含氮蒽醌衍生物的合成及抑菌活性研究

V. Shupeniuk
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引用次数: 0

摘要

采用乌尔曼偶联反应,用不同的胺取代溴原子,合成了新的氨基衍生物取代蒽醌类化合物。获得的以蒽醌为基础的化合物,用于实验性抗菌研究。合成化合物的结构经LC-MS和1H、13C NMR确证。对浮游微生物的研究表明,首次合成的蒽醌衍生物对细菌和真菌有抑制作用。三氮-1-(3-)苯甲酸(三氮-1-烯-1-醇(-4-(1h -咪唑-1-酰基(-9,10-二氧基-9,10-二氢蒽-2-磺酸)具有广谱活性,对革兰氏阳性菌生长阻滞区为8.41 ~ 11.5 mm,革兰氏阴性菌生长阻滞区为5.87 ~ 8.18 mm,假丝酵母属真菌生长阻滞区为5.81 ~ 7.48 mm。该化合物的高抗菌活性可能是由于其分子中存在苯甲酸。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Synthesis and Antimicrobial Activity Of Nitrogen-Containing Anthraquinone Derivatives
New substituted anthraquinones with amino derivations fragments were synthesized through the substitution of bromine atom by different amines using the Ullmann coupling reaction. Obtained compounds based on anthraquinone used for experimental antimicrobial studies. The structure of the synthesized compounds was confirmed by LC-MS and 1H, 13C NMR spectroscopy. Studies on planktonic microorganisms have shown that the first synthesized anthraquinone derivatives have an inhibitory effect against bacteria and fungi. The triazene 1-(3-(benzoic acid(triaz-1-en-1-ol(-4-(1H-imidazol-1-yl(-9,10-dioxo-9,10-dihydroanthracene -2-sulfonic acid, have wide spectrum of activity, growth retardation zones against gram-positive microorganisms in the range of 8.41-11.5 mm, gram-negative bacteria 5.87-8.18 mm, fungi of the genus Candida 5.81-7.48 mm. The high antimicrobial activity of this compound is probably due to the presence of benzoic acid in its molecule.
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