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首页> 外文期刊>Chemical biology and drug design >Synthesis, Evaluation of Pharmacological Activities and Quantitative Structure-Activity Relationship Studies of a Novel Group of bis(4-Nitroaryl-1,4-dihyropyridine)
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Synthesis, Evaluation of Pharmacological Activities and Quantitative Structure-Activity Relationship Studies of a Novel Group of bis(4-Nitroaryl-1,4-dihyropyridine)

机译:一类新的双(4-硝基芳基-1,4-二氢吡啶)基团的合成,药理活性评价和定量构效关系研究

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Voltage-dependent calcium channels are crucial targets for a wide range of clinically active pharmacological agents. From these agents, 1,4-dihydropyridines constitute a group of small organic compounds are based on a core pyridine structure which can both block and enhance calcium currents. They are considered specific for L-Type calcium channels; however, other channel types, and in particular certain T-Type channels, may show sensitivity to dihydropyridine compounds. In this study, we synthesized a novel group of bis-1,4-dihydropyridines using the procedure reported by Dagnino that involved the condensation of n-alkyl diacetoacetate (n = 2-7) with methyl-3-aminocrotonate and nitrophenylaldehyde. The synthesis was run under two conditions: (i) reflux and (ii) microwave. Calcium channels antagonist activity were determined in vitro using guinea-pig ileum longitudinal smooth muscle assay. Synthesis of these compounds was confirmed with 1H-NMR, IR and mass spectrometry. Then IC50 of them are calculated and compared with Nifedipine. Finally, the result of this pharmacological assay was used in quantitative structure-activity relationship studies utilizing multiple linear regression analysis. Most of these compounds are less active compared with Nifedipine. Decrease in activity is the result of increase in steric hindrance. The quantitative structure-activity relationship study indicates that the activity is related to the electrostatic and topological parameters and the distance between two C5-esteric groups of 1,4-dihydropyridine rings.
机译:电压依赖性钙通道是广泛的临床活性药物的关键靶标。从这些试剂中,1,4-二氢吡啶构成一组基于核心吡啶结构的小有机化合物,该结构既可以阻断也可以增强钙电流。它们被认为对L型钙通道具有特异性。但是,其他通道类型,尤其是某些T型通道可能显示出对二氢吡啶化合物的敏感性。在这项研究中,我们使用Dagnino报道的方法合成了一组新的bis-1,4-dihydropyrididines,该方法涉及将n-烷基二乙酰乙酸酯(n = 2-7)与3-氨基巴豆酸甲酯和硝基苯醛缩合。该合成在两个条件下进行:(i)回流和(ii)微波。使用豚鼠回肠纵向平滑肌测定法体外测定钙通道拮抗剂活性。这些化合物的合成通过1 H-NMR,IR和质谱确认。然后计算它们的IC50,并与硝苯地平进行比较。最后,该药理分析的结果用于利用多重线性回归分析的定量构效关系研究中。与硝苯地平相比,大多数这些化合物的活性较低。活动减少是空间位阻增加的结果。定量构效关系研究表明,该活性与静电和拓扑参数以及1,4-二氢吡啶环的两个C5酯基之间的距离有关。

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