Blockade of PAR‐1 Signaling Attenuates Cardiac Hypertrophy and Fibrosis in Renin‐Overexpressing Hypertensive Mice

Author:

Yokono Yoshikazu1,Hanada Kenji1,Narita Masato1,Tatara Yota2,Kawamura Yousuke1,Miura Naotake1,Kitayama Kazutaka1,Nakata Masamichi1,Nozaka Masashi1,Kato Tomo1,Kudo Natsumi1,Tsushima Michiko1,Toyama Yuichi1,Itoh Ken3,Tomita Hirofumi1ORCID

Affiliation:

1. Department of Cardiology and Nephrology Hirosaki University Graduate School of Medicine Hirosaki Japan

2. Department of Glycotechnology Center for Advanced Medical Research Hirosaki University Graduate School of Medicine Hirosaki Japan

3. Department of Stress Response Science Center for Advanced Medical Research Hirosaki University Graduate School of Medicine Hirosaki Japan

Abstract

Background Although PAR‐1 (protease‐activated receptor‐1) exerts important functions in the pathophysiology of the cardiovascular system, the role of PAR ‐1 signaling in heart failure development remains largely unknown. We tested the hypothesis that PAR ‐1 signaling inhibition has protective effects on the progression of cardiac remodeling induced by chronic renin–angiotensin system activation using renin‐overexpressing hypertensive (Ren‐Tg) mice. Methods and Results We treated 12‐ to 16‐week‐old male wild‐type ( WT ) mice and Ren‐Tg mice with continuous subcutaneous infusion of the PAR ‐1 antagonist SCH 79797 or vehicle for 4 weeks. The thicknesses of interventricular septum and the left ventricular posterior wall were greater in Ren‐Tg mice than in WT mice, and SCH 79797 treatment significantly decreased these thicknesses in Ren‐Tg mice. The cardiac fibrosis area and monocyte/macrophage deposition were greater in Ren‐Tg mice than in WT mice, and both conditions were attenuated by SCH 79797 treatment. Cardiac mRNA expression levels of PAR ‐1, TNF‐α (tumor necrosis factor‐α), TGF‐β1 (transforming growth factor‐β1), and COL3A1 (collagen type 3 α1 chain) and the ratio of β‐myosin heavy chain (β‐ MHC ) to α‐ MHC were all greater in Ren‐Tg mice than in WT mice; SCH 79797 treatment attenuated these increases in Ren‐Tg mice. Prothrombin fragment 1+2 concentration and factor Xa in plasma were greater in Ren‐Tg mice than in WT mice, and both conditions were unaffected by SCH 79797 treatment. In isolated cardiac fibroblasts, both thrombin and factor Xa enhanced ERK1/2 (extracellular signal‐regulated kinase 1/2) phosphorylation, and SCH 79797 pretreatment abolished this enhancement. Furthermore, gene expression of PAR ‐1, TGF ‐β1, and COL 3A1 were enhanced by factor Xa, and all were inhibited by SCH 79797. Conclusions The results indicate that PAR ‐1 signaling is involved in cardiac remodeling induced by renin–angiotensin system activation, which may provide a novel therapeutic target for heart failure.

Publisher

Ovid Technologies (Wolters Kluwer Health)

Subject

Cardiology and Cardiovascular Medicine

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