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丁香酚 - 对甲苯磺酸盐及其同系物与氟康唑对白色念珠菌的协同相互作用。

Synergistic Interactions of Eugenol-tosylate and Its Congeners with Fluconazole against Candida albicans.

作者信息

Ahmad Aijaz, Wani Mohmmad Younus, Khan Amber, Manzoor Nikhat, Molepo Julitha

机构信息

Department of Oral Biological Sciences, School of Oral Health Sciences, Faculty of Health Sciences, University of the Witwatersrand, 7 York Road, Parktown, Johannesburg, South Africa.

Departmento de Quimica, FCTUC, Universidade de Coimbra, Rua Larga, Coimbra, Portugal.

出版信息

PLoS One. 2015 Dec 22;10(12):e0145053. doi: 10.1371/journal.pone.0145053. eCollection 2015.

Abstract

We previously reported the antifungal properties of a monoterpene phenol "Eugenol" against different Candida strains and have observed that the addition of methyl group to eugenol drastically increased its antimicrobial potency. Based on the results and the importance of medicinal synthetic chemistry, we synthesized eugenol-tosylate and its congeners (E1-E6) and tested their antifungal activity against different clinical fluconazole (FLC)- susceptible and FLC- resistant C. albicans isolates alone and in combination with FLC by determining fractional inhibitory concentration indices (FICIs) and isobolograms calculated from microdilution assays. Minimum inhibitory concentration (MIC) results confirmed that all the tested C. albicans strains were variably susceptible to the semi-synthetic derivatives E1-E6, with MIC values ranging from 1-62 μg/ml. The test compounds in combination with FLC exhibited either synergy (36%), additive (41%) or indifferent (23%) interactions, however, no antagonistic interactions were observed. The MICs of FLC decreased 2-9 fold when used in combination with the test compounds. Like their precursor eugenol, all the derivatives showed significant impairment of ergosterol biosynthesis in all C. albicans strains coupled with down regulation of the important ergosterol biosynthesis pathway gene-ERG11. The results were further validated by docking studies, which revealed that the inhibitors snugly fitting the active site of the target enzyme, mimicking fluconazole, may well explain their excellent inhibitory activity. Our results suggest that these compounds have a great potential as antifungals, which can be used as chemosensitizing agents with the known antifungal drugs.

摘要

我们之前报道了单萜酚“丁香酚”对不同念珠菌菌株的抗真菌特性,并观察到在丁香酚上添加甲基会显著提高其抗菌效力。基于这些结果以及药物合成化学的重要性,我们合成了对甲苯磺酸丁香酚酯及其同系物(E1 - E6),并通过测定微量稀释试验计算的部分抑菌浓度指数(FICIs)和等效线图,单独以及与氟康唑(FLC)联合测试了它们对不同临床氟康唑敏感和耐药的白色念珠菌分离株的抗真菌活性。最低抑菌浓度(MIC)结果证实,所有测试的白色念珠菌菌株对半合成衍生物E1 - E6的敏感性各不相同,MIC值范围为1 - 62μg/ml。测试化合物与氟康唑联合使用时表现出协同(36%)、相加(41%)或无关(23%)相互作用,然而,未观察到拮抗相互作用。当与测试化合物联合使用时,氟康唑的MIC降低了2 - 9倍。与它们的前体丁香酚一样,所有衍生物在所有白色念珠菌菌株中均显示麦角固醇生物合成受到显著损害,同时重要的麦角固醇生物合成途径基因ERG11的表达下调。对接研究进一步验证了这些结果,该研究表明这些抑制剂紧密契合靶酶的活性位点,模仿氟康唑,这很可能解释了它们出色的抑制活性。我们的结果表明,这些化合物作为抗真菌剂具有巨大潜力,可用作已知抗真菌药物的化学增敏剂。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2277/4980062/fa7151c53c92/pone.0145053.g001.jpg

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