首页> 美国卫生研究院文献>British Journal of Pharmacology and Chemotherapy >Electrophysiological effects of propafenone in untreated and propafenone-pretreated guinea-pig atrial and ventricular muscle fibres.
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Electrophysiological effects of propafenone in untreated and propafenone-pretreated guinea-pig atrial and ventricular muscle fibres.

机译:普罗帕酮在未经治疗和普罗帕酮预处理的豚鼠心房和心室肌纤维中的电生理作用。

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摘要

The electrophysiological effects of propafenone (10(-7) to 10(-4) M) were studied on guinea-pig isolated atrial and ventricular muscle fibres obtained from untreated animals and animals pretreated with propafenone, 3 and 10 mg kg-1, for 28 days. In untreated atria propafenone produced a dose-dependent decrease in the rate and maximum following frequency, prolonged the sinus node recovery time and reduced the maximum chronotropic responses to isoprenaline. In untreated atrial and ventricular muscle fibres propafenone depressed action potential amplitude and Vmax, reduced the resting membrane potential and prolonged the action potential duration (APD) and the effective refractory period, lengthening the effective refractory period relative to APD. Propafenone depressed the amplitude and Vmax and shortened the duration of the slow action potentials induced by isoprenaline and caffeine in K-depolarized papillary muscles. Pretreatment with propafenone reduced atrial rate, but did not modify the action potential characteristics compared to the values obtained in untreated atria. Further addition of propafenone produced similar but more marked changes in untreated atria. In ventricular muscle fibres pretreated with 3 mg kg-1, action potential characteristics before and after further addition of propafenone were similar to those obtained in untreated fibres. However, muscles pretreated with 10 mg kg-1 exhibited a significant prolongation of the APD compared to that in untreated muscles or those pretreated with 3 mg kg-1; further addition of propafenone shortened the APD even when this parameter was of similar value to those observed in the other two series of experiments. It is concluded that even though the effects of propafenone are similar to those of quinidine (class I antiarrhythmic), it also exhibited class II and class IV actions. In pretreated animals a prolongation of the APD (class III action) could also be involved in the antiarrhythmic effects of the drug.
机译:研究了普罗帕酮(10(-7)至10(-4)M)对豚鼠分离的心房和心室肌纤维的电生理作用,这些纤维得自未经治疗的动物以及经普罗帕酮3和10 mg kg-1预处理的动物。 28天在未经治疗的心房中,普罗帕酮产生速率和最大跟随频率的剂量依赖性降低,延长了窦房结的恢复时间,并降低了对异丙肾上腺素的最大变时反应。在未经治疗的心房和心室肌纤维中,普罗帕酮降低了动作电位幅度和Vmax,降低了静息膜电位,延长了动作电位持续时间(APD)和有效不应期,相对于APD延长了有效不应期。普罗帕酮可降低K去极化乳头肌中异丙肾上腺素和咖啡因诱导的振幅和Vmax并缩短慢动作电位的持续时间。与未经治疗的心房所获得的值相比,普罗帕酮的预处理降低了心房率,但并未改变其动作电位特征。进一步添加普罗帕酮在未经治疗的心房中产生相似但更明显的变化。在用3 mg kg-1预处理的心室肌纤维中,在进一步添加普罗帕酮之前和之后的动作电位特性与未经处理的纤维相似。但是,与未处理的肌肉或经3 mg kg-1预处理的肌肉相比,经10 mg kg-1预处理的肌肉表现出显着的APD延长。即使此参数与其他两个系列实验中观察到的值相似,普罗帕酮的进一步添加也会缩短APD。结论是,即使普罗帕酮的作用与奎尼丁相似(I类抗心律不齐),它也表现出II类和IV类作用。在经过预处理的动物中,APD的延长(III类作用)也可能与药物的抗心律失常作用有关。

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