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[2-氨基吡啶及其磺酰脲衍生物对豚鼠心房机电活动的抗胆碱能作用]

[Anticholinergic effect of 2-aminopyridine and its sulfonylcarbamide derivatives on electromechanical activity in guinea pig atrium].

作者信息

Gendviliene Vida, Zablockaite Danguole, Martisiene Irma, Gurskaite Herta, Stankevicius Antanas

机构信息

Institute of Cardiology, Kaunas University of Medicine, Sukileliu 17, 50161 Kaunas, Lithuania.

出版信息

Medicina (Kaunas). 2007;43(10):808-15.

Abstract

The aim of the study was to investigate an action of 2-aminopyridine and its new sulfonylcarbamide derivatives 2-AP21, 2-AP22, 2-AP26, and 2-AP27 (10(-5)-10(-3) M) on carbachol-induced shortening of action potential duration and reduction of contraction force in guinea pig atrial muscles. Experiments were carried out using a standard method of myocardium electromechanical activity registration. Under control conditions (perfusion of atrial strips with Tyrode solution), an average of action potential duration, measured at 90% (AP90) and 50% (AP50) of repolarization, were 112.32+/-6.07 ms and 50.21+/-3.25 ms, (n=19), respectively, and contraction force was of 1.42+/-0.28 mN (n=20). Carbachol (10(-6)M), an agonist of muscarinic acetylcholine receptor and activator of K(Ach) channels, markedly decreased AP90 to 35.31+/-4.21%, AP50--to 26.42+/-2.66% (n=19) (P<0.001), and contraction force--to 24.23+/-2.0% (n=20) (P<0.001) vs. control. Modification of 2-aminopyridine structure by replacing 2-amino group by 4-toluolsulfonylcarbamide fragment and quaternization of nitrogen in pyridine ring increased anticholinergic effect on action potential duration and contraction force. According to their maximal prolongation of AP at 90% of repolarization, all new drugs ranked as follows: 2-AP27>>2-AP26>2-AP22> or =2-AP>2-AP21. 2-aminopyridine derivative 2-AP27, containing 4-toluolsulfonylcarbamide fragment and 4-nitrobenzyl radical at quaternized nitrogen of the pyridine, had the most potent anticholinergic effect on AP90 (936.60+/-178.23%). 2-AP22 and 2-AP26 (containing methyl or allyl radicals at quaternized nitrogen of the pyridine, respectively) showed a much weaker anticholinergic effect (231.39+/-28.48% and 318.25+/-63.81%, respectively). The weakest anticholinergic effect (63.59+/-34.38%) was induced by 2-aminopyridine derivative 2-AP21, which had non-quaternized nitrogen of the pyridine.

摘要

本研究的目的是研究2-氨基吡啶及其新的磺酰脲衍生物2-AP21、2-AP22、2-AP26和2-AP27(10⁻⁵ - 10⁻³ M)对豚鼠心房肌中卡巴胆碱诱导的动作电位时程缩短和收缩力降低的作用。实验采用心肌机电活动记录的标准方法进行。在对照条件下(用台氏液灌注心房条),在复极化的90%(AP90)和50%(AP50)处测量的平均动作电位时程分别为112.32±6.07 ms和50.21±3.25 ms(n = 19),收缩力为1.42±0.28 mN(n = 20)。毒蕈碱型乙酰胆碱受体激动剂和K(Ach)通道激活剂卡巴胆碱(10⁻⁶ M)显著降低AP90至35.31±4.21%,AP50至26.42±2.66%(n = 19)(P < 0.001),收缩力降至24.23±2.0%(n = 20)(P < 0.001),与对照相比。通过用4-甲苯磺酰脲片段取代2-氨基基团并使吡啶环中的氮季铵化来修饰2-氨基吡啶结构,增强了对动作电位时程和收缩力的抗胆碱能作用。根据它们在复极化90%时对AP的最大延长,所有新药的排序如下:2-AP27>>2-AP26>2-AP22≥2-AP>2-AP21。2-氨基吡啶衍生物2-AP27在吡啶的季铵化氮处含有4-甲苯磺酰脲片段和4-硝基苄基,对AP90具有最强的抗胆碱能作用(936.60±178.23%)。2-AP22和2-AP26(分别在吡啶的季铵化氮处含有甲基或烯丙基)显示出弱得多的抗胆碱能作用(分别为231.39±28.48%和318.25±63.81%)。2-氨基吡啶衍生物2-AP21具有未季铵化的吡啶氮,其诱导的抗胆碱能作用最弱(63.59±34.38%)。

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