Objective Catecholamines antagonize the clinical efficacy of pure class Ⅲ antiarrhythmic agents in vivo. The antiarrhythmic agent d, l sotalol has β adrenergic blocking properties and class Ⅲ activity. However, ...Objective Catecholamines antagonize the clinical efficacy of pure class Ⅲ antiarrhythmic agents in vivo. The antiarrhythmic agent d, l sotalol has β adrenergic blocking properties and class Ⅲ activity. However, its d isomer without β blockade has been shown to exert significant proarrhythmia. To determine the role of β adrenergic blocking properties of d, l sotalol on its antiarrhythmic effect, we compared the effects of d, l sotalol and d sotalol on delayed rectifier K + outward current in the presence of isoproterenol at different concentrations. Methods Time dependent delayed rectifier K + outward currents, I K (I Kr and I Ks ) and tail current (I K tail ) were measured in isolated guinea pig myocytes using the whole cell configuration of the patch clamp technique. Currents were measured in response to 300 ms depolarizing pulses from a holding potential of Department of Cardiology, University Hospital Heidelberg, Germany (Yao XZ, Yannoulis NC, Kiehn J and Brachmann J) 40 mV in three experimental protocols [control, isoproterenol (10 9 -10 6 mol/L), and isoproterenol (10 9 -10 6 mol/L) plus either d, l sotalol (10 4 mol/L) or d sotalol (10 4 mol/L)]. I K tail currents were measured upon repolarization to 40 mV. Results Isoproterenol significantly inreased I K and I K tail in a concentration dependent manner. I K was significantly amplified in the presence of isoproterenol (10 9 -10 6 mol/L) plus d sotalol. At 10 8 mol/L isoproterenol, I K was increased by 92.3%±23.7% before and 54.3%±13.4% after d sotalol. In contrast, d, l sotalol strongly suppressed the effect of isoproterenol on I K, and compared to control, I K was decreased by 35.6%±8.1% at 10 8 mol/L isoproterenol. Conclusions The β adrenergic blocking property of d, l sotalol maintains delayed rectifier K + outward current block in the presence of isoproterenol in guinea pig myocytes. This may result in its supperior antiarrhythmic efficacy compared to d sotalol.展开更多
目的探讨药物致尖端扭转型室性心动过速(Tdp)的发生机制。方法建立冠状动脉灌注的犬左室心肌楔形组织块模型,同步记录左心室内膜、中层、外膜心肌细胞的动作电位及跨壁心电图,观察不同浓度D-Sotalol对动作电位时间(APD)、QT间期、跨壁...目的探讨药物致尖端扭转型室性心动过速(Tdp)的发生机制。方法建立冠状动脉灌注的犬左室心肌楔形组织块模型,同步记录左心室内膜、中层、外膜心肌细胞的动作电位及跨壁心电图,观察不同浓度D-Sotalol对动作电位时间(APD)、QT间期、跨壁复极离散度(TDR)、早期后除极(EAD)及Tdp发生的影响。结果浓度为0~100μmol/L的D-Sotalol呈剂量依赖性地延长各层细胞APD,尤以中层细胞最为显著(P<0.05),因而增加TDR;D-Sotalol在中层细胞可诱发EAD,触发室性早博并形成跨壁折返导致Tdp。结论 D-Sotalol在中层细胞诱发EAD、R on T室性早博是其致Tdp的始动因子,在TDR增加的基础上形成跨室壁折返是Tdp得以维持的关键。展开更多
文摘Objective Catecholamines antagonize the clinical efficacy of pure class Ⅲ antiarrhythmic agents in vivo. The antiarrhythmic agent d, l sotalol has β adrenergic blocking properties and class Ⅲ activity. However, its d isomer without β blockade has been shown to exert significant proarrhythmia. To determine the role of β adrenergic blocking properties of d, l sotalol on its antiarrhythmic effect, we compared the effects of d, l sotalol and d sotalol on delayed rectifier K + outward current in the presence of isoproterenol at different concentrations. Methods Time dependent delayed rectifier K + outward currents, I K (I Kr and I Ks ) and tail current (I K tail ) were measured in isolated guinea pig myocytes using the whole cell configuration of the patch clamp technique. Currents were measured in response to 300 ms depolarizing pulses from a holding potential of Department of Cardiology, University Hospital Heidelberg, Germany (Yao XZ, Yannoulis NC, Kiehn J and Brachmann J) 40 mV in three experimental protocols [control, isoproterenol (10 9 -10 6 mol/L), and isoproterenol (10 9 -10 6 mol/L) plus either d, l sotalol (10 4 mol/L) or d sotalol (10 4 mol/L)]. I K tail currents were measured upon repolarization to 40 mV. Results Isoproterenol significantly inreased I K and I K tail in a concentration dependent manner. I K was significantly amplified in the presence of isoproterenol (10 9 -10 6 mol/L) plus d sotalol. At 10 8 mol/L isoproterenol, I K was increased by 92.3%±23.7% before and 54.3%±13.4% after d sotalol. In contrast, d, l sotalol strongly suppressed the effect of isoproterenol on I K, and compared to control, I K was decreased by 35.6%±8.1% at 10 8 mol/L isoproterenol. Conclusions The β adrenergic blocking property of d, l sotalol maintains delayed rectifier K + outward current block in the presence of isoproterenol in guinea pig myocytes. This may result in its supperior antiarrhythmic efficacy compared to d sotalol.
文摘目的探讨药物致尖端扭转型室性心动过速(Tdp)的发生机制。方法建立冠状动脉灌注的犬左室心肌楔形组织块模型,同步记录左心室内膜、中层、外膜心肌细胞的动作电位及跨壁心电图,观察不同浓度D-Sotalol对动作电位时间(APD)、QT间期、跨壁复极离散度(TDR)、早期后除极(EAD)及Tdp发生的影响。结果浓度为0~100μmol/L的D-Sotalol呈剂量依赖性地延长各层细胞APD,尤以中层细胞最为显著(P<0.05),因而增加TDR;D-Sotalol在中层细胞可诱发EAD,触发室性早博并形成跨壁折返导致Tdp。结论 D-Sotalol在中层细胞诱发EAD、R on T室性早博是其致Tdp的始动因子,在TDR增加的基础上形成跨室壁折返是Tdp得以维持的关键。