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抗菌唑衍生物:抗菌活性、细胞毒性及计算机模拟机制研究

Antibacterial azole derivatives: Antibacterial activity, cytotoxicity, and in silico mechanistic studies.

作者信息

Sari Suat, Avci Ahmet, Koçak Ebru, Kart Didem, Sabuncuoğlu Suna, Doğan İnci Selin, Özdemir Zeynep, Bozbey İrem, Karakurt Arzu, Saraç Selma, Dalkara Sevim

机构信息

Department of Pharmaceutical Chemistry, Hacettepe University Faculty of Pharmacy, Ankara, Turkey.

Department of Pharmaceutical Microbiology, Hacettepe University Faculty of Pharmacy, Ankara, Turkey.

出版信息

Drug Dev Res. 2020 Dec;81(8):1026-1036. doi: 10.1002/ddr.21721. Epub 2020 Jul 30.

Abstract

Azole antifungal drugs are commonly used in antifungal chemotherapy. Antibacterial effects of some topical antifungals, such as miconazole and econazole, have lately been revealed, which suggests a promising venue in antimicrobial chemotherapy. In this study, we tested an in-house azole collection with antifungal properties for their antibacterial activity to identify dual-acting hits using the broth microdilution method. The in vitro screen yielded a number of potent derivatives against gram-positive bacteria, Enterococcus faecalis and Staphylococcus aureus. Compound 73's minimum inhibitory concentration (MIC) value less than 1 μg/ml against S. aureus; however, none of the compounds showed noteworthy activity against methicillin-resistant S. aureus (MRSA). All the active compounds were found safe at their MIC values against the healthy fibroblast cells in the in vitro cytotoxicity test. Molecular docking studies of the most active compounds using a set of docking programs with flavohemoglobin (flavoHb) structure, the proposed target of the azole antifungals with antibacterial activity, presented striking similarities regarding the binding modes and interactions between the tested compounds and the antifungal drugs with crystallographic data. In addition to being noncytotoxic, the library was predicted to be drug-like and free of pan-assay interference compounds (PAINS). As a result, the current study revealed several potential azole derivatives with both antifungal and antibacterial activities. Inhibition of bacterial flavoHb was suggested as a possible mechanism of action for the title compounds.

摘要

唑类抗真菌药物常用于抗真菌化疗。最近发现一些局部用抗真菌药,如咪康唑和益康唑,具有抗菌作用,这为抗菌化疗提供了一个有前景的方向。在本研究中,我们使用肉汤微量稀释法测试了一组具有抗真菌特性的自制唑类化合物的抗菌活性,以鉴定具有双重作用的活性化合物。体外筛选产生了许多对革兰氏阳性菌粪肠球菌和金黄色葡萄球菌有效的衍生物。化合物73对金黄色葡萄球菌的最低抑菌浓度(MIC)值小于1μg/ml;然而,这些化合物对耐甲氧西林金黄色葡萄球菌(MRSA)均未表现出显著活性。在体外细胞毒性试验中,所有活性化合物在其针对健康成纤维细胞的MIC值下均被发现是安全的。使用一组对接程序对最具活性的化合物与黄素血红蛋白(flavoHb)结构进行分子对接研究,flavoHb是具有抗菌活性的唑类抗真菌药的假定靶点,结果显示受试化合物与抗真菌药物之间的结合模式和相互作用与晶体学数据有显著相似性。除了无细胞毒性外,该化合物库还被预测具有类药性质且不含泛测定干扰化合物(PAINS)。因此,本研究揭示了几种具有抗真菌和抗菌活性的潜在唑类衍生物。细菌黄素血红蛋白的抑制被认为是标题化合物可能的作用机制。

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