), Department of Biochemistry and Immunology (D.C.), Department of Clinical Medicine, Division of Endocrinology (P.C.E., A.C.M.), and Department of Cell and Molecular Biology (D.S.Z.), Ribeirao Preto Medical School, University of Sao Paulo, Ribeirao Preto, SP, Brazil; Department of Immunology, Institute of Biomedical...

Abstract

Background: Inflammation is a key feature of aldosterone-induced vascular damage and dysfunction, but molecular mechanisms by which aldosterone triggers inflammation remain unclear. The NLRP3 inflammasome is a pivotal immune sensor that recognizes endogenous danger signals triggering sterile inflammation. Methods: We analyzed vascular function and inflammatory profile of wild-type (WT), NLRP3 knockout ( NLRP3 −/− ), caspase-1 knockout ( Casp-1 −/− ), and interleukin-1 receptor knockout ( IL-1R −/− ) mice treated with vehicle or aldosterone (600 µg·kg −1 ·d −1 for 14 days through osmotic mini-pump) while receiving 1% saline to drink. Results: Here, we show that NLRP3 inflammasome plays a central role in aldosterone-induced vascular dysfunction. Long-term infusion of aldosterone in mice resulted in elevation of plasma interleukin-1β levels and vascular abnormalities. Mice lacking the IL-1R or the inflammasome components NLRP3 and caspase-1 were protected from aldosterone-induced vascular damage. In vitro, aldosterone stimulated NLRP3-dependent interleukin-1β secretion by bone marrow–derived macrophages by activating nuclear factor-κB signaling and reactive oxygen species generation. Moreover, chimeric mice reconstituted with NLRP3-deficient hematopoietic cells showed that NLRP3 in immune cells mediates aldosterone-induced vascular damage. In addition, aldosterone increased the expression of NLRP3, active caspase-1, and mature interleukin-1β in human peripheral blood mononuclear cells. Hypertensive patients with hyperaldosteronism or normal levels of aldosterone exhibited increased activity of NLRP3 inflammasome, suggesting that the effect of hyperaldosteronism on the inflammasome may be mediated through high blood pressure. Conclusions: Together, these data demonstrate that NLRP3 inflammasome, through activation of IL-1R, is critically involved in the deleterious vascular effects of aldosterone, placing NLRP3 as a potential target for therapeutic interventions in conditions with high aldosterone levels.

Publisher

Ovid Technologies (Wolters Kluwer Health)

Subject

Physiology (medical),Cardiology and Cardiovascular Medicine

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