Synthesis, characterization, in vitro antibacterial, and molecular modeling study of some pyrazole and pyranopyrazole derivatives

M. Abdelatty, Zeinab R. Farag, Ayman M. Yossef, A. Makhlouf
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Abstract

: A facile and convenient protocol is developed for designing new heterocyclic compounds using nontoxic, simple, and eco-friendly methods. A group of novel compounds containing either pyrazole or pyranopyrazole moieties was synthesized using 2-(5-oxo-4, 5-dihydro-1H-pyrazol-3-yl)-N-phenylacetamide ( 1a,b ) as a precursor. The structure of the prepared compounds; namely pyranopyrazole derivatives 2 and pyrazole derivatives 3-6 was elucidated using different spectroscopic methods (such as FTIR, 1 H-NMR, Mass spectroscopy, and 13 C-NMR) as well as elemental analyses. Consequently, the newly prepared compounds were all evaluated against different human pathogenic bacterial strains such as Escherichiacoli, Staphylococcusaureus, Pseudomonasaeruginosa,and Bacillussubtilisusing the commercial bactericide chloramphenicol as a reference. Most of the tested compounds showed moderate to high antibacterial activity. Molecular docking study was performed to predict binding affinities and the modes of interactions between the synthesized ligands and the active site of the topoisomerase IV. Presumably, the obtained results provide valuable information for designing, developing, and synthesizing novel heterocyclic scaffolds with enhanced pharmacological applications as antibacterial materials.
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吡唑和吡喃吡唑衍生物的合成、表征、体外抗菌及分子模拟研究
为设计新的杂环化合物提供了一种简单、无毒、环保的方法。以2-(5-氧- 4,5 -二氢- 1h -吡唑-3-基)- n -苯乙酰胺(1a,b)为前体合成了一组含有吡唑或吡喃吡唑基团的新化合物。所制备化合物的结构;即吡喃吡唑衍生物2和吡喃吡唑衍生物3-6通过不同的光谱方法(如FTIR、1h - nmr、质谱和13c - nmr)以及元素分析进行了鉴定。因此,以市售杀菌剂氯霉素为对照,对新制备的化合物对大肠埃希氏杆菌、金黄色葡萄球菌、铜绿假单胞菌和枯草芽孢杆菌等不同人类致病菌进行了抑菌性评价。大多数被试化合物显示出中等到较高的抗菌活性。通过分子对接研究,预测了合成的配体与拓扑异构酶IV活性位点的结合亲和力和相互作用模式。推测所得结果将为设计、开发和合成新型杂环支架提供有价值的信息,从而增强其作为抗菌材料的药理应用。
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