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作为潜在的膜活性广谱抗菌剂的独特亚氨基四氢小檗碱-环硼氧烷甲硝唑。

Unique iminotetrahydroberberine-corbelled metronidazoles as potential membrane active broad-spectrum antibacterial agents.

机构信息

Institute of Bioorganic & Medicinal Chemistry, Key Laboratory of Applied Chemistry of Chongqing Municipality, School of Chemistry and Chemical Engineering, Southwest University, Chongqing 400715, PR China.

School of Chemical Engineering, Chongqing University of Technology, Chongqing 400054, PR China.

出版信息

Bioorg Med Chem Lett. 2022 Nov 15;76:129012. doi: 10.1016/j.bmcl.2022.129012. Epub 2022 Sep 29.

Abstract

In an effort for fighting with dreadful drug resistance, iminotetraberberine was hybridized with metronidazole to construct a unique type of potential broad-spectrum antibacterial iminotetrahydroberberine-corbelled metronidazoles. Some prepared hybrids exerted promising inhibitory effects against the tested microorganisms in comparison to the natural berberine, clinical metronidazole and norfloxacin. Noticeably, phenyl oxime derivative 8e displayed a broad antibacterial spectrum with a quite low MIC value of 0.024 mM against P. aeruginosa, being 63-, 62- and 2-fold to berberine, metronidazole and norfloxacin, respectively. The active compound 8e with low cytotoxicity under effective bacteriostatic concentration could decrease biofilm viability and show much lower trend to induce the resistant development than norfloxacin in the tested period. Mechanism investigation showed that compound 8e could disturb the bacterial membrane to lead to the leakage of cellular contents, thus exerting potent antibacterial potency. It was also revealed that compound 8e could interact with penicillin binding protein via multi-site non-covalent binding in docking simulation. The above results manifested that iminotetrahydroberberine-corbelled metronidazoles might bring hope for the exploitation of new broad-spectrum antibacterial agents with a membrane-destruction mechanism.

摘要

为了与可怕的耐药性作斗争,将小檗胺与甲硝唑杂交,构建了一种独特的潜在广谱抗菌小檗碱-桥接甲硝唑类化合物。与天然小檗碱、临床甲硝唑和诺氟沙星相比,一些制备的杂化物对测试的微生物表现出有希望的抑制作用。值得注意的是,苯肟衍生物 8e 对铜绿假单胞菌具有广谱抗菌活性,MIC 值低至 0.024 mM,分别是小檗碱、甲硝唑和诺氟沙星的 63、62 和 2 倍。在有效抑菌浓度下具有低细胞毒性的活性化合物 8e 可以降低生物膜的活力,并在测试期间比诺氟沙星显示出更低的诱导耐药发展的趋势。机制研究表明,化合物 8e 可以通过干扰细菌膜导致细胞内容物泄漏,从而发挥强大的抗菌作用。通过对接模拟还表明,化合物 8e 可以通过多点非共价键与青霉素结合蛋白相互作用。上述结果表明,小檗碱-桥接甲硝唑类化合物可能为开发具有破坏膜机制的新型广谱抗菌药物带来希望。

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