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新型抗心律失常药物Bonnecor(AWD 19 - 166,GS 015)对哺乳动物心肌的电生理效应

Electrophysiological effects of a new antiarrhythmic substance Bonnecor (AWD 19-166, GS 015) on mammalian myocardium.

作者信息

Nilius B, Schüttler K, Benndorf K, Boldt W

出版信息

Pharmazie. 1985 Dec;40(12):847-51.

PMID:3841600
Abstract

A new antiarrhythmic acting drug (Bonnecor, AWD 19-166, GS 015, 3- Carbethoxyamino-5-dimethyl-amino-acetyl-iminodibenzyl -hydrochloride) was tested electrophysiologically on isolated sinus node preparations and right ventricular papillary muscle of the rabbit. Transmembrane potentials were measured using a standard microelectrode technique. The substance was tested within a concentration range between 0.1 and 10 mg/l (2.5 X 10(-7) to 2.5 X 10(-5) mol/l). AWD 19-166 exerted negative chronotropic effects due to decreasing of the slope of the diastolic depolarization in sinus node cells. In ventricular myocardium AWD 19-166 increased the threshold strength of stimulation, prolonged the duration of action potentials at 90% but shortened it at 25% repolarization. The maximum upstroke velocity was found to be depressed. The maximum overshoot potential was diminished inspite of a drug-induced hyperpolarization of the resting transmembrane potential. Analysis of membrane responsiveness due to premature stimulation showed a concentration-dependent delay in the restitution of the maximum upstroke velocity of the premature action potentials and both a flattening and a shift towards more negative potentials of the potential-responsiveness relationship. AWD 19-166 decreased both the maximum upstroke velocity and the duration of Ca-mediated action potentials in concentrations between 2 and 8 mg/l. It is concluded that AWD 19-166 is able to exert potent antiarrhythmic effects in influencing both the fast and slow channel activity.

摘要

一种新型抗心律失常药物(邦尼可,AWD 19 - 166,GS 015,3 - 乙氧羰基氨基 - 5 - 二甲氨基 - 乙酰亚氨基二苄基盐酸盐)在兔离体窦房结标本和右心室乳头肌上进行了电生理测试。采用标准微电极技术测量跨膜电位。该物质在0.1至10 mg/l(2.5×10⁻⁷至2.5×10⁻⁵ mol/l)的浓度范围内进行测试。由于窦房结细胞舒张期去极化斜率降低,AWD 19 - 166产生负性变时作用。在心室肌中,AWD 19 - 166增加刺激阈值强度,延长动作电位持续时间至90%复极化但缩短至25%复极化时的动作电位持续时间。发现最大除极速度降低。尽管药物引起静息跨膜电位超极化,但最大超射电位减小。对早搏刺激引起的膜反应性分析显示,早搏动作电位最大除极速度恢复存在浓度依赖性延迟,且电位 - 反应性关系曲线变平并向更负电位偏移。在2至8 mg/l浓度范围内,AWD 19 - 166降低Ca介导的动作电位的最大除极速度和持续时间。结论是AWD 19 - 166能够通过影响快通道和慢通道活性发挥强效抗心律失常作用。

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