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1,3,5-噻二嗪烷-2,4-二酮衍生物作为重要的脲酶抑制剂。

1,3,5-Thiadiazinane thione derivatives as significant urease inhibitors.

机构信息

Department of Chemistry, NED University of Engineering and Technology, Karachi, Pakistan.

Department of Biochemistry, Multidisciplinary Research Lab, Bahria University, Karachi, Pakistan.

出版信息

Pak J Pharm Sci. 2022 May;35(3(Special)):911-917.

Abstract

We report the promising urease inhibitory activity of four sets of tetrahydro thiadiazine thiones (THTT) namely 3,5-disubstituted tetrahydro-2H-1,3,5-thiadiazine thiones: THTT 5-8 (set A) having alkyl/aryl substituents at N-3 and N-5 positions; THTT 9-12 (set B) and THTT 13-14 (set C) with 3-carboxylic acid derivatives and tetrahydro-2H-1,3,5-thiadiazine-6-thione esters 15-16 (set D). Gratifyingly, all four sets of THTT were recognized as promising inhibitors of urease enzyme. Among 12 tested compounds; THTT 6, 8, 10, 14 and 15 from each set respectively, demonstrated significant urease inhibitory activity with IC values between 11.2-29.8μM which is mostly found higher than that for thiourea, a standard urease inhibitor with IC value of 22.4μM. Furthermore, compound 7 showed almost the same level of inhibition (IC = 22.5μM) as of standard. In addition, molecular docking study supported the phenomenon that thiadiazinane ring itself is an active pharmacophore that binds through CH groups and S atom via carbon-hydrogen/π-sulfur interactions respectively to the active site of the urease enzyme. The optimistic results from this study suggest the use of thiadiazinane skeleton as a guided template for the advancement of new urease inhibitors in drug discovery.

摘要

我们报告了四组四氢噻二嗪硫酮(THTT)即 3,5-取代的四氢-2H-1,3,5-噻二嗪硫酮(THTT)5-8(A 组)具有 N-3 和 N-5 位的烷基/芳基取代基;THTT 9-12(B 组)和 THTT 13-14(C 组)具有 3-羧酸衍生物和四氢-2H-1,3,5-噻二嗪-6-硫酮酯 15-16(D 组)。令人高兴的是,四组 THTT 均被认为是有前途的脲酶抑制剂。在 12 种测试化合物中;每组的 THTT 6、8、10、14 和 15 分别表现出显著的脲酶抑制活性,IC 值在 11.2-29.8μM 之间,这比标准脲酶抑制剂硫脲(IC 值为 22.4μM)高得多。此外,化合物 7 的抑制作用几乎与标准品相同(IC=22.5μM)。此外,分子对接研究支持了噻二嗪烷环本身是一种活性药效团的现象,它通过 CH 基团和 S 原子分别通过碳-氢/π-硫相互作用与脲酶的活性位点结合。这项研究的乐观结果表明,噻二嗪烷骨架可作为药物发现中新型脲酶抑制剂的指导模板。

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