Density and kinetics of IKr and IKs in guinea pig and rabbit ventricular myocytes explain different efficacy of IKs blockade at high heart rate in guinea pig and rabbit -: Implications for arrhythmogenesis in humans

被引:107
作者
Lu, ZB
Kamiya, K [1 ]
Opthof, T
Yasui, K
Kodama, I
机构
[1] Nagoya Univ, Environm Med Res Inst, Dept Circulat, Div Regulat Organ Funct, Nagoya, Aichi 4648601, Japan
[2] Univ Utrecht, Ctr Med, Dept Med Physiol, Utrecht, Netherlands
关键词
potassium; ion channels; antiarrhythmia agents; action potentials;
D O I
10.1161/hc3401.093151
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
Background-Class III antiarrhythmic agents commonly exhibit reverse frequency-dependent prolongation of the action potential duration (APD). This is undesirable because of the danger of bradycardia-related arrhythmias and the limited protection against ventricular tachyarrhythmias. The effects of blockade of separate components of delayed rectifier K+ current (I-K) may help to develop agents effective at high heart rate. Methods and Results-We assessed the density and kinetics of the 2 components of the delayed rectifier K+ current, I-Kr and I-Ks in rabbit and guinea pig ventricular myocytes. The effects of their specific blockers (chromanol 293B for I-Ks and E-4031 for I-Kr) on the action potential was studied at different heart rates by use of whole-cell patch-clamp techniques. In guinea pig ventricular myocytes only, blockade of IKs causes APD prolongation in a frequency-independent manner, whereas blockade of I-Ks in rabbit ventricular myocytes shows reverse frequency dependence, as does blockade of I-Kr in both species. This result can be explained primarily by the higher density of I-Ks in guinea pig ventricle and by its slow deactivation kinetics, which allows I-Ks to accumulate at high heart rate because little time is available for complete deactivation of it during diastole. Conclusions-Density and kinetics of components of I-K explain why blockade of I-Ks is more effective at high heart rate in the guinea pig ventricle than in the rabbit ventricle, without adverse effects at low heart rate.
引用
收藏
页码:951 / 956
页数:6
相关论文
共 30 条
[11]  
Kamiya K, 2001, CIRCULATION, V103, P1317
[12]  
Kodama I, 1999, AM J CARDIOL, V84, p20R
[13]   Pharmacological block of the slow component of the outward delayed rectifier current (IKs) fails to lengthen rabbit ventricular muscle QTc and action potential duration [J].
Lengyel, C ;
Iost, N ;
Virág, L ;
Varró, A ;
Lathrop, DA ;
Papp, JG .
BRITISH JOURNAL OF PHARMACOLOGY, 2001, 132 (01) :101-110
[14]   Transmembrane ICa contributes to rate-dependent changes of action potentials in human ventricular myocytes [J].
Li, GR ;
Yang, BF ;
Feng, JL ;
Bosch, RF ;
Carrier, M ;
Nattel, S .
AMERICAN JOURNAL OF PHYSIOLOGY-HEART AND CIRCULATORY PHYSIOLOGY, 1999, 276 (01) :H98-H106
[15]   Evidence for two components of delayed rectifier K+ current in human ventricular myocytes [J].
Li, GR ;
Feng, JL ;
Yue, LX ;
Carrier, M ;
Nattel, S .
CIRCULATION RESEARCH, 1996, 78 (04) :689-696
[16]   CHARACTERISTICS OF THE DELAYED RECTIFIER CURRENT (I-KR AND I-KS) IN CANINE VENTRICULAR EPICARDIAL, MIDMYOCARDIAL, AND ENDOCARDIAL MYOCYTES - A WEAKER I-KS CONTRIBUTES TO THE LONGER ACTION-POTENTIAL OF THE M-CELL [J].
LIU, DW ;
ANTZELEVITCH, C .
CIRCULATION RESEARCH, 1995, 76 (03) :351-365
[17]   BLOCK OF INACTIVATED SODIUM-CHANNELS AND OF DEPOLARIZATION-INDUCED AUTOMATICITY IN GUINEA-PIG PAPILLARY-MUSCLE BY AMIODARONE [J].
MASON, JW ;
HONDEGHEM, LM ;
KATZUNG, BG .
CIRCULATION RESEARCH, 1984, 55 (03) :277-285
[18]   2 COMPONENTS OF CARDIAC DELAYED RECTIFIER K+ CURRENT - DIFFERENTIAL SENSITIVITY TO BLOCK BY CLASS-III ANTIARRHYTHMIC AGENTS [J].
SANGUINETTI, MC ;
JURKIEWICZ, NK .
JOURNAL OF GENERAL PHYSIOLOGY, 1990, 96 (01) :195-215
[19]  
SATO R, 1994, J PHARMACOL EXP THER, V269, P1213
[20]   Differential effect of β-adrenergic stimulation on the frequency-dependent electrophysiologic actions of the new Class III antiarrhythmics dofetilide, ambasilide, and chromanol 293B [J].
Schreieck, J ;
Wang, YG ;
Gjini, V ;
Korth, M ;
Zrenner, B ;
Schömig, A ;
Schmitt, C .
JOURNAL OF CARDIOVASCULAR ELECTROPHYSIOLOGY, 1997, 8 (12) :1420-1430