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Evaluation of the bactericidal activity of beta-lactam antibiotics on slowly growing bacteria cultured in the chemostat.

机译:评估β-内酰胺类抗生素对在恒化器中培养的缓慢生长的细菌的杀菌活性。

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摘要

The bactericidal activity of 23 beta-lactam antibiotics was compared in slowly growing bacteria cultured in a chemostat. In an attempt to mimic possible in vivo conditions, slowly growing cultures were produced by limitation of iron, glucose, phosphate, or magnesium. Only select antibiotics remained effectively bactericidal against slowly growing cells. For these compounds, the rate of antibiotic-induced loss of viability was a constant when killing was expressed per generation (in contrast to absolute time) in that slowly growing bacteria were killed proportionately more slowly. Individual antibiotics differed greatly, however, in their specific bactericidal activities against slowly growing cells, i.e., in the absolute degree of killing elicited during exposure of the bacteria to MIC equivalents of the drugs. Specific bactericidal activities varied not only with drug structure but also with the bacterial strains and, to a lesser extent, with the nature of the growth-limiting nutrient. In slowly growing cultures exposure to the low drug concentrations studied here (near MIC) caused killing without detectable lysis. Antibiotics with high specific bactericidal activities were capable of rapidly killing cultures of slowly growing pathogens despite extremely long generation times approaching those reported for in vivo growth rates.
机译:比较了23种β-内酰胺类抗生素在恒化细菌培养中缓慢生长的细菌中的杀菌活性。为了模拟可能的体内条件,通过限制铁,葡萄糖,磷酸盐或镁来产生缓慢生长的培养物。仅选择的抗生素对缓慢生长的细胞保持有效的杀菌作用。对于这些化合物,当每一代表达杀伤力时(与绝对时间相反),抗生素诱导的活力丧失的速率是恒定的,因为缓慢生长的细菌被杀的比例更慢。但是,个别抗生素对缓慢生长的细胞具有特定的杀菌活性,即在将细菌暴露于药物的MIC当量期间引起的绝对杀灭程度差异很大。特定的杀菌活性不仅随药物结构变化,而且随细菌菌株变化,并且在较小程度上随生长受限营养素的性质而变化。在缓慢生长的培养物中,暴露于此处研究的低药物浓度(靠近MIC)会导致杀伤,而没有可检测到的裂解。具有极高比杀菌活性的抗生素能够迅速杀死缓慢生长的病原体的培养物,尽管其产生时间极长,已接近报道的体内生长速度。

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