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硝基呋喃-三唑同系物的合成及其抗菌潜力

Synthesis and antimicrobial potential of nitrofuran-triazole congeners.

作者信息

Kamal Ahmed, Hussaini S M Ali, Sucharitha M Lakshmi, Poornachandra Y, Sultana Faria, Ganesh Kumar C

机构信息

Medicinal Chemistry & Pharmacology, CSIR-Indian Institute of Chemical Technology, Hyderabad 500 007, India.

出版信息

Org Biomol Chem. 2015 Sep 28;13(36):9388-97. doi: 10.1039/c5ob01353d. Epub 2015 Aug 4.

Abstract

A series of 5-nitrofuran-triazole congeners were designed and synthesized by carrying out suitable structural modifications of the previously reported counterparts and were evaluated for their antimicrobial potential against both Gram-positive and Gram-negative bacterial strains. The compounds exhibited promising inhibition towards different Gram-positive pathogenic strains, while mild inhibitory effects were observed towards Gram-negative bacterial strains. Some of the compounds 9f, 9g, 9l and 9m were most active among the series, exhibiting a MIC value of 1.9 μg mL(-1) against different bacterial strains. The bactericidal activity was found to be in coherence with the bacterial growth inhibition data. The compounds were tested against fourteen different fungal strains and were found to possess excellent antifungal activities. Interestingly, all the compounds were equipotent to miconazole against one or more of the tested fungal strains and showed good activity against the other counterparts. A similar trend was observed in the case of their minimum fungicidal concentration values. Moreover, compound 9f exhibited two fold superior antifungal activity (MIC = 3.9 μg mL(-1)) than the standard miconazole (MIC = 7.8 μg mL(-1)) against C. albicans and C. parapsilosis. These compounds also effectively inhibited biofilm formation and compound 9f exhibited excellent anti-biofilm activity demonstrating a biofilm inhibitory concentration (BIC) as low as 0.8 μg mL(-1). A brief mechanistic study carried out on the most effective conjugate 9f indicated that it inhibits the ergosterol biosynthesis, thereby exhibiting antifungal effects. Molecular modelling studies carried out to study the binding modes of 9f correlates well with the antifungal activity and supported by ergosterol biosynthesis inhibition assay data. Most of these compounds exhibited ten times lower cytotoxicity toward the normal cells compared to the antimicrobial activity.

摘要

通过对先前报道的类似物进行适当的结构修饰,设计并合成了一系列5-硝基呋喃-三唑类似物,并评估了它们对革兰氏阳性和革兰氏阴性细菌菌株的抗菌潜力。这些化合物对不同的革兰氏阳性致病菌株表现出有前景的抑制作用,而对革兰氏阴性细菌菌株则观察到轻微的抑制作用。该系列中的一些化合物9f、9g、9l和9m活性最高,对不同细菌菌株的最低抑菌浓度(MIC)值为1.9 μg mL⁻¹。发现杀菌活性与细菌生长抑制数据一致。这些化合物针对14种不同的真菌菌株进行了测试,发现具有优异的抗真菌活性。有趣的是,所有化合物对一种或多种测试真菌菌株的活性与咪康唑相当,对其他菌株也表现出良好的活性。在它们的最低杀菌浓度值方面也观察到类似趋势。此外,化合物9f对白色念珠菌和近平滑念珠菌的抗真菌活性(MIC = 3.9 μg mL⁻¹)比标准咪康唑(MIC = 7.8 μg mL⁻¹)高两倍。这些化合物还能有效抑制生物膜形成,化合物9f表现出优异的抗生物膜活性,生物膜抑制浓度(BIC)低至0.8 μg mL⁻¹。对最有效的共轭物9f进行的简要机理研究表明,它抑制麦角甾醇的生物合成,从而表现出抗真菌作用。为研究9f的结合模式而进行的分子建模研究与抗真菌活性密切相关,并得到麦角甾醇生物合成抑制试验数据的支持。与抗菌活性相比,这些化合物中的大多数对正常细胞的细胞毒性低十倍。

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