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3,5-二取代噻唑烷-2,4-二酮:设计、微波辅助合成、抗真菌活性和 ADMET 筛选。

3,5-Disubstituted Thiazolidine-2,4-Diones: Design, Microwave-Assisted Synthesis, Antifungal Activity, and ADMET Screening.

机构信息

1 "Iuliu Haţieganu" University of Medicine and Pharmacy, Department of Pharmaceutical Chemistry, Cluj-Napoca, Romania.

2 National Institute for Research and Development of Isotopic and Molecular Technologies, Cluj-Napoca, Romania.

出版信息

SLAS Discov. 2018 Sep;23(8):807-814. doi: 10.1177/2472555218759035. Epub 2018 Feb 13.

Abstract

A series of 12 new thiazolidine-2,4-dione derivatives were obtained by microwave-assisted synthesis. All compounds were physicochemically characterized by quantitative elemental C, H, N, S analysis and spectral data (mass spectrometry [MS], infrared [IR], and nuclear magnetic resonance [NMR]), with the results being in agreement with the expected data. An in vitro screening performed on Candida albicans ATCC 10231 showed their moderate antifungal activity, which was further investigated by determining the minimum inhibitory concentration and minimum fungicidal concentration values for the most active compounds on four strains of Candida. The molecular docking studies, performed against a fungal lanosterol 14α-demethylase, emphasized the importance of different molecular fragments in the compounds' structures for their antifungal activity. The synthesized compounds were subjected to in silico screening for the prediction of their absorption, distribution, metabolism, excretion, and toxicity (ADMET) and molecular properties. The results of the antifungal activity assays, docking study, and ADMET predictions revealed that the synthesized compounds are potential anti- Candida agents that might act by interacting with the fungal lanosterol 14α-demethylase and could be further optimized and developed as antifungal agents.

摘要

通过微波辅助合成得到了一系列 12 种新的噻唑烷-2,4-二酮衍生物。所有化合物均通过定量元素 C、H、N、S 分析和光谱数据(质谱 [MS]、红外 [IR] 和核磁共振 [NMR])进行了理化表征,结果与预期数据一致。对白色念珠菌 ATCC 10231 进行的体外筛选显示它们具有中等的抗真菌活性,进一步通过确定最活跃的化合物对四种念珠菌菌株的最小抑菌浓度和最小杀菌浓度值来研究其活性。针对真菌角鲨烯 14α-脱甲基酶进行的分子对接研究强调了化合物结构中不同分子片段对其抗真菌活性的重要性。对合成的化合物进行了吸收、分布、代谢、排泄和毒性 (ADMET) 和分子特性的计算机筛选预测。抗真菌活性测定、对接研究和 ADMET 预测的结果表明,所合成的化合物是潜在的抗白色念珠菌药物,可能通过与真菌角鲨烯 14α-脱甲基酶相互作用发挥作用,并可进一步优化和开发为抗真菌药物。

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