Impaired Contractile Performance of Cultured Rabbit Ventricular Myocytes After Adenoviral Gene Transfer of Na + -Ca 2+ Exchanger

Author:

Schillinger Wolfgang1,Janssen Paul M. L.1,Emami Shahriyar1,Henderson Scott A.1,Ross Robert S.1,Teucher Nils1,Zeitz Oliver1,Philipson Kenneth D.1,Prestle Jürgen1,Hasenfuss Gerd1

Affiliation:

1. From the Zentrum Innere Medizin (W.S., P.M.L.J., S.E., N.T., O.Z., J.P., G.H.), Abteilung Kardiologie und Pneumologie, Universität Göttingen, Göttingen, Germany; and Departments of Physiology and Medicine (S.A.H., R.S.R., K.D.P.), University of California Los Angeles School of Medicine. Dr Janssen’s present address is Johns Hopkins University, Division of Cardiology, Baltimore, Md.

Abstract

Abstract —Na + -Ca 2+ exchanger (NCX) gene expression is increased in the failing human heart. We investigated the hypothesis that upregulation of NCX can induce depressed contractile performance. Overexpression of NCX was achieved in isolated rabbit ventricular myocytes through adenoviral gene transfer (Ad-NCX). After 48 hours, immunoblots revealed a virus dose-dependent increase in NCX protein. Adenoviral β-galactosidase transfection served as a control. The fractional shortening (FS) of electrically stimulated myocytes was analyzed. At 60 min −1 , FS was depressed by 15.6% in the Ad-NCX group (n=143) versus the control group (n=163, P <0.05). Analysis of the shortening-frequency relationship showed a steady increase in FS in the control myocytes (n=26) from 0.027±0.002 at 30 min −1 to 0.037±0.002 at 120 min −1 ( P <0.05 versus 30 min −1 ) and to 0.040±0.002 at 180 min −1 ( P <0.05 versus 30 min −1 ). Frequency potentiation of shortening was blunted in NCX-transfected myocytes (n=27). The FS was 0.024±0.002 at 30 min −1 , 0.029±0.002 at 120 min −1 ( P <0.05 versus 30 min −1 , P <0.05 versus control), and 0.026±0.002 at 180 min −1 (NS versus 30 min −1 , P <0.05 versus control). Caffeine contractures, which indicate sarcoplasmic reticulum Ca 2+ load, were significantly reduced at 120 min −1 in NCX-transfected cells. An analysis of postrest behavior showed a decay of FS with longer rest intervals in control cells. Rest decay was significantly higher in the Ad-NCX group; after 120 seconds of rest, FS was 78±4% in control and 65±3% in the Ad-NCX group ( P <0.05) relative to steady-state FS before rest (100%). In conclusion, the overexpression of NCX in rabbit cardiomyocytes results in the depression of contractile function. This supports the hypothesis that upregulation of NCX can result in systolic myocardial failure.

Publisher

Ovid Technologies (Wolters Kluwer Health)

Subject

Cardiology and Cardiovascular Medicine,Physiology

Reference23 articles.

1. CALCIUM-INDUCED RELEASE OF CALCIUM FROM THE SARCOPLASMIC RETICULUM OF SKINNED CELLS FROM ADULT HUMAN, DOG, CAT, RABBIT, RAT, AND FROG HEARTS AND FROM FETAL AND NEW-BORN RAT VENTRICLES

2. Bers DM. Excitation-Contraction Coupling and Cardiac Contractile Force . Dordrecht Netherlands: Kluwer Academic; 1991.

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