An increase of late sodium current induces delayed afterdepolarizations and sustained triggered activity in atrial myocytes

被引:132
作者
Song, Yejia [1 ]
Shryock, John C. [2 ]
Belardinelli, Luiz [2 ]
机构
[1] Univ Florida, Div Cardiovasc Med, Gainesville, FL 32610 USA
[2] CV Therapeut Inc, Palo Alto, CA USA
来源
AMERICAN JOURNAL OF PHYSIOLOGY-HEART AND CIRCULATORY PHYSIOLOGY | 2008年 / 294卷 / 05期
关键词
action potential; calcium overload; transient inward current;
D O I
10.1152/ajpheart.01357.2007
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
This study determined the role of a slowly inactivating component of sodium current (I-Na), late INa, to induce delayed afterdepolarizations (DADs) and triggered activity. We hypothesized that an increase of late INa may induce not only early afterdepolarizations (EADs), but also intracellular calcium overload and DADs. Guinea pig atrial myocytes were studied using the whole cell patch-clamp technique. Anemone toxin II (ATX-II) (5-10 nmol/l) was used to enhance late INa. Ranolazine (10 mu mol/l) and TTX (2 mu mol/l) were applied to block ATX-II-induced late I-Na. ATX-II prolonged action potential duration and induced EADs. In the continuous presence of ATX-II, following the appearance of EADs, both DADs and sustained triggered activity occurred. Triggered activity was abolished and DADs were reduced by either ranolazine or TTX. Consistent with induction of DADs, ATX-II induced the transient inward current (I-TI). The amplitude of ITI was significantly reduced by ranolazine. ATX-II induced only EADs, but no DADs, in the presence of the sodium-calcium exchange inhibitor KB-R7943 or the sarcoplasmic reticulum calcium release channel inhibitor ryanodine, or when the calcium chelator EGTA or BAPTA was included in the pipette solution. In conclusion, an increase of late INa, in addition to inducing EADs, can cause cellular calcium overload and induce DADs and sustained triggered activity in atrial myocytes. The data reveal that an increase of late INa is a novel mechanism for initiation of atrial arrhythmic activity.
引用
收藏
页码:H2031 / H2039
页数:9
相关论文
共 48 条
[1]   Electrophysiological effects of ranolazine, a novel antianginal agent with antiarrhythmic properties [J].
Antzelevitch, C ;
Belardinelli, L ;
Zygmunt, AC ;
Burashnikov, A ;
Di Diego, JM ;
Fish, JM ;
Cordeiro, JM ;
Thomas, G .
CIRCULATION, 2004, 110 (08) :904-910
[2]   Inhibition of the late sodium current as a potential cardioprotective principle: effects of the late sodium current inhibitor ranolazine [J].
Belardinelli, L. ;
Shryock, J. C. ;
Fraser, H. .
HEART, 2006, 92 :6-14
[3]   Contribution of Na+/Ca2+ exchange to action potential of human atrial myocytes [J].
Benardeau, A ;
Hatem, SN ;
RuckerMartin, C ;
LeGrand, B ;
Mace, L ;
Dervanian, P ;
Mercadier, JJ ;
Coraboeuf, E .
AMERICAN JOURNAL OF PHYSIOLOGY-HEART AND CIRCULATORY PHYSIOLOGY, 1996, 271 (03) :H1151-H1161
[4]   MOLECULAR MECHANISM FOR AN INHERITED CARDIAC-ARRHYTHMIA [J].
BENNETT, PB ;
YAZAWA, K ;
MAKITA, N ;
GEORGE, AL .
NATURE, 1995, 376 (6542) :683-685
[5]   PHARMACOLOGICAL EVALUATION OF EARLY AFTERDEPOLARIZATIONS INDUCED BY SEA-ANEMONE TOXIN (ATXII) IN DOG HEART [J].
BOUTJDIR, M ;
ELSHERIF, N .
CARDIOVASCULAR RESEARCH, 1991, 25 (10) :815-819
[6]   Late-phase 3 EAD. A unique mechanism contributing to initiation of atrial fibrillation [J].
Burashnikov, A ;
Antzelevitch, C .
PACE-PACING AND CLINICAL ELECTROPHYSIOLOGY, 2006, 29 (03) :290-295
[7]   Atrium-selective sodium channel block as a strategy for suppression of atrial fibrillation - Differences in sodium channel inactivation between atria and ventricles and the role of ranolazine [J].
Burashnikov, Alexander ;
Di Diego, Jose M. ;
Zygmunt, Andrew C. ;
Belardinelli, Luiz ;
Antzelevitch, Charles .
CIRCULATION, 2007, 116 (13) :1449-1457
[8]   Non-equilibrium Gating in cardiac Na+ channels -: An original mechanism of arrhythmia [J].
Clancy, CE ;
Tateyama, M ;
Liu, HJ ;
Wehrens, XHT ;
Kass, RS .
CIRCULATION, 2003, 107 (17) :2233-2237
[9]   Insights into the molecular mechanisms of bradycardia-triggered arrhythmias in long QT-3 syndrome [J].
Clancy, CE ;
Tateyama, M ;
Kass, RS .
JOURNAL OF CLINICAL INVESTIGATION, 2002, 110 (09) :1251-1262
[10]   EFFECT OF TETRODOTOXIN ON ACTION POTENTIALS OF THE CONDUCTING SYSTEM IN THE DOG HEART [J].
CORABOEUF, E ;
DEROUBAIX, E ;
COULOMBE, A .
AMERICAN JOURNAL OF PHYSIOLOGY, 1979, 236 (04) :H561-H567