A Selective Matrix Metalloproteinase-12 Inhibitor Retards Atherosclerotic Plaque Development in Apolipoprotein E–Knockout Mice

Author:

Johnson Jason L.1,Devel Laurent1,Czarny Bertrand1,George Sarah J.1,Jackson Christopher L.1,Rogakos Vassilis1,Beau Fabrice1,Yiotakis Athanasios1,Newby Andrew C.1,Dive Vincent1

Affiliation:

1. From the Bristol Heart Institute, School of Clinical Sciences, University of Bristol, Bristol, United Kingdom (J.L.J., S.J.G., C.L.J., C.A.N.); Commissariat à l'Energie Atomique, Service d'Ingénierie Moléculaire des Protéines, Gif/Yvette, France (L.D., B.C., F.B., V.D.); Laboratory of Organic Chemistry, University of Athens, Panepistiomiopolis, Zografou, Greece (V.R., A.Y.).

Abstract

Objective— Matrix metalloproteinase (MMP)-12 has been implicated in plaque progression and instability and is also amenable to selective inhibition. In this study, we investigated the influence of a greater than 10-fold selective synthetic MMP-12 inhibitor on plaque progression in the apolipoprotein E knockout mouse model of atherosclerosis. Methods and Results— A phosphinic peptide (RXP470.1) that is a potent, selective murine MMP-12 inhibitor significantly reduced atherosclerotic plaque cross-sectional area by approximately 50% at 4 different vascular sites in male and female apolipoprotein E knockout mice fed a Western diet. Furthermore, RXP470.1 treatment resulted in less complex plaques with increased smooth muscle cell:macrophage ratio, less macrophage apoptosis, increased cap thickness, smaller necrotic cores, and decreased incidence of calcification. Additional in vitro and in vivo findings indicate that attenuated monocyte/macrophage invasion and reduced macrophage apoptosis probably underlie the beneficial effects observed on atherosclerotic plaque progression with MMP-12 inhibitor treatment. Conclusion— Our data demonstrate that a selective MMP-12 inhibitor retards atherosclerosis development and results in a more fibrous plaque phenotype in mice. Our study provides proof of principle to motivate translational work on MMP-12 inhibitor therapy in humans.

Publisher

Ovid Technologies (Wolters Kluwer Health)

Subject

Cardiology and Cardiovascular Medicine

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