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首页> 外文期刊>European Journal of Medicinal Chemistry: Chimie Therapeutique >Synthesis and biological evaluation of some thiazolylpyrazole derivatives as dual anti-inflammatory antimicrobial agents.
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Synthesis and biological evaluation of some thiazolylpyrazole derivatives as dual anti-inflammatory antimicrobial agents.

机译:某些噻唑基吡唑衍生物作为双重抗炎抗菌剂的合成及生物学评价。

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摘要

The synthesis of a novel series of 4-thiazolylpyrazolyl derivatives is described in the present report. All the newly synthesized compounds were examined for their anti-inflammatory activity using cotton pellet-induced granuloma and carrageenan-induced rat paw edema bioassays. Their inhibitory activities of cyclooxygenase-1 and cyclooxygenase-2 (COX-1 and COX-2), ulcerogenic effect and acute toxicity were also determined. Furthermore, all compounds were evaluated for their in vitro antimicrobial activity against Escherichia coli, Staphylococcus aureus and Candida albicans. A docking pose for compounds 8b, 10a and 10b separately in the active site of the human COX-2 enzyme and DNA-gyrase B was also obtained. The results revealed that compounds 8b, 10a and 10b exhibited good anti-inflammatory activity with no or minimal ulcerogenic effect and good safety margin. Compounds 10a and 10b were found to be the most potent anti-inflammatory agents in the present study. Meanwhile, 10a and 10b displayed higher selective inhibitory activity towards COX-2 compared to indomethacin. Moreover, compounds 10a and 10b exhibited promising antibacterial against both E. coli and S. aureus. Docking studies for 8b, 10a and 10b with COX-2 (PDB ID: 1CX2) and DNA-gyrase B (PDB ID: 1EI1) showed good binding profile.
机译:在本报告中描述了一系列新的4-噻唑基吡唑基衍生物的合成。使用棉丸诱导的肉芽肿和角叉菜胶诱导的大鼠爪水肿生物测定法检查了所有新合成的化合物的抗炎活性。还确定了它们对环氧合酶-1和环氧合酶2(COX-1和COX-2)的抑制活性,致溃疡作用和急性毒性。此外,评估了所有化合物对大肠杆菌,金黄色葡萄球菌和白色念珠菌的体外抗菌活性。还获得了化合物8b,10a和10b分别在人COX-2酶和DNA回转酶B的活性位点上的对接姿势。结果表明,化合物8b,10a和10b表现出良好的抗炎活性,没有或仅有最小的致溃疡作用,并且具有良好的安全性。在本研究中发现化合物10a和10b是最有效的抗炎药。同时,与消炎痛相比,10a和10b对COX-2表现出更高的选择性抑制活性。而且,化合物10a和10b对大肠杆菌和金黄色葡萄球菌均显示出有希望的抗菌作用。 8b,10a和10b与COX-2(PDB ID:1CX2)和DNA陀螺酶B(PDB ID:1EI1)的对接研究显示了良好的结合特性。

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