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4-氨基喹啉-异吲哚酮分子杂化物和席夫碱作为有前景的抗菌剂的合成及机理研究

Synthesis and mechanistic studies of 4-aminoquinoline-Isatin molecular hybrids and Schiff's bases as promising antimicrobial agents.

作者信息

Shakir Mohd, Ali Asghar, Lakshmi Swati, Garg Manika, Abdulhameed Almuqdadi Haider Thaer, Irfan Iram, Kamthan Mohan, Joshi Mukesh C, Javed Saleem, Rawat Diwan S, Abid Mohammad

机构信息

Medicinal Chemistry Laboratory, Department of Biosciences, Jamia Millia Islamia, Jamia Nagar, New Delhi, 110025, India; Department of Chemistry, University of Delhi, Delhi, 110007, India.

Medicinal Chemistry Laboratory, Department of Biosciences, Jamia Millia Islamia, Jamia Nagar, New Delhi, 110025, India; Clinical Biochemistry Lab, Department of Biochemistry, School of Chemical and Life Sciences, Jamia Hamdard, New Delhi, 110062, India.

出版信息

Eur J Med Chem. 2025 Feb 5;283:117127. doi: 10.1016/j.ejmech.2024.117127. Epub 2024 Dec 5.

Abstract

In this investigation, to determine their potential as specific antibacterial agents, Schiff's bases (LT-SB1-23 and SB1-SB12) and novel quinoline-isatin hybrids were subjected to microbiological testing. The in-vitro screening against bacterial strains (Escherichia coli, Enterococcus faecalis, Bacillus subtilis, Staphylococcus aureus, Pseudomonas aeruginosa, and Salmonella typhi) exhibited their antibacterial potential with many of the compounds showing inhibition range of 90-100 % at 200 μg/mL, against most of the tested strains. The MIC values of some of the compounds showed good antibacterial efficacy with values ranging from 32 to 128 μg/mL. Their bacterial growth inhibitory potential was further supported by disk diffusion and growth curve assays. Interestingly, one of the Schiff's bases (LT-SB7) displayed strong synergistic activity against E. coli and S. typhi with 16-64 folds reduction in MIC values. Additionally, it exhibited up to 85 % suppression of biofilm at MIC against AA209 environmental bacterial isolate and reduced the development of multidrug-resistant bacterial isolates. Promising compound LT-SB7 underwent 100 ns molecular dynamics simulations with biofilm-causing protein (PDB ID: 7C7U) to assess conformational changes and complex stability. Overall, this study identified compounds as effective antibacterial alternatives for the future.

摘要

在本研究中,为了确定席夫碱(LT-SB1-23和SB1-SB12)和新型喹啉-异吲哚酮杂化物作为特定抗菌剂的潜力,对其进行了微生物测试。针对细菌菌株(大肠杆菌、粪肠球菌、枯草芽孢杆菌、金黄色葡萄球菌、铜绿假单胞菌和伤寒沙门氏菌)的体外筛选显示了它们的抗菌潜力,许多化合物在200μg/mL时对大多数测试菌株的抑制范围为90%-100%。一些化合物的最低抑菌浓度(MIC)值显示出良好的抗菌效果,范围为32至128μg/mL。纸片扩散法和生长曲线测定进一步支持了它们抑制细菌生长的潜力。有趣的是,其中一种席夫碱(LT-SB7)对大肠杆菌和伤寒沙门氏菌表现出强大的协同活性,MIC值降低了16至64倍。此外,它在MIC浓度下对AA209环境细菌分离株的生物膜抑制率高达85%,并减少了多重耐药细菌分离株的产生。有前景的化合物LT-SB7与引起生物膜的蛋白质(PDB ID:7C7U)进行了100纳秒的分子动力学模拟,以评估构象变化和复合物稳定性。总体而言,本研究确定这些化合物为未来有效的抗菌替代品。

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