Intracellular Na+ concentration is elevated in heart failure but Na/K pump function is unchanged

被引:264
作者
Despa, S
Islam, MA
Weber, CR
Pogwizd, SM
Bers, DM
机构
[1] Loyola Univ Chicago, Dept Physiol, Maywood, IL 60153 USA
[2] Univ Illinois, Dept Med, Chicago, IL USA
关键词
sodium; heart failure; calcium;
D O I
10.1161/01.CIR.0000016701.85760.97
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
Background-Intracellular sodium concentration ([Na+](i)) modulates cardiac contractile and electrical activity through Na/Ca exchange (NCX). Upregulation of NCX in heart failure (HF) may magnify the functional impact of altered [Na+](i). Methods and Results-We measured [Na+](i) by using sodium binding benzofuran isophthalate in control and HF rabbit ventricular myocytes (HF induced by aortic insufficiency and constriction). Resting [Na+](i) was 9.7+/-0.7 versus 6.6+/-0.5 mmol/L in HF versus control. In both cases, [Na+](i) increased by approximate to2 mmol/L when myocytes were stimulated (0.5 to 3 Hz). To identify the mechanisms responsible for [Na+](i) elevation in HF, we measured the [Na+](i) dependence of Na/K pump-mediated Na+ extrusion. There was no difference in V-max (8.3+/-0.7 versus 8.0+/-0.8 mmol/L/min) or K-m (9.2+/-1.0 versus 9.9+/-0.8 mmol/L in HF and control, respectively). Therefore, at measured [Na+](i) levels, the Na/K pump rate is actually higher in HF. However, resting Na+ influx was twice as high in HF versus control (2.3+/-0.3 versus 1.1+/-0.2 mmol/L/min), primarily the result of a tetrodotoxin-sensitive pathway. Conclusions-Myocyte [Na+](i) is elevated in HF as a result of higher diastolic Na+ influx (with unaltered Na/K-ATPase characteristics). In HF, the combined increased [Na+](i), decreased Ca2+ transient, and prolonged action potential an profoundly affect cellular Ca2+ regulation, promoting greater Ca2+ influx through NCX during action potentials. Notably, the elevated [Na+](i) may be critical in limiting the contractile dysfunction observed in HF.
引用
收藏
页码:2543 / 2548
页数:6
相关论文
共 29 条
[11]   EFFECTS OF HYPERTROPHY AND HEART-FAILURE ON [NA+](I) IN PRESSURE-OVERLOADED GUINEA-PIG HEART [J].
JELICKS, JA ;
SIRI, FM .
AMERICAN JOURNAL OF HYPERTENSION, 1995, 8 (09) :934-943
[12]   ISOFORM-SPECIFIC REGULATION OF MYOCARDIAL NA,K-ATPASE ALPHA-SUBUNIT IN CONGESTIVE-HEART-FAILURE - ROLE OF NOREPINEPHRINE [J].
KIM, CH ;
FAN, THM ;
KELLY, PF ;
HIMURA, Y ;
DELEHANTY, JM ;
HANG, CL ;
LIANG, CS .
CIRCULATION, 1994, 89 (01) :313-320
[13]   THE ELECTROGENIC SODIUM-POTASSIUM PUMP AND PASSIVE SODIUM INFLUX OF ISOLATED GUINEA-PIG VENTRICULAR MYOCYTES [J].
LEVI, AJ .
JOURNAL OF CARDIOVASCULAR ELECTROPHYSIOLOGY, 1992, 3 (03) :225-238
[14]  
MAIER LS, 1997, CIRCULATION S1, V96, P178
[15]   ALTERED SARCOPLASMIC-RETICULUM CA-2+-ATPASE GENE-EXPRESSION IN THE HUMAN VENTRICLE DURING END-STAGE HEART-FAILURE [J].
MERCADIER, JJ ;
LOMPRE, AM ;
DUC, P ;
BOHELER, KR ;
FRAYSSE, JB ;
WISNEWSKY, C ;
ALLEN, PD ;
KOMAJDA, M ;
SCHWARTZ, K .
JOURNAL OF CLINICAL INVESTIGATION, 1990, 85 (01) :305-309
[16]   Mechanisms underlying delayed afterdepolarizations in hypertrophied left ventricular myocytes of rats [J].
Mészáros, J ;
Khananshvili, D ;
Hart, G .
AMERICAN JOURNAL OF PHYSIOLOGY-HEART AND CIRCULATORY PHYSIOLOGY, 2001, 281 (02) :H903-H914
[17]   [NA] AND [K] DEPENDENCE OF THE NA/K PUMP CURRENT-VOLTAGE RELATIONSHIP IN GUINEA-PIG VENTRICULAR MYOCYTES [J].
NAKAO, M ;
GADSBY, DC .
JOURNAL OF GENERAL PHYSIOLOGY, 1989, 94 (03) :539-565
[18]   Arrhythmogenesis and contractile dysfunction in heart failure -: Roles of sodium-calcium exchange, inward rectifier potassium current, and residual β-adrenergic responsiveness [J].
Pogwizd, SM ;
Schlotthauer, K ;
Li, L ;
Yuan, WL ;
Bers, DM .
CIRCULATION RESEARCH, 2001, 88 (11) :1159-1167
[19]  
Pogwizd SM, 1999, CIRC RES, V85, P1009
[20]   Reduced sodium pump α1, α3, and β1-isoform protein levels and Na+,K+-ATPase activity but unchanged Na+-Ca2+ exchanger protein levels in human heart failure [J].
Schwinger, RHG ;
Wang, JN ;
Frank, K ;
Müller-Ehmsen, J ;
Brixius, K ;
McDonough, AA ;
Erdmann, E .
CIRCULATION, 1999, 99 (16) :2105-2112