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首页> 外文期刊>ScientificWorldJournal >Design, Synthesis, Molecular Docking, and Antibacterial Evaluation of Some Novel Flouroquinolone Derivatives as Potent Antibacterial Agent
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Design, Synthesis, Molecular Docking, and Antibacterial Evaluation of Some Novel Flouroquinolone Derivatives as Potent Antibacterial Agent

机译:一些新型泛喹啉酮衍生物作为有效的抗菌剂的设计,合成,分子对接和抗菌评价

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Objective. Quinolone moiety is an important class of nitrogen containing heterocycles widely used as key building blocks for medicinal agents. It exhibits a wide spectrum of pharmacophores and has bactericidal, antiviral, antimalarial, and anticancer activities. In view of the reported antimicrobial activity of various fluoroquinolones, the importance of the C-7 substituents is that they exhibit potent antimicrobial activities. Our objective was to synthesize newer quinolone analogues with increasing bulk at C-7 position of the main 6-fluoroquinolone scaffold to produce the target compounds which have potent antimicrobial activity.Methods. A novel series of 1-ethyl-6-fluoro-4-oxo-7-{4-[2-(4-substituted phenyl)-2-(substituted)-ethyl]-1-piperazinyl}-1,4-dihydroquinoline-3-carboxylic acid derivatives were synthesized. To understand the interaction of binding sites with bacterial protein receptor, the docking study was performed using topoisomerase II DNA gyrase enzymes (PDB ID: 2XCT) by Schrodinger’s Maestro program.In vitroantibacterial activity of the synthesized compounds was studied and the MIC value was calculated by the broth dilution method.Results. Among all the synthesized compounds, some compounds showed potent antimicrobial activity. The compound8gexhibited good antibacterial activity.Conclusion. This investigation identified the potent antibacterial agents against certain infections.
机译:客观的。喹诺酮部分是一类重要的含氮杂环,广泛用作药剂的关键构建块。它表现出广泛的药镜,具有杀菌,抗病毒,抗疟疾和抗癌活动。鉴于各种氟喹诺酮酮的报告的抗微生物活性,C-7取代基的重要性是它们表现出效率的抗菌活性。我们的目的是在主6-氟代喹啉酮支架的C-7位置堆积较新的喹啉类类似物,以产生具有有效抗微生物活性的目标化合物。方法。一种新的1-乙基-6-氟-4-氧代-7- {4- [2-(4-取代的苯基)-2-(取代的) - 乙基] -1-哌嗪基} -1,4-二氢喹啉的新型系列合成-3-羧酸衍生物。为了了解与细菌蛋白受体的结合位点的相互作用,通过Schrodinger的Maestro程序使用拓扑异构酶II DNA丙氨酸(PDB ID:2XCT)进行对接研究。研究了合成化合物的含量活性,并计算了MIC值肉汤稀释方法。结果。在所有合成的化合物中,一些化合物显示出有效的抗微生物活性。化合物抑制良好的抗菌活性。结论。该研究确定了针对某些感染的有效抗菌剂。

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