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新型苯并噻唑类化合物的设计、合成及作为抗菌、抗真菌和抗 COVID-19 候选药物的生物评价。

New Phenylthiazoles: Design, Synthesis, and Biological Evaluation as Antibacterial, Antifungal, and Anti-COVID-19 Candidates.

机构信息

Department of Organic Chemistry, Faculty of Pharmacy, October University for Modern Sciences and Arts, Giza, 11787, Egypt.

Department of Pharmaceutical Organic Chemistry, Faculty of Pharmacy, Cairo University, Cairo, 11562, Egypt.

出版信息

Chem Biodivers. 2023 Nov;20(11):e202301143. doi: 10.1002/cbdv.202301143. Epub 2023 Oct 19.

DOI:10.1002/cbdv.202301143
PMID:37857580
Abstract

The combination of antibacterial and antiviral agents is becoming a very important aspect of dealing with resistant bacterial and viral infections. The N-phenylthiazole scaffold was found to possess significant anti-MRSA, antifungal, and anti-COVID-19 activities as previously published; hence, a slight refinement was proposed to attach various alkyne lipophilic tails to this promising scaffold, to investigate their effects on the antimicrobial activity of the newly synthesized compounds and to provide a valuable structure-activity relationship. Phenylthiazole 4 m exhibited the most potent anti-MRSA activity with 8 μg/mL MIC value. Compounds 4 k and 4 m demonstrated potent activity against Clostridium difficile with MIC values of 2 μg/mL and moderate activity against Candida albicans with MIC value of 4 μg/mL. When analyzed for their anti-COVID-19 inhibitory effect, compound 4 b emerged with IC =1269 nM and the highest selectivity of 138.86 and this was supported by its binding score of -5.21 kcal mol when docked against SARS-CoV-2 M . Two H-bonds were formed, one with His164 and the other with Met49 stabilizing phenylthiazole derivative 4 b, inside the binding pocket. Additionally, it created two arene-H bonds with Asn142 and Glu166, through the phenylthiazole scaffold and one arene-H bond with Leu141 via the phenyl ring of the lipophilic tail.

摘要

抗菌和抗病毒药物的联合使用正成为应对耐药细菌和病毒感染的一个非常重要的方面。正如之前所发表的,N-苯基噻唑骨架被发现具有显著的抗耐甲氧西林金黄色葡萄球菌(MRSA)、抗真菌和抗 COVID-19 活性;因此,我们提出了一个轻微的改进方案,即在这个有前途的骨架上连接各种炔烃亲脂性尾部,以研究它们对新合成化合物抗菌活性的影响,并提供有价值的构效关系。苯基噻唑 4m 表现出最强的抗 MRSA 活性,MIC 值为 8μg/mL。化合物 4k 和 4m 对艰难梭菌具有很强的活性,MIC 值为 2μg/mL,对白色念珠菌具有中等活性,MIC 值为 4μg/mL。当分析其抗 COVID-19 抑制作用时,化合物 4b 表现出 IC=1269nM 的最高抑制活性和 138.86 的最高选择性,这一结果得到了其与 SARS-CoV-2 M 对接时的结合评分-5.21kcal/mol 的支持。两个氢键被形成,一个与 His164 形成,另一个与 Met49 形成,稳定了苯基噻唑衍生物 4b,位于结合口袋内。此外,它通过苯基噻唑骨架与 Asn142 和 Glu166 形成两个芳基-H 键,通过亲脂性尾部的苯环与 Leu141 形成一个芳基-H 键。

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