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新型基于芳基偶氮的(色烯-噻唑)杂化物作为潜在的耐甲氧西林金黄色葡萄球菌抑制剂

New Arylazo-Based (Chromene-Thiazole) Hybrids as Potential MRSA Inhibitors.

作者信息

Abdallah Zeinab A, Sanad Sherif M H, Mekky Ahmed E M, Ahmed Mohamed S Mohamed

机构信息

Chemistry Department, Faculty of Science, Cairo University, Giza, 12613, Egypt.

出版信息

Chem Biodivers. 2023 Apr;20(4):e202300206. doi: 10.1002/cbdv.202300206. Epub 2023 Mar 22.

Abstract

A three-component protocol was established to efficiently synthesize (chromene-thiazole) and related arylazo analogs in good to excellent yields. The desired products were prepared by reacting the appropriate salicylaldehydes, 2-cyanothioacetamide, and chloroacetone or hydrazonyl chlorides. Using piperidine as a mediator in ethanol at 80 °C for 4-6 h, the three-component protocol produce the target hybrids in 87-96 % yields. The newly synthesized products showed a broad range of antibacterial activity. The addition of an arylazo unit at the chromene-C6 position significantly improved the antibacterial activity, while the impact of adding an arylazo group at the thiazole-C5 position varied based on the electronic characteristics of the para-substituted arene unit. Generally, series that is linked to two arylazo units, one at chromene-C6 and the other at thiazole-C5, showed the best activity. Some new hybrids showed effective antibacterial activity than ciprofloxacin with MIC/MBC values up to 1.9/3.9 μM against S. aureus and E. coli. Additionally, they demonstrated better effectiveness against MRSA ATCC:33591 and ATCC:43300 compared to linezolid, with MIC/MBC values up to 4.0/16.1 and 3.9/15.6 μM, respectively. The data predicted for the physicochemical properties, lipophilicity, pharmacokinetics, and drug-likeness of new arylazo-based chromene-thiazole hybrids evaluated by SwissADME. As a result of the above, products that are linked to two arylazo units can be considered drug-like scaffolds.

摘要

建立了一种三组分方案,以高效合成(色烯 - 噻唑)及其相关的芳基偶氮类似物,产率良好至优异。通过使适当的水杨醛、2-氰基硫代乙酰胺与氯丙酮或肼基氯化物反应来制备所需产物。在80℃的乙醇中使用哌啶作为介质反应4 - 6小时,该三组分方案以87 - 96%的产率生成目标杂化物。新合成的产物表现出广泛的抗菌活性。在色烯 - C6位置添加芳基偶氮单元显著提高了抗菌活性,而在噻唑 - C5位置添加芳基偶氮基团的影响则根据对位取代芳烃单元的电子特性而有所不同。一般来说,与两个芳基偶氮单元相连的系列,一个在色烯 - C6位置,另一个在噻唑 - C5位置,表现出最佳活性。一些新的杂化物显示出比环丙沙星更有效的抗菌活性,对金黄色葡萄球菌和大肠杆菌的MIC/MBC值高达1.9/3.9 μM。此外,与利奈唑胺相比,它们对MRSA ATCC:33591和ATCC:43300表现出更好的效果,MIC/MBC值分别高达4.0/16.1和3.9/15.6 μM。通过SwissADME评估了新的基于芳基偶氮的色烯 - 噻唑杂化物的物理化学性质、亲脂性、药代动力学和类药性数据。综上所述,与两个芳基偶氮单元相连的产物可被视为类药物支架。

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