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首页> 外文期刊>Steroids: An International Journal >Facile one-pot multicomponent synthesis and molecular docking studies of steroidal oxazole/thiazole derivatives with effective antimicrobial, antibiofilm and hemolytic properties
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Facile one-pot multicomponent synthesis and molecular docking studies of steroidal oxazole/thiazole derivatives with effective antimicrobial, antibiofilm and hemolytic properties

机译:具有有效抗微生物,抗菌和溶血性质的甾醇氧唑/噻唑衍生物的甾体氧唑/噻唑衍生物的组合型多组分合成及分子对接研究

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摘要

A series of steroidal oxazole and thiazole derivatives have been synthesized employing thiosemicarbazide/semicarbazide hydrochloride and ethyl 2-chloroacetoacetate with a simple and facile one-pot multicomponent reaction pathway. The antimicrobial activity of newly synthesized compounds were evaluated against four bacterial strains namely Gram-negative (Escherichia coli and Pseudomonas aeruginosa) and Gram-positive bacteria (Staphylococcus aureus and Listeria monocytogenes) in addition to pathogenic fungi (Candida albicans and Cryptococcus neofonnans). Bioactivity assay manifested that most of the compounds exhibited good antimicrobial activity. To provide additional insight into antimicrobial activity, the compounds were also tested for their antibiofilm activity against S. aureus biofilm. Moreover, molecular docking study shows binding of compounds with amino acid residues of DNA gyrase and glucosamine-6-phosphate synthase (promising antimicrobial target) through hydrogen bonding interactions. Hemolytic activity have been also investigated to ascertain the effect of compounds over RBC lysis and results indicate good prospects for biocompatibility. The expedient synthesis of steroidal heterocycles, effective antibacterial and antifungal behavior against various clinically relevant human pathogens, promising biocompatibility offer opportunities for further modification and potential applications as therapeutic agents.
机译:已经合成了一系列甾醇氧唑和噻唑衍生物,用硫代吡吡啶/氨基脲盐酸盐和乙基2-氯乙酸乙酯,具有简单且容易的一盆多组分反应途径。除了致病性真菌(Candida albicans和Cryptococcus Neofonnans)之外,对四种细菌菌株的新合成化合物的抗微生物活性评估了四种细菌菌株,即革兰阴性(大肠杆菌和假细胞)和革兰氏菌(葡萄球菌和李斯特菌和李斯特菌类单核细胞元)。生物活性测定表现出大部分化合物表现出良好的抗微生物活性。为了提供对抗微生物活性的额外洞察力,还测试了对A抗AUREUS生物膜的抗生素活性的化合物。此外,分子对接研究显示通过氢键相互作用与DNA旋转酶和葡糖胺-6-磷酸氨基酸合成酶(有前途抗菌靶)的氨基酸残基的结合。还研究了溶血活性以确定化合物对RBC裂解的影响,结果表明生物相容性的良好前景。对各种临床相关人类病原体的甾体杂环,有效抗菌和抗真菌行为的权宜之计合成,有前途的生物相容性提供了进一步改性和潜在应用作为治疗剂的机会。

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