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Effect of different nitroheterocyclic compounds on aerobic microaerophilic and anaerobic bacteria.

机译:不同的硝基杂环化合物对需氧微需氧和厌氧细菌的影响。

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摘要

The antibacterial activities of different nitroheterocyclic compounds were assessed by an agar dilution method against aerobic, microaerophilic, and anaerobic bacteria. Nitronaphthofurans inhibited the multiplication of aerobic bacteria at low concentrations (MIC for 50% of strains tested [MIC50], 1 mg/liter). Under anaerobic growth conditions the MICs were found to be even lower. The rough, DNA repair-deficient mutants of Salmonella typhimurium were more susceptible, whereas nitroreductase-deficient strains were resistant. Microaerophilic campylobacter isolates could be divided into two groups, one of which was as susceptible as aerobic bacteria (MIC50, 1 mg/liter) and the other of which was more highly susceptible (MIC50, 0.015 mg/liter). All anaerobic bacteria tested were susceptible to nitronaphthofurans (MIC50, 0.125 mg/liter). Nitrothiazole exerted antibacterial activities similar to those of the nitronaphthofurans. Metronidazole, a nitroimidazole derivative, and nitrofurans were definitely less active. Nitrobenzofurans showed relatively high MICs.
机译:通过琼脂稀释法评估不同的硝基杂环化合物对需氧,微需氧和厌氧细菌的抗菌活性。硝基萘呋喃在低浓度下可抑制需氧细菌的繁殖(MIC对50%的受试菌株[MIC50]为1 mg / L)。在厌氧生长条件下,MIC甚至更低。鼠伤寒沙门氏菌的DNA修复缺陷型突变体更易感,而硝基还原酶缺陷型菌株则具有抗性。嗜微弯曲杆菌分离株可分为两组,一组与需氧菌一样敏感(MIC50,1 mg / L),另一组则更易感(MIC50,0.015 mg / L)。所有测试的厌氧细菌均对硝基萘呋喃敏感(MIC50,0.125 mg / L)。硝基噻唑具有与硝呋喃呋喃类似的抗菌活性。甲硝唑,硝基咪唑衍生物和硝基呋喃的活性肯定较低。硝基苯并呋喃显示出较高的MIC。

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