Inhibition of the late sodium current as a potential cardioprotective principle: effects of the late sodium current inhibitor ranolazine

被引:299
作者
Belardinelli, L. [1 ]
Shryock, J. C. [1 ]
Fraser, H. [1 ]
机构
[1] CV Therapeut Inc, Dept Pharmacol Sci, Palo Alto, CA 94304 USA
关键词
D O I
10.1136/hrt.2005.078790
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
Pathological conditions linked to imbalances in oxygen supply and demand (for example, ischaemia, hypoxia and heart failure) are associated with disruptions in intracellular sodium ([Na+](i)) and calcium ([Ca2+](i)) concentration homeostasis of myocardial cells. A decreased efflux or increased influx of sodium may cause cellular sodium overload. Sodium overload is followed by an increased influx of calcium through sodium-calcium exchange. Failure to maintain the homeostasis of [Na+](i) and [Ca2+](i) leads to electrical instability (arrhythmias), mechanical dysfunction ( reduced contractility and increased diastolic tension) and mitochondrial dysfunction. These events increase ATP hydrolysis and decrease ATP formation and, if left uncorrected, they cause cell injury and death. The relative contributions of various pathways (sodium channels, exchangers and transporters) to the rise in [Na+](i) remain a matter of debate. Nevertheless, both the sodium-hydrogen exchanger and abnormal sodium channel conductance (that is, increased late sodium current (I-Na)) are likely to contribute to the rise in [Na+](i). The focus of this review is on the role of the late (sustained/persistent) I-Na in the ionic disturbances associated with ischaemia/hypoxia and heart failure, the consequences of these ionic disturbances, and the cardioprotective effects of the antianginal and anti-ischaemic drug ranolazine. Ranolazine selectively inhibits late I-Na, reduces [Na+](i)-dependent calcium overload and attenuates the abnormalities of ventricular repolarisation and contractility that are associated with ischaemia/reperfusion and heart failure. Thus, inhibition of late I-Na can reduce [Na+](i)-dependent calcium overload and its detrimental effects on myocardial function.
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页码:6 / 14
页数:9
相关论文
共 93 条
[71]   IONIC BASIS OF ISCHEMIC CARDIAC INJURY - INSIGHTS FROM CELLULAR STUDIES [J].
SILVERMAN, HS ;
STERN, MD .
CARDIOVASCULAR RESEARCH, 1994, 28 (05) :581-597
[72]   Antagonism by ranolazine of the pro-arrhythmic effects of increasing late INa in guinea pig ventricular myocytes [J].
Song, YJ ;
Shryock, JC ;
Wu, L ;
Belardinelli, L .
JOURNAL OF CARDIOVASCULAR PHARMACOLOGY, 2004, 44 (02) :192-199
[73]  
Stanley William C., 2004, Journal of Cardiovascular Pharmacology and Therapeutics, V9, pS31, DOI 10.1177/107424840400900104
[74]  
Stein WD, 2002, INT REV CYTOL, V215, P231
[75]   STRUCTURAL PARTS INVOLVED IN ACTIVATION AND INACTIVATION OF THE SODIUM-CHANNEL [J].
STUHMER, W ;
CONTI, F ;
SUZUKI, H ;
WANG, XD ;
NODA, M ;
YAHAGI, N ;
KUBO, H ;
NUMA, S .
NATURE, 1989, 339 (6226) :597-603
[76]  
Tavazzi L., 2005, FUTURE CARDIOL, V1, P1
[77]   Increased short-term variability of repolarization predicts d-sotalol-induced torsades de pointes in dogs [J].
Thomsen, MB ;
Verduyn, SC ;
Stengl, M ;
Beekman, JDM ;
de Pater, G ;
van Opstal, J ;
Volders, PGA ;
Vos, MA .
CIRCULATION, 2004, 110 (16) :2453-2459
[78]   Ranolazine inhibits late sodium current in isolated left ventricular myocytes of dogs with heart failure [J].
Undrovinas, AI ;
Undrovinas, NA ;
Belardinelli, L ;
Sabbah, HN .
JOURNAL OF THE AMERICAN COLLEGE OF CARDIOLOGY, 2004, 43 (05) :178A-178A
[79]   INWARD SODIUM CURRENT AT RESTING POTENTIALS IN SINGLE CARDIAC MYOCYTES INDUCED BY THE ISCHEMIC METABOLITE LYSOPHOSPHATIDYLCHOLINE [J].
UNDROVINAS, AI ;
FLEIDERVISH, IA ;
MAKIELSKI, JC .
CIRCULATION RESEARCH, 1992, 71 (05) :1231-1241
[80]   Repolarization abnormalities in cardiomyocytes of dogs with chronic heart failure: role of sustained inward current [J].
Undrovinas, AI ;
Maltsev, VA ;
Sabbah, HN .
CELLULAR AND MOLECULAR LIFE SCIENCES, 1999, 55 (03) :494-505