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新型 1,5 和 2,5-二取代四唑对白色念珠菌表面屏障的活性。

New 1,5 and 2,5-disubstituted tetrazoles-dependent activity towards surface barrier of Candida albicans.

机构信息

National Institute of Public Health-National Institute of Hygiene, Chocimska 24, 00-791 Warsaw, Poland.

National Institute of Public Health-National Institute of Hygiene, Chocimska 24, 00-791 Warsaw, Poland.

出版信息

Eur J Med Chem. 2018 Feb 10;145:124-139. doi: 10.1016/j.ejmech.2017.11.089. Epub 2017 Dec 30.

Abstract

A series of novel tetrazole derivatives was synthetized using N-alkylation or Michael-type addition reactions, and screened for their fungistatic potential against Candida albicans (the lack of endpoint = 100%). Among them, the selected compounds 2d, 4b, and 6a differing in substituents at the tetrazole ring were non-toxic to Galleria mellonella larvae in vivo and exerted slight toxicity against Caco-2 in vitro (CC at 256 μg/mL). An antagonistic effect of tetrazole derivatives 2d, 4b, and 6a respectively in combination with Fluconazole was shown using the checker board and colorimetric methods (fractional inhibitory concentration indexes FICIs >1). The most active 2d and 6a displayed an inverse relation between MICs in the presence of exogenous ergosterol, the effect was opposite to Itraconazole and Amphotericin B. The differences between 6a's and 2d's action mode were noted. Combining both flow cytometry and fluorescence image analyses respectively showed the complexity of planktonic and biofilm cell demise mode under the tetrazole derivatives tested. The following evidences for 6a's interaction with fungal membrane were noted: necrosis-like programmed cell death (97.03 ± 0.88), DNA denaturation (no laddering), mitochondrial damage (XTT assay), reduced adhesion to human epithelium (>50% at 0.0313 μg/mL, p ≤ .05), irregular deposit of chitin, and attenuated morphogenesis in mature biofilm. The treatment with 6a reduced pathogenicity of C. albicans during infection in G. mellonella. Contrariwise, 2d enhancing fungal adhesion displayed mechanism targeted to the cell wall (due to the presence of 3-chloropropyl clubbed with aryltetrazole) in the presence of osmotic protector. Under 2d, the accidental cell death (88.60% ± 4.81) was observed. In conclusion, all tetrazole derivatives were obtained in satisfactory yields (60-95%) using efficient, simple and not expensive methods. Fungistatic and slightly anticancer tetrazole derivatives with the novel action mode can circumvent an appearance of antifungal-resistant strains. These results indicate that they are worthy of further studies.

摘要

一系列新型的四唑衍生物通过 N-烷基化或迈克尔加成反应合成,并对其抑制白色念珠菌的真菌潜力进行了筛选(终点缺乏=100%)。其中,在四唑环上取代基不同的所选化合物 2d、4b 和 6a 在体内对金龟子幼虫无毒性,并且在体外对 Caco-2 具有轻微的毒性(CC 在 256μg/mL 时)。使用棋盘法和比色法显示了四唑衍生物 2d、4b 和 6a 分别与氟康唑联合的拮抗作用(分数抑制浓度指数 FICI>1)。在存在外源性麦角固醇的情况下,最活跃的 2d 和 6a 的 MIC 之间存在反比关系,其效果与伊曲康唑和两性霉素 B 相反。注意到 6a 和 2d 的作用模式之间的差异。结合流式细胞术和荧光图像分析,分别显示了在测试的四唑衍生物下浮游和生物膜细胞死亡模式的复杂性。注意到 6a 与真菌膜相互作用的以下证据:坏死样程序性细胞死亡(97.03±0.88),DNA 变性(无梯状),线粒体损伤(XTT 测定),对人上皮细胞的粘附减少(在 0.0313μg/mL 时>50%,p≤.05),几丁质不规则沉积,以及成熟生物膜中的形态发生减弱。在金龟子幼虫感染期间,用 6a 处理可降低白色念珠菌的致病性。相反,2d 增强了真菌的粘附,表现出针对细胞壁的机制(由于存在与芳基四唑相连的 3-氯丙基),同时存在渗透保护剂。在 2d 存在下,观察到意外的细胞死亡(88.60%±4.81)。总之,所有四唑衍生物均采用高效,简单且不昂贵的方法以令人满意的产率(60-95%)获得。具有新型作用模式的抑菌和轻微抗癌的四唑衍生物可以避免抗真菌耐药菌株的出现。这些结果表明它们值得进一步研究。

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