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具有乙酰肼连接基的新型喹唑啉磺酸盐共轭物作为潜在抗菌剂:设计、合成与分子对接模拟

New quinazolone-sulfonate conjugates with an acetohydrazide linker as potential antimicrobial agents: design, synthesis and molecular docking simulations.

作者信息

Kassem Asmaa F, Ragab Sherif S, Omar Mohamed A, Altwaijry Najla A, Abdelraof Mohamed, Temirak Ahmed, Saleh Asmaa, Srour Aladdin M

机构信息

Department of Chemistry, College of Science and Humanities in Al-Kharj, Prince Sattam Bin Abdulaziz University Al-Kharj 11942 Saudi Arabia.

Chemistry of Natural and Microbial Products Department, Pharmaceutical and Drug Industries Research Institute, National Research Centre Dokki Giza 12622 Egypt.

出版信息

RSC Adv. 2025 Jan 13;15(2):1033-1048. doi: 10.1039/d4ra07563c. eCollection 2025 Jan 9.

Abstract

A novel molecular design based on a quinazolinone scaffold was developed the attachment of aryl alkanesulfonates to the quinazolinone core through a thioacetohydrazide azomethine linker, leading to a new series of quinazolinone-alkanesulfonates 5a-r. The antimicrobial properties of the newly synthesized quinazolinone derivatives 5a-r were investigated to examine their bactericidal and fungicidal activities against bacterial pathogens like , (Gram-positive), , , (Gram-negative), in addition to (unicellular fungal). The tested compounds demonstrated reasonable bactericidal activities compared to standard drugs. Notably, derivatives 5g and 5k exhibited the greatest MIC values against , while 5g was the best against with MIC of 11.3 ± 2.38 μg mL, two-fold efficacy more than that was recorded with sulfadiazine. Furthermore, 5k significantly prevented biofilm formation for all bacterial pathogens, with a percentage ratio reaching 63.9%, surpassing the standard drug Ciprofloxacin. Additionally, 5k caused elevated lipid peroxidation (LPO) when added to the tested microbial pathogens. Confocal Laser Scanning Microscopy (CLSM) visualization revealed fewer live cells after treatment. Molecular docking studies showed that the quinazolinone derivatives bind strongly to the DNA gyrase enzyme, with the acid hydrazide core interacting effectively with key residues GLU50, ASN46, GLY77, and ASP136, consistent with their antimicrobial activity. Additionally, these compounds exhibited promising physicochemical properties, paving the way for discovering new antimicrobial drugs.

摘要

基于喹唑啉酮支架开发了一种新型分子设计,通过硫代乙酰肼甲亚胺连接子将芳基烷磺酸盐连接到喹唑啉酮核心上,从而得到了一系列新的喹唑啉酮 - 烷磺酸盐5a - r。研究了新合成的喹唑啉酮衍生物5a - r的抗菌性能,以检测它们对诸如金黄色葡萄球菌、枯草芽孢杆菌(革兰氏阳性菌)、大肠杆菌、肺炎克雷伯菌、铜绿假单胞菌(革兰氏阴性菌)等细菌病原体以及白色念珠菌(单细胞真菌)的杀菌和杀真菌活性。与标准药物相比,测试的化合物表现出合理的杀菌活性。值得注意的是,衍生物5g和5k对金黄色葡萄球菌表现出最大的最低抑菌浓度(MIC)值,而5g对白色念珠菌的效果最佳,MIC为11.3±2.38μg/mL,比磺胺嘧啶的疗效高两倍。此外,5k显著抑制了所有细菌病原体的生物膜形成,百分比达到63.9%,超过了标准药物环丙沙星。此外,当添加到测试的微生物病原体中时,5k导致脂质过氧化(LPO)升高。共聚焦激光扫描显微镜(CLSM)可视化显示处理后活细胞减少。分子对接研究表明,喹唑啉酮衍生物与DNA促旋酶强烈结合,酰肼核心与关键残基GLU50、ASN46、GLY77和ASP136有效相互作用,这与其抗菌活性一致。此外,这些化合物表现出有前景的物理化学性质,为发现新的抗菌药物铺平了道路。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c29f/11726445/1f2567d952ab/d4ra07563c-f1.jpg

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