Zhang Xuan-Ping, Wu Bo-Wei, Yang Cai-Hong, Wang Jie, Niu Shuan-Cheng, Zhang Ming-Sheng
Department of Pharmacology, Shanxi Medical University, Shanxi, People's Republic of China.
Cardiovasc Drugs Ther. 2009 Jun;23(3):207-14. doi: 10.1007/s10557-009-6163-x. Epub 2009 Feb 17.
Dofetilide (DOF), a novel Class III antiarrhythmic drug, prolongs the action potential duration (APD) and shows a positive inotropic effect in guinea pig papillary muscle. The present experiments were designed to study the positive inotropic effect of DOF on rat ventricle and explore its possible mechanism(s).
Hearts from male Wistar rats (260-320 g) were divided into five groups and perfused in Langendorff mode. Ventricular myocytes were enzymatically isolated from male Wistar rats. Whole-cell voltage-clamping technique was used to test the Na(+)-Ca(2+) exchange (NCE) current (I(NCX)); Calcium transients and cell shortening provoked by field stimulation or using calcium current command waveform were observed synchronously with an ionic imaging system.
DOF (0.03-1.0 microM) increased left ventricular function in isolated rat hearts in a concentration-dependent manner. DOF (0.03-1.0 microM) also concentration-dependently increased both inward and outward I (NCX) in isolated rat ventricular cells. The EC(50) values of DOF were 0.149 microM for the inward I(NCX) and 0.249 microM for outward I(NCX), respectively. DOF 0.2 microM significantly enhanced Ca(2+) transient and cell shortening in single rat ventricular myocytes driven by field electric stimulation. When the patch clamp system was connected to the ionic imaging system, Ca(2+) current (I(Ca)), Ca(2+) transient and cell shortening amplitude in a same cell were recorded synchronously. Application of DOF 0.2 microM had no effect on I(Ca), but significantly increased Ca(2+) transient and cell shortening. NCX inhibitor KB-R7943 0.6 microM significantly depressed the effects of DOF on Ca(2+) transient and cell shortening.
We conclude that DOF enhanced contractility of rat ventricular myocytes. The enhancement of NCE may be involved in the positive inotropic action of DOF.
决奈达隆(DOF)是一种新型III类抗心律失常药物,可延长动作电位时程(APD),并在豚鼠乳头肌中显示出正性肌力作用。本实验旨在研究DOF对大鼠心室的正性肌力作用并探讨其可能机制。
将雄性Wistar大鼠(260 - 320 g)的心脏分为五组,采用Langendorff模式进行灌注。从雄性Wistar大鼠中酶法分离心室肌细胞。使用全细胞电压钳技术检测钠钙交换(NCE)电流(I(NCX));通过离子成像系统同步观察电场刺激或使用钙电流指令波形引发的钙瞬变和细胞缩短。
DOF(0.03 - 1.0 microM)以浓度依赖性方式增加离体大鼠心脏的左心室功能。DOF(0.03 - 1.0 microM)还以浓度依赖性方式增加离体大鼠心室细胞内向和外向I(NCX)。DOF对内向I(NCX)的EC50值为0.149 microM,对外向I(NCX)的EC50值为0.249 microM。0.2 microM的DOF显著增强电场刺激驱动的单个大鼠心室肌细胞中的钙瞬变和细胞缩短。当膜片钳系统连接到离子成像系统时,可同步记录同一细胞中的钙电流(I(Ca))、钙瞬变和细胞缩短幅度。应用0.2 microM的DOF对I(Ca)无影响,但显著增加钙瞬变和细胞缩短。0.6 microM的NCX抑制剂KB - R7943显著抑制DOF对钙瞬变和细胞缩短的作用。
我们得出结论,DOF增强大鼠心室肌细胞的收缩力。NCE的增强可能参与了DOF的正性肌力作用。