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Synthesis and pharmacological evaluation of 1,3-diaryl substituted pyrazole based (thio)urea derivatives as potent antimicrobial agents against multi-drug resistant Staphylococcus aureus and Mycobacterium tuberculosis

机译:1,3-二芳基取代吡唑基(硫基)脲衍生物作为抗多重耐药金黄色葡萄球菌和结核分枝杆菌的强效抗菌剂的合成及药理学评价

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摘要

The urgent development of newer alternatives has been deemed a panacea for tackling emerging antimicrobial resistance effectively. Herein, we report the design, synthesis, and biological evaluation of 1,3-diaryl substituted pyrazole-based urea and thiourea derivatives as antimicrobial agents. Preliminary screening results revealed that compound 7a (3,4-dichlorophenyl derivative) exhibited potent activity against S. aureus (MIC = 0.25 mu g mL(-1)) and compound 7j (2,4-difluorophenyl derivative) against Mycobacterium tuberculosis (MIC = 1 mu g mL(-1)). Compounds 7a and 7j were non-toxic to Vero cells with a favorable selectivity index of 40 and 200, respectively, and demonstrated good microsomal stability. Compound 7a exhibited equipotent activity (MIC = 0.25 mu g mL(-1)) against various multidrug-resistant strains of S. aureus, which include various strains of MRSA and VRSA, and elicited bacteriostatic properties. In an enzymatic assay, 7a effectively inhibited DNA gyrase supercoiling activity at a concentration of 8 times MIC. Further, molecular modeling studies suggested that compound 7a binds at the active site of DNA gyrase with good affinity.
机译:迫切需要开发新的替代品,被认为是有效应对新出现的抗微生物药物耐药性的灵丹妙药。在此,我们报道了1,3-二芳基取代吡唑基尿素和硫脲衍生物作为抗菌剂的设计、合成和生物学评价。初步筛选结果表明,化合物7a(3,4-二氯苯基衍生物)对金黄色葡萄球菌(MIC = 0.25 μ g mL(-1))和化合物7j(2,4-二氟苯基衍生物)对结核分枝杆菌(MIC = 1 μ g mL(-1))具有较强的活性。化合物7a和7j对Vero细胞无毒,选择性指数分别为40和200,显示出良好的微粒体稳定性。化合物7a对各种耐多药金黄色葡萄球菌菌株(包括MRSA和VRSA菌株)表现出等效活性(MIC=0.25μg mL(-1)),并引发抑菌特性。在酶促测定中,7a在8倍MIC浓度下有效抑制DNA旋转酶超螺旋活性。此外,分子建模研究表明,化合物7a以良好的亲和力结合DNA旋转酶的活性位点。

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