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PMID: 8790037 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Evidence for functional relevance of an enhanced expression of the Na(+)-Ca2+ exchanger in failing human myocardium.

Circulation ·Vol. 94 ·No. 5 ·1996-09-01 ·Pages 992-1002

Flesch M, Schwinger RH, Schiffer F, Frank K, Südkamp M, Kuhn-Regnier F, Arnold G, Böhm M

Abstract

The present study aimed at investigating the expression of the Na(+)-Ca2+ exchanger and its functional role in human failing myocardium. Na(+)-Ca2+ exchanger mRNA and protein levels were examined in nonfailing (NF, n = 8) and failing human myocardium (New York Heart Association functional class IV) with idiopathic dilated cardiomyopathy (DCM, n = 8) or ischemic heart disease (ICM, n = 6). The inotropic effect of the Na+ channel activator BDF 9148 was determined in electrically driven left ventricular papillary muscle strip preparations (1 Hz, 37 degrees C) from nonfailing (n = 8) and failing (n = 8) human hearts. Na(+)-Ca2+ exchanger mRNA levels were significantly increased, by 79% (P < .001) in DCM and by 58% (P < .01) in ICM compared with NF; protein levels increased by 36% (P < .001) and by 20% (P < .05), respectively. BDF 9148 increased the force of contraction concentration dependently, with a similar maximal effect in NYHA class IV and NF, but was more potent in NYHA class IV as demonstrated by a significantly smaller (P < .01) EC50 value (NYHA class IV, 0.18 [0.16 to 0.22] mumol/L; NF, 1.65 [1.3 to 3.0] mumol/L). In NYHA class IV, BDF 9148 (0.1 mumol/L) restored the positive force-frequency relationship and reduced the frequency-dependent increase in diastolic tension in relation to force of contraction. The increased expression of the Na(+)-Ca2+ exchanger is a possible explanation for the increased inotropic potency of the Na+ channel activator BDF 9148 in failing human myocardium. The increase in exchanger molecules could be of functional relevance for the modulation of cardiac contractility by agents that increase the intracellular Na+ concentration. Enhancement of Na(+)-Ca2+ exchanger activity might be a powerful mechanism for increasing cardiac contractility in chronic heart failure.

MeSH Terms
Adult Atrial Natriuretic Factor/genetics Azetidines/pharmacology Calcium/metabolism Carrier Proteins/analysis,genetics Female Heart Failure/metabolism Humans Immunohistochemistry Isoproterenol/pharmacology Male Middle Aged RNA, Messenger/analysis Sodium/metabolism Sodium-Calcium Exchanger
Chemicals
Azetidines Carrier Proteins RNA, Messenger Sodium-Calcium Exchanger BDF 9148 Atrial Natriuretic Factor Sodium Isoproterenol Calcium
Authors & Affiliations
8 authors, click to expand affiliations / ORCID
Flesch M
Klinik III für Innere Medizin Universität zu Köln, FRG.
Schwinger R H
Schiffer F
Frank K
Südkamp M
Kuhn-Regnier F
Arnold G
Böhm M
Article Info
Journal
Circulation
Abbr.
Circulation
ISSN
0009-7322
Published
1996-09-01
Pages
992-1002
Language
English
Region
United States
NLM ID
0147763
Subset
IM
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