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Synthesis, In Silico Study and Antiurease Potential of Imine Derivatives

机译:亚胺衍生物的合成,计算机模拟研究和抗脲酶潜力

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摘要

In search of potent urease inhibitors, we have biologically evaluated our synthesized imine derivatives against jack bean urease. In vitro assay results showed that compound 3f with IC50 value of 16.500.20 mu M can be considered as the most potent urease inhibitor, whereas compounds 3a (IC50=23.10 +/- 0.11 mu M) and 3n (IC50=23.34 +/- 0.21 mu M) were second and third most potent inhibitors, respectively. In silico study revealed that all compounds have good penetration across BBB and HIA; however, AMES toxicity and carcinogenic profiles of more than half of the compounds were not satisfactory. Leading compound 3f was predicted to have very less penetration across BBB, whereas pharmacokinetic profile of compound 3l was better than all other compounds with no toxicity and carcinogenicity. The synthesized compounds can be used as structural foundation for the preparation of new potent urease inhibitors.[GRAPHICS]
机译:为了寻找有效的脲酶抑制剂,我们已对合成的亚胺衍生物对杰克豆脲酶进行了生物学评估。体外测定结果表明,化合物3f的IC50值为16.500.20μM,可以认为是最有效的脲酶抑制剂,而化合物3a(IC50 = 23.10 +/- 0.11μM)和3n(IC50 = 23.34 +/-) 0.21μM)分别是第二强和第三强抑制剂。计算机分析表明,所有化合物均能很好地穿透BBB和HIA。但是,半数以上化合物的AMES毒性和致癌性均不令人满意。据预测,领先的化合物3f穿透BBB的可能性非常小,而化合物3l的药代动力学特性优于所有其他没有毒性和致癌性的化合物。合成的化合物可作为制备新型有效脲酶抑制剂的结构基础。[GRAPHICS]

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