Chymase Inhibition Prevents Fibronectin and Myofibrillar Loss and Improves Cardiomyocyte Function and LV Torsion Angle in Dogs With Isolated Mitral Regurgitation

Author:

Pat Betty1,Chen Yuanwen1,Killingsworth Cheryl1,Gladden James D.1,Shi Ke1,Zheng Junying1,Powell Pamela C.1,Walcott Greg1,Ahmed Mustafa I.1,Gupta Himanshu1,Desai Ravi1,Wei Chih-Chang1,Hase Naoki1,Kobayashi Tsunefumi1,Sabri Abdelkarim1,Granzier Henk1,Denney Thomas1,Tillson Michael1,Dillon A. Ray1,Husain Ahsan1,Dell'Italia Louis J.1

Affiliation:

1. From the Center for Heart Failure Research, Department of Medicine (B.P., Y.C., C.K., J.D.G., K.S., J.Z., P.C.P., G.W., M.I.A., H.G., R.D., C.-C.W., A.H., L.J.D.) and Birmingham Department of Veteran Affairs (L.J.D.), University of Alabama at Birmingham; Xinhua Hospital, Shanghai Jiaotong University School of Medicine, Shanghai, China (Y.C.); Teijin Institute for Bio-Medical Research, Teijin Pharma Ltd, Tokyo, Japan (N.H., T.K.); Department of Physiology, Temple University School of Medicine,...

Abstract

Background— The left ventricular (LV) dilatation of isolated mitral regurgitation (MR) is associated with an increase in chymase and a decrease in interstitial collagen and extracellular matrix. In addition to profibrotic effects, chymase has significant antifibrotic actions because it activates matrix metalloproteinases and kallikrein and degrades fibronectin. Thus, we hypothesize that chymase inhibitor (CI) will attenuate extracellular matrix loss and LV remodeling in MR. Methods and Results— We studied dogs with 4 months of untreated MR (MR; n=9) or MR treated with CI (MR+CI; n=8). Cine MRI demonstrated a >40% increase in LV end-diastolic volume in both groups, consistent with a failure of CI to improve a 25% decrease in interstitial collagen in MR. However, LV cardiomyocyte fractional shortening was decreased in MR versus normal dogs (3.71±0.24% versus 4.81±0.31%; P <0.05) and normalized in MR+CI dogs (4.85±0.44%). MRI with tissue tagging demonstrated an increase in LV torsion angle in MR+CI versus MR dogs. CI normalized the significant decrease in fibronectin and FAK phosphorylation and prevented cardiomyocyte myofibrillar degeneration in MR dogs. In addition, total titin and its stiffer isoform were increased in the LV epicardium and paralleled the changes in fibronectin and FAK phosphorylation in MR+CI dogs. Conclusions— These results suggest that chymase disrupts cell surface–fibronectin connections and FAK phosphorylation that can adversely affect cardiomyocyte myofibrillar structure and function. The greater effect of CI on epicardial versus endocardial titin and noncollagen cell surface proteins may be responsible for the increase in torsion angle in chronic MR.

Publisher

Ovid Technologies (Wolters Kluwer Health)

Subject

Physiology (medical),Cardiology and Cardiovascular Medicine

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