Ammar Yousry A, Micky Jehan A, Aboul-Magd Dina S, Abd El-Hafez Sondos M A, Hessein Sadia A, Ali Abeer M, Ragab Ahmed
Department of Chemistry, Faculty of Science (Boys), Al-Azhar University, Nasr City, Cairo, Egypt.
Department of Chemistry, Faculty of Science (Girls), Al-Azhar University, Nasr City, Cairo, Egypt.
Chem Biol Drug Des. 2023 Feb;101(2):245-270. doi: 10.1111/cbdd.14154. Epub 2022 Oct 28.
This study aimed to synthesize new potent quinoline derivatives based on hydrazone moieties and evaluate their antimicrobial activity. The newly synthesized hydrazono-quinoline derivatives 2, 5a, 9, and 10b showed the highest antimicrobial activity with MIC values ≤1.0 μg/ml against bacteria and ≤8.0 μg/ml against the fungi. Further, these derivatives exhibited bactericidal and fungicidal effects with MBC/MIC and MFC/MIC ratio ≤4. Surprisingly, the most active compounds displayed good inhibition to biofilm formation with MBEC values ranging between (40.0 ± 10.0 - 230.0 ± 31.0) and (67.0 ± 24.0 - 347.0 ± 15.0) μg/ml against Staphylococcus aureus and Pseudomonas aeruginosa, respectively. The hemolytic assays confirmed that the hydrazono-quinoline derivatives are non-toxic with low % lysis values ranging from 4.62% to 14.4% at a 1.0 mg/ml concentration. Besides, compound 5a exhibited the lowest hemolytic activity value of ~4.62%. Furthermore, the study suggests that the hydrazono-quinoline analogs exert their antibacterial activity as dual inhibitors for DNA gyrase and DNA topoisomerase IV enzymes with IC values ranging between (4.56 ± 0.3 - 21.67 ± 0.45) and (6.77 ± 0.4 - 20.41 ± 0.32) μM, respectively. Additionally, the recent work advocated that compound 5a showed the reference SAL at the ɣ-radiation dose of 10.0 kGy in the sterilization process without affecting its chemical structure. Finally, the in silico drug-likeness, toxicity properties, and molecular docking simulation were performed. Besides, the result exhibited good oral-bioavailability, lower toxicity prediction, and lower binding energy with good binding mode rather than the positive control.
本研究旨在合成基于腙部分的新型强效喹啉衍生物,并评估其抗菌活性。新合成的腙基喹啉衍生物2、5a、9和10b表现出最高的抗菌活性,对细菌的最低抑菌浓度(MIC)值≤1.0μg/ml,对真菌的MIC值≤8.0μg/ml。此外,这些衍生物表现出杀菌和杀真菌作用,其最低杀菌浓度/最低抑菌浓度(MBC/MIC)和最低杀真菌浓度/最低抑菌浓度(MFC/MIC)比值≤4。令人惊讶的是,活性最强的化合物对生物膜形成具有良好的抑制作用,针对金黄色葡萄球菌和铜绿假单胞菌的最低生物被膜消除浓度(MBEC)值分别在(40.0±10.0 - 230.0±31.0)和(67.0±24.0 - 347.0±15.0)μg/ml之间。溶血试验证实,腙基喹啉衍生物无毒,在1.0mg/ml浓度下的溶血率较低,范围为4.62%至14.4%。此外,化合物5a表现出最低的溶血活性值,约为4.62%。此外,该研究表明,腙基喹啉类似物作为DNA回旋酶和DNA拓扑异构酶IV的双重抑制剂发挥其抗菌活性,其抑制常数(IC)值分别在(4.56±0.3 - 21.67±0.45)和(6.77±0.4 - 20.41±0.32)μM之间。此外,最近的研究表明,在10.0kGy的γ辐射剂量下,化合物5a在灭菌过程中表现出与参比标准品相当的性能,且不影响其化学结构。最后,进行了计算机辅助药物相似性、毒性特性和分子对接模拟。此外,结果显示其具有良好的口服生物利用度、较低的毒性预测以及与阳性对照相比具有良好结合模式的较低结合能。