Pozzoni L, Romano S, Beltrami A, Calosso E, Verzoni A, Longoni A, Croce L
Int J Clin Pharmacol Res. 1985;5(4):229-36.
Electrophysiological properties of mexiletine (3 mg/kg i.v.) were studied in fifteen patients with various degrees of abnormalities in the specialized conduction system. Sinus cycle length was decreased in all patients; sinus node recovery time was increased in all patients, but the increment was not statistically significant. Atrial and atrioventricular (AV) nodal refractoriness were not modified. The relative refractory period of the His-Purkinje system was reduced in patients with normal intraventricular conduction on the surface electrocardiogram; no changes were noted in five patients with intraventricular conduction delay. In two patients, in whom AV nodal refractory period curves showed antegrade dual AV nodal pathways, mexiletine increased refractoriness of the fast pathway. This report points out that the drug is effective against arrhythmias sustained by a reentry mechanism, not only in the ventricles, but also in the AV node.
对15例特殊传导系统存在不同程度异常的患者研究了美西律(静脉注射3mg/kg)的电生理特性。所有患者的窦性周期长度均缩短;所有患者的窦房结恢复时间均延长,但增加无统计学意义。心房及房室(AV)结不应期未改变。体表心电图显示室内传导正常的患者,希氏-浦肯野系统的相对不应期缩短;5例室内传导延迟的患者未观察到变化。在2例房室结不应期曲线显示存在前向双房室结径路的患者中,美西律增加了快径路的不应性。本报告指出,该药不仅对心室,而且对房室结由折返机制维持的心律失常有效。