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基于α-酚单元的一些新型氮杂环类似物的合成、表征、分子对接及抗菌活性

Synthesis, characterization, molecular docking, and antibacterial activities of some new nitrogen-heterocyclic analogues based on a -phenolic unit.

作者信息

Hussein Abdel Haleem M, El-Adasy Abu-Bakr A, El-Saghier Ahmed M, Olish M, Abdelmonsef Aboubakr H

机构信息

Chemistry Department, Faculty of Science, Al-Azhar University Assiut Egypt.

Chemistry Department, Faculty of Science, Sohag University 82524 Sohag Egypt.

出版信息

RSC Adv. 2022 Apr 26;12(20):12607-12621. doi: 10.1039/d2ra01794f. eCollection 2022 Apr 22.

Abstract

Nitrogen-containing heterocycles have shown pharmacological properties against various diseases. Herein, in our study, flavoHB enzyme is a highly promising well-validated target for identification of antibacterial inhibitors using and techniques. To identify a new class of antimicrobial agents, -(4-hydroxyphenyl)-3-oxobutanamide was utilized as a precursor in the synthesis of several nitrogen-based heterocycles (pyridine, pyrimidine, and pyrazole) attached to -phenolic substrates 2-8. Treatment of 3-oxobutanimide 1 with malononitrile and/or ethyl cyanoacetate in ethanolic piperidine afforded the pyridinone analogues 2a,b. On the other hand, treatment of 1 with arylidene cyanothioacetamide furnished the pyridinthione derivative 3. The reaction of starting material 1 with salicylaldehyde and/or dimethyl formamide dimethyl acetal (DMF-DMA) yielded the pyridinones 4 and 5, respectively. Reaction of 1 with terephthalaldehyde and urea or thiourea gave bis structures 6a,b. The reaction of compound 1 with ethyl isothiocyanate and hydrazine hydrate afforded pyrimidine and pyrazole derivatives 7 and 8, respectively. The structures of newly prepared compounds 2-8 were elucidated using elemental data and spectral analyses such as IR, H NMR, C NMR, and MS. In addition, an in-house nitrogen-containing heterocycle analogues library 2-8 was examined and screened for their antibacterial effects against Gram-negative bacteria, and Gram-positive bacteria, , , , and . Compounds 6a and 6b have also shown the highest antibacterial activity against all types of bacteria strains tested except . Further, the molecular docking study of the newly prepared compounds with the target enzyme flavohemoglobin (flavoHB) was undertaken to explore their potential inhibitory activities. The results of the docking study indicated that compounds 6a and 6b have exerted the highest docking scores against the active site of flavoHB. As a result, the and molecular docking study findings suggested that the compounds 6a and 6b (with pyrimidine moiety, amide linkage, and phenolic substrate) might be potent bacterial flavohemoglobin (flavoHB) inhibitors and they could set a promising starting point for future design of antibacterial agents.

摘要

含氮杂环已显示出对多种疾病的药理特性。在此,在我们的研究中,黄素血红蛋白(flavoHB)酶是使用[具体技术1]和[具体技术2]技术鉴定抗菌抑制剂的一个非常有前景且经过充分验证的靶点。为了鉴定一类新型抗菌剂,β-(4-羟基苯基)-3-氧代丁酰胺被用作合成几种连接到酚类底物2-8上的氮基杂环(吡啶、嘧啶和吡唑)的前体。在乙醇哌啶中用丙二腈和/或氰基乙酸乙酯处理3-氧代丁酰胺1,得到吡啶酮类似物2a,b。另一方面,用亚苄基氰硫代乙酰胺处理1,得到吡啶硫酮衍生物3。起始原料1与水杨醛和/或二甲基甲酰胺二甲基缩醛(DMF-DMA)反应,分别得到吡啶酮4和5。1与对苯二甲醛和尿素或硫脲反应,得到双结构6a,b。化合物1与异硫氰酸乙酯和水合肼反应,分别得到嘧啶和吡唑衍生物7和8。使用元素数据和光谱分析(如红外光谱、氢核磁共振、碳核磁共振和质谱)对新制备的化合物2-8的结构进行了阐明。此外,对一个内部含氮杂环类似物库2-8进行了检测和筛选,以考察它们对革兰氏阴性菌[具体菌株1]、[具体菌株2]、[具体菌株3]、[具体菌株4]和革兰氏阳性菌[具体菌株5]的抗菌效果。化合物6a和6b对除[具体菌株6]外的所有测试细菌菌株也显示出最高的抗菌活性。此外,对新制备的化合物与目标酶黄素血红蛋白(flavoHB)进行了分子对接研究,以探索它们潜在的抑制活性。对接研究结果表明,化合物6a和6b对flavoHB的活性位点具有最高的对接分数。因此,抗菌活性和分子对接研究结果表明,化合物6a和6b(含有嘧啶部分、酰胺键和酚类底物)可能是有效的细菌黄素血红蛋白(flavoHB)抑制剂,它们可以为未来抗菌剂的设计提供一个有前景的起点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/108c/9041306/fb051249c805/d2ra01794f-f1.jpg

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