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Antimicrobial Activity of Nitrogen-Containing 5-α-Androstane Derivatives: In Silico and Experimental Studies

机译:含氮5-α-雄甾烷衍生物的抗菌活性:计算机模拟和实验研究

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摘要

We evaluated the antimicrobial activity of thirty-one nitrogen-containing 5-α-androstane derivatives in silico using computer program PASS (Prediction of Activity Spectra for Substances) and freely available PASS-based web applications (such as Way2Drug). Antibacterial activity was predicted for 27 out of 31 molecules; antifungal activity was predicted for 25 out of 31 compounds. The results of experiments, which we conducted to study the antimicrobial activity, are in agreement with the predictions. All compounds were found to be active with MIC (Minimum Inhibitory Concentration) and MBC (Minimum Bactericidal Concentration) values in the range of 0.0005–0.6 mg/mL. The activity of all studied 5-α-androstane derivatives exceeded or was equal to those of Streptomycin and, except for the 3β-hydroxy-17α-aza-d-homo-5α-androstane-17-one, all molecules were more active than Ampicillin. Activity against the resistant strains of , and methicillin-resistant was also shown in experiments. Antifungal activity was determined with MIC and MFC (Minimum Fungicidal Concentration) values varying from 0.007 to 0.6 mg/mL. Most of the compounds were found to be more potent than the reference drugs Bifonazole and Ketoconazole. According to the results of docking studies, the putative targets for antibacterial and antifungal activity are UDP-N-acetylenolpyruvoylglucosamine reductase and 14-α-demethylase, respectively. In silico assessments of the acute rodent toxicity and cytotoxicity obtained using GUSAR (General Unrestricted Structure-Activity Relationships) and CLC-Pred (Cell Line Cytotoxicity Predictor) web-services were low for the majority of compounds under study, which contributes to the chances for those compounds to advance in the development.
机译:我们使用计算机程序PASS(物质的活性谱预测)和可免费获得的基于PASS的Web应用程序(例如Way2Drug),评估了三十一种含氮5-α-雄烷衍生物在计算机中的抗菌活性。 31种分子中有27种具有抗菌活性。预测31种化合物中有25种具有抗真菌活性。我们进行的研究抗菌活性的实验结果与预测相符。发现所有化合物均具有0.0005–0.6 mg / mL的MIC(最小抑菌浓度)和MBC(最小杀菌浓度)值。所有研究的5-α-雄甾烷衍生物的活性均超过或等于链霉素的活性,除3β-羟基-17α-氮杂-d-homo-5α-雄甾烷17-1以外,所有分子的活性均高于氨苄青霉素。在实验中还显示了对,和耐甲氧西林的抗性菌株的活性。用0.007至0.6 mg / mL的MIC和MFC(最小杀真菌浓度)值确定抗真菌活性。发现大多数化合物比参考药物联苯苄唑和酮康唑更有效。根据对接研究的结果,推测的抗菌和抗真菌活性目标分别是UDP-N-乙酰基烯醇丙酮酸酰基葡萄糖胺还原酶和14-α-脱甲基酶。对于大多数正在研究的化合物,使用GUSAR(一般无限制结构与活性关系)和CLC-Pred(细胞系细胞毒性预测因子)网络服务对急性啮齿类动物毒性和细胞毒性进行计算机评估,结果很低,这为这些化合物将促进发展。

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