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新型(E)-4-芳基-2-(2-(吡喃-1-基亚甲基)肼基)噻唑的合成、体外β-葡萄糖醛酸酶抑制活性及计算机研究。

Synthesis, in vitro β-glucuronidase inhibitory activity and in silico studies of novel (E)-4-Aryl-2-(2-(pyren-1-ylmethylene)hydrazinyl)thiazoles.

机构信息

H. E. J. Research Institute of Chemistry, International Center for Chemical and Biological Sciences, University of Karachi, Karachi 75270, Pakistan.

H. E. J. Research Institute of Chemistry, International Center for Chemical and Biological Sciences, University of Karachi, Karachi 75270, Pakistan.

出版信息

Bioorg Chem. 2017 Feb;70:199-209. doi: 10.1016/j.bioorg.2016.12.011. Epub 2016 Dec 31.

Abstract

Current research is based on the synthesis of novel (E)-4-aryl-2-(2-(pyren-1-ylmethylene)hydrazinyl)thiazole derivatives (3-15) by adopting two steps route. First step was the condensation between the pyrene-1-carbaldehyde (1) with the thiosemicarbazide to afford pyrene-1-thiosemicarbazone intermediate (2). While in second step, cyclization between the intermediate (2) and phenacyl bromide derivatives or 2-bromo ethyl acetate was carried out. Synthetic derivatives were structurally characterized by spectroscopic techniques such as EI-MS, H NMR and C NMR. Stereochemistry of the iminic double bond was confirmed by NOESY analysis. All pure compounds 2-15 were subjected for in vitro β-glucuronidase inhibitory activity. All molecules were exhibited excellent inhibition in the range of IC=3.10±0.10-40.10±0.90μM and found to be even more potent than the standard d-saccharic acid 1,4-lactone (IC=48.38±1.05μM). Molecular docking studies were carried out to verify the structure-activity relationship. A good correlation was perceived between the docking study and biological evaluation of active compounds.

摘要

目前的研究基于通过两步法合成新型(E)-4-芳基-2-(2-(芘-1-亚甲基)腙基)噻唑衍生物(3-15)。第一步是将芘-1-甲醛(1)与硫代卡巴肼缩合,得到芘-1-缩氨脲中间体(2)。第二步,中间体(2)与苯乙酮溴化物衍生物或2-溴代乙酸乙酯进行环化反应。合成的衍生物通过 EI-MS、H NMR 和 C NMR 等光谱技术进行结构表征。亚胺双键的立体化学通过 NOESY 分析得到证实。所有纯化合物 2-15 均进行体外β-葡萄糖醛酸酶抑制活性测试。所有分子均表现出优异的抑制活性,IC=3.10±0.10-40.10±0.90μM,甚至比标准的 d-酒石酸 1,4-内酯(IC=48.38±1.05μM)更有效。进行了分子对接研究以验证构效关系。在活性化合物的对接研究和生物评价之间观察到了良好的相关性。

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