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新型正性肌力药物的药理学、晶体学及量子化学研究

A pharmacological, crystallographic, and quantum chemical study of new inotropic agents.

作者信息

Dorigo P, Gaion R M, Belluco P, Fraccarollo D, Maragno I, Bombieri G, Benetollo F, Mosti L, Orsini F

机构信息

Department of Pharmacology, University of Padova, Italy.

出版信息

J Med Chem. 1993 Aug 20;36(17):2475-84. doi: 10.1021/jm00069a005.

Abstract

The cardiac activity of a series of milrinone analogues, 2-substituted 3-acyl-1,6-dihydro-6-oxo-5-pyridinecarbonitriles, 1,6,3,2,11,12-hexahydro-6,3-dioxo-5-quinolinecarbonitriles, the correlated carboxylic acids, 2-substituted 3-acyl-6(1H)-pyridones, and 7,8-dihydro-2,5(1H,6H)-quinolinediones, was evaluated in spontaneously beating and in electrically driven atria from reserpine-treated guinea pigs. Their effects were compared with those induced by amrinone and milrinone in both the atria preparations. Compounds SF28 (3-acetyl-1,6-dihydro-2-methyl-6-oxo-5-pyridinecarbonitrile) and SF40 (7,8-dihydro-7-methyl-2,5(1H,6H)-quinolinedione) were the most effective positive inotropic agents. An inhibition of the negative influence exerted by endogenous adenosine on heart preparations seems to be involved in their contractile activity. SF38 (3-benzoyl-2-phenyl-6(1H)-pyridinone), on the contrary, reduced the contractile force and the frequency rate of guinea pig atria with a mechanism not related to an activation of cholinergic or purinergic inhibitory receptors on the heart. X-ray analysis carried out on the three model compounds, SF28, SF40 (positive inotropic agents), and SF38 (negative inotropic agent), and molecular modeling evidenced that the change from phenyl (SF38) to methyl (SF28) or the introduction of a side cyclic aliphatic chain (SF40) results in a variation of conformational preference and topography which may address the different molecules toward distinct receptor pockets according to the resulting inotropic effect.

摘要

对一系列米力农类似物、2-取代的3-酰基-1,6-二氢-6-氧代-5-吡啶甲腈、1,6,3,2,11,12-六氢-6,3-二氧代-5-喹啉甲腈、相关羧酸、2-取代的3-酰基-6(1H)-吡啶酮以及7,8-二氢-2,5(1H,6H)-喹啉二酮在利血平处理的豚鼠的自主搏动和电驱动心房中的心脏活性进行了评估。在两种心房制剂中,将它们的作用与氨力农和米力农诱导的作用进行了比较。化合物SF28(3-乙酰基-1,6-二氢-2-甲基-6-氧代-5-吡啶甲腈)和SF40(7,8-二氢-7-甲基-2,5(1H,6H)-喹啉二酮)是最有效的正性肌力药物。它们的收缩活性似乎与抑制内源性腺苷对心脏制剂的负面影响有关。相反,SF38(3-苯甲酰基-2-苯基-6(1H)-吡啶酮)降低了豚鼠心房的收缩力和频率,其机制与激活心脏上的胆碱能或嘌呤能抑制性受体无关。对三种模型化合物SF28、SF40(正性肌力药物)和SF38(负性肌力药物)进行的X射线分析以及分子建模表明,从苯基(SF38)变为甲基(SF28)或引入侧链环状脂肪族链(SF40)会导致构象偏好和拓扑结构的变化,这可能根据产生的正性肌力作用使不同分子朝向不同的受体口袋。

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