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Design and Synthesis of New Barbituric- and Thiobarbituric Acid Derivatives as Potent Urease Inhibitors: Structure Activity Relationship and Molecular Modeling Studies

机译:新的巴比妥酸和硫代巴比妥酸衍生物作为强脲酶抑制剂的设计与合成:结构活性关系和分子建模研究

摘要

In this study 36 new compounds were synthesized by condensing barbituric acid or thiobarbituric acid and respective anilines (bearing different substituents) in the presence of triethyl orthoformate in good yields. In vitro urease inhibition studies against jack bean urease revealed that barbituric acid derived compounds (1-9 and 19-27) were found to exhibit low to moderate activity however thiobarbituric acid derived compounds (10-18 and 28-36) showed significant inhibition activity at low micro-molar concentrations. Among the synthesized compounds, compounds (15), (12), (10), (36), (16) and (35) showed excellent urease inhibition with IC50 values 8.53±0.027, 8.93±0.027, 12.96±0.13, 15±0.098, 18.9±0.027 and 19.7±0.63 μM, respectively, even better than the reference compound thiourea (IC50 = 21±0.011). The compound (11) exhibited comparable activity to the standard with IC50 value 21.83±0.19 μM. In silico molecular docking studies for most active compounds (10), (12), (15), (16), (35) and (36) and two inactive compounds (3) and (6) were performed to predict the binding patterns.
机译:在这项研究中,在原甲酸三乙酯存在下,通过缩合巴比妥酸或硫代巴比妥酸和各自的苯胺(带有不同的取代基),合成了36种新化合物。对波豆尿素酶的体外脲酶抑制研究表明,发现巴比妥酸衍生的化合物(1-9和19-27)显示低至中等活性,而硫代巴比妥酸衍生的化合物(10-18和28-36)显示出显着的抑制活性在低摩尔浓度下。在合成的化合物中,化合物(15),(12),(10),(36),(16)和(35)表现出优异的脲酶抑制作用,IC50值为8.53±0.027、8.93±0.027、12.96±0.13、15± 0.098、18.9±0.027和19.7±0.63μM,甚至优于参考化合物硫脲(IC50 = 21±0.011)。化合物(11)表现出与标准品相当的活性,IC50值为21.83±0.19μM。在计算机分子对接研究中,对大多数活性化合物(10),(12),(15),(16),(35)和(36)以及两种非活性化合物(3)和(6)进行了预测,以预测结合方式。

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