Intracellular Na+ regulation in cardiac myocytes

被引:239
作者
Bers, DM
Barry, WH
Despa, S
机构
[1] Loyola Univ, Dept Physiol, Stritch Sch Med, Maywood, IL 60153 USA
[2] Univ Utah, Ctr Hlth Sci, Div Cardiol, Salt Lake City, UT 84132 USA
关键词
myocytes; Na/Ca-exchanger; Na/H-exchanger; Na/K-pump; Na-channel;
D O I
10.1016/S0008-6363(02)00656-9
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
Intracellular [Na+] ([Na+](i)) is regulated in cardiac myocytes by a balance of Na+ influx and efflux mechanisms. In the normal cell there is a large steady state electrochemical gradient favoring Na+ influx. This potential energy is used by numerous transport mechanisms, including Na+ channels and transporters which couple Na+ influx to either co- or counter-transport of other ions and solutes. Six sarcolemmal Na+ influx pathways are discussed in relatively quantitative terms: Na+ channels, Na+/Ca2+ exchange, Na+/H+ exchange, Na+/Mg2+ exchange, Na+/HCO3- cotransport and Na+/K+/2Cl(-) cotransport. Under normal conditions Na+/Ca2+ exchange and Na+ channels are the dominant Na+ influx pathways, but other transporters may become increasingly important during altered conditions (e.g. acidosis or cell volume stress). Mitochondria also exhibit Na+/Ca2+ antiporter and Na+/H+ exchange activity that are important in mitochondrial function. These coupled fluxes of Na+ with Ca2+, H+ and HCO3- make the detailed understanding of [Na+](i) regulation pivotal to the understanding of both cardiac excitation-contraction coupling and pH regulation. The Na+/K+-ATPase is the main route for Na+ extrusion from cells and [Na+](i) is a primary regulator under physiological conditions. [Na+](i) is higher in rat than rabbit ventricular myocytes and the reason appears to be higher Na+ influx in rat with a consequent rise in Na+/K+-ATPase activity (rather than lower Na+/K+-ATPase function in rat). This has direct functional consequences. There may also be subcellular [Na+](i) gradients locally in ventricular myocytes and this may also have important functional implications. Thus, the balance of Na+ fluxes in heart cells may be complex, but myocyte Na+ regulation is functionally important and merits focused attention as in this issue. (C) 2003 European Society of Cardiology. Published by Elsevier Science B.V. All rights reserved.
引用
收藏
页码:897 / 912
页数:16
相关论文
共 140 条
[51]   Intracellular sodium and contractile function in hypertrophied human and guinea-pig myocardium [J].
Gray, RP ;
McIntyre, H ;
Sheridan, DS ;
Fry, CH .
PFLUGERS ARCHIV-EUROPEAN JOURNAL OF PHYSIOLOGY, 2001, 442 (01) :117-123
[52]  
HARRISON SM, 1992, AM J PHYSIOL, V262, pC348
[53]   THE RELATIONSHIP BETWEEN CONTRACTION AND INTRACELLULAR SODIUM IN RAT AND GUINEA-PIG VENTRICULAR MYOCYTES [J].
HARRISON, SM ;
MCCALL, E ;
BOYETT, MR .
JOURNAL OF PHYSIOLOGY-LONDON, 1992, 449 :517-550
[54]   INFLUENCE OF TEMPERATURE ON THE CALCIUM SENSITIVITY OF THE MYOFILAMENTS OF SKINNED VENTRICULAR MUSCLE FROM THE RABBIT [J].
HARRISON, SM ;
BERS, DM .
JOURNAL OF GENERAL PHYSIOLOGY, 1989, 93 (03) :411-428
[55]  
Hilgemann D, 1991, SODIUM PUMP RECENT D, P543
[56]   STEADY-STATE AND DYNAMIC PROPERTIES OF CARDIAC SODIUM-CALCIUM EXCHANGE - SODIUM-DEPENDENT INACTIVATION [J].
HILGEMANN, DW ;
MATSUOKA, S ;
NAGEL, GA ;
COLLINS, A .
JOURNAL OF GENERAL PHYSIOLOGY, 1992, 100 (06) :905-932
[57]   CHARGE MOVEMENT DURING NA+ TRANSLOCATION BY NATIVE AND CLONED CARDIAC NA+/CA2+ EXCHANGER [J].
HILGEMANN, DW ;
NICOLL, DA ;
PHILIPSON, KD .
NATURE, 1991, 352 (6337) :715-718
[58]   Effect of acidosis on Ca2+ uptake and release by sarcoplasmic reticulum of intact rat ventricular myocytes [J].
Hulme, JT ;
Orchard, CH .
AMERICAN JOURNAL OF PHYSIOLOGY-HEART AND CIRCULATORY PHYSIOLOGY, 1998, 275 (03) :H977-H987
[59]   AUXILIARY SUBUNITS OF VOLTAGE-GATED ION CHANNELS [J].
ISOM, LL ;
DEJONGH, KS ;
CATTERALL, WA .
NEURON, 1994, 12 (06) :1183-1194
[60]   Identification of a specific role for the Na,K-ATPase α2 isoform as a regulator of calcium in the heart [J].
James, PF ;
Grupp, IL ;
Grupp, G ;
Woo, AL ;
Askew, GR ;
Croyle, ML ;
Walsh, RA ;
Lingrel, JB .
MOLECULAR CELL, 1999, 3 (05) :555-563