Expression and function of the cardiac Na+/Ca2+ exchanger in postnatal development of the rat, in experimentaliduced cardiac hypertrophy and in the failing human heart

被引:0
作者
R. Studer
H. Reinecke
R. Vetter
J. Holtz
H. Drexler
机构
[1] Universitätsklinik,Innere Medizin III Kardiologie und Angiologie
[2] Max-Delbrück-Centrum,Institut für Pathophysiologie
[3] Universität Halle,undefined
来源
Basic Research in Cardiology | 1997年 / 92卷
关键词
Cardiac Na; /Ca; exchanger; expression and function; postnatal development; cadiac hypertrophy and failure; Ca; overload; arrhythmogenic potential; reversed mode;
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摘要
The diastolic and systolic dysfunction in the failing heart appear to be related to the altered Ca2+ handling of the cardiac myocyte. Disturbed Ca2+ handling might also affect influx and efflux of other ions, including Na+. In this context, the cardiac sarcolemmal Na+/Ca2+ exchanger represents an important exchange mechanism of Ca2+ versus Na+ transport across the sarcolemma. Expression and function of cardiac Na+/Ca2+ exchanger is highest in newborn rats and declines gradually in postnatal development. In pressure overload-induced hypertrophy, expression of cardiac Na+/Ca2+ exchanger is increased and translated into increased Na+/Ca2+ exchanger activity similar to the early phase of postnatal development in the rat. This suggests a common underlying mechanism in the control of Na+/ Ca2+ exchanger expression in the immature and the hypertrophied myocardium. Similar to experimental-induced hypertrophy, mRNA, protein and activity of Na+/Ca2+ exchanger is increased in the failing human heart suggesting an increase in the number of functional exchanger molecules rather than an enhanced exchange rate by preexisting exchanger molecules. The potential functional implications of an increased cardiac Na+/Ca2+ exchanger activity in human heart failure may be limitation of diastolic intracellular Ca2+ overload. However, this may increase the arrhythmogenic potential of the failing heart, since additional Na+ influx via Na+/Ca2+ exchanger may affect the membrane potential.
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页码:53 / 58
页数:5
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共 146 条
[1]  
Arai M(1994)Sarcoplasmic reticulum gene expression in cardiac hypertrophy and heart failure Circ Res 74 555-564
[2]  
Matsui H(1992)Sarcolemmal Na Am J Physiol 263 H1506-H1513
[3]  
Periasamy M(1989)−Ca Cire Res 65 334-342
[4]  
Artman M(1990) exchange activity and exchanger immunoreactivity in developing rabbit hearts Am J Physiol 258 C944-C954
[5]  
Bers DM(1993)Relaxation of rabbit ventricular muscle by Na−Ca exchange and sarcoplasmic reticulum calcium pump Cardiovasc Res 27 1772-1777
[6]  
Bridge JHB(1991)Intracellular Ca transients in rat cardiac myocytes: role of Na−Ca exchange in excitation-contraction coupling Circ Res 68 1390-1400
[7]  
Bers DM(1994)Competition and redistribution among calcium transport systems in rabbit cardiac myocytes Circ Res 74 354-359
[8]  
Lederer WJ(1993)Intracellular calcium transients in myocardium from spontaneously hypertensive rats during the transition to heart failure Annu Rev Physiol 55 77-95
[9]  
Berlin JR(1982)Steady-state mRNA levels of the sarcolemmal Na Fed Proc 41 2238-2244
[10]  
Bers DM(1992)−Ca Pediatr Res 31 474-479