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首页> 外文期刊>Microbiological Research >Antimicrobial activity of quinoxaline 1,4-dioxide with 2-and 3-substituted derivatives
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Antimicrobial activity of quinoxaline 1,4-dioxide with 2-and 3-substituted derivatives

机译:喹喔啉1,4-二氧化物对2和3取代的衍生物的抗菌活性

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Quinoxaline is a chemical compound that presents a structure that is similar to quinolone antibiotics. The present work reports the study of the antimicrobial activity of quinoxaline N,N-dioxide and some derivatives against bacterial and yeast strains. The compounds studied were quinoxaline-1,4-dioxide (QNX), 2-methylquinoxaline-1,4-dioxide (2MQNX), 2-methyl-3-benzoylquinoxaline-1,4-dioxide (2M3BenzoyIQNX), 2-methyl-3-benzylquinoxaline-1,4-dioxide (2M3BQNX), 2-.amino-3-cyanoquinoxaline-1,4-dioxide (2A3CQNX), 3-methyl-2-quinoxalinecarboxamide-1,4-dioxide (3M2QNXC), 2-hydroxyphenazine-N,N-dioxide (2HF) and 3-methyl-N-(2-methylphenyl)quinoxalinecarboxamide-1,4-dioxide (3MN(2MF)QNXC). The prokaryotic strains used were Staphylococcus aureus ATCC 6538, S. aureus ATCC 6538P, S. aureus ATCC 29213, Escherichia coil ATCC 25922, E. cob S3R9, E. coli S3R22, E. coil TEM-1 CTX-M9, E. coli TEM-1, E. coil AmpC Mox-2, E. coil CTX-M2 e E. con CTX-M9. The Candida albicans ATCC 10231 and Saccharomyces cerevisiae PYCC 4072 were used as eukaryotic strains. For the compounds that presented activity using the disk diffusion method, the minimum inhibitory concentration (MIC) was determined. The alterations of cellular viability were evaluated in a time-course assay. Death curves for bacteria and growth curves for S. cerevisiae PYCC 4072 were also accessed. The results obtained suggest potential new drugs for antimicrobial activity chemotherapy since the MIC's determined present low values and cellular viability tests show the complete elimination of the bacterial strain. Also, the cellular viability tests for the eukaryotic model, S. cerevisiae, indicate low toxicity for the compounds tested
机译:喹喔啉是一种化学化合物,其结构类似于喹诺酮类抗生素。本工作报告了喹喔啉N,N-二氧化物和某些衍生物对细菌和酵母菌株的抗菌活性的研究。研究的化合物为喹喔啉-1,4-二氧化物(QNX),2-甲基喹喔啉-1,4-二氧化物(2MQNX),2-甲基-3-苯甲酰基喹喔啉-1,4-二氧化物(2M3BenzoyIQNX),2-甲基-3 -苄基喹喔啉-1,4-二氧化物(2M3BQNX),2-氨基-3-氰基喹喔啉-1,4-二氧化物(2A3CQNX),3-甲基-2-喹喔啉甲酰胺-1,4-二氧化物(3M2QNXC),2-羟基吩嗪-N,N-二氧化物(2HF)和3-甲基-N-(2-甲基苯基)喹喔啉羧酰胺-1,4-二氧化物(3MN(2MF)QNXC)。使用的原核菌株是金黄色葡萄球菌ATCC 6538,金黄色葡萄球菌ATCC 6538P,金黄色葡萄球菌ATCC 29213,大肠杆菌线圈ATCC 25922,大肠杆菌芯S3R9,大肠杆菌S3R22,大肠杆菌线圈TEM-1 CTX-M9,大肠杆菌TEM-1,线圈AmpC Mox-2,线圈CTX-M2和大肠杆菌CTX-M9。白色念珠菌ATCC 10231和酿酒酵母PYCC 4072用作真核菌株。对于使用圆盘扩散法显示活性的化合物,确定了最小抑菌浓度(MIC)。在时程分析中评估细胞活力的改变。还访问了细菌的死亡曲线和酿酒酵母PYCC 4072的生长曲线。获得的结果表明潜在的抗微生物活性化学治疗的新药,因为MIC的测定值目前较低,细胞活力测试表明细菌菌株已完全消除。同样,对真核细胞酿酒酵母的细胞活力测试表明,所测试化合物的毒性较低。

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