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Bacterial resistance studies using in vitro dynamic models: The predictive power of the mutant prevention and minimum inhibitory antibiotic concentrations

机译:使用体外动力学模型进行细菌耐药性研究:突变预防的预测能力和最低抑菌浓度

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In light of the concept of the mutant selection window, i.e., the range between the MIC and the mutant prevention concentration (MPC), MPC-related pharmacokinetic indices should be more predictive of bacterial resistance than the respective MIC-related indices. However, experimental evidence of this hypothesis remains limited and contradictory. To examine the predictive power of the ratios of the area under the curve (AUC24) to the MPC and the MIC, the selection of ciprofloxacin- resistant mutants of four Escherichia coli strains with different MPC/MIC ratios was studied. Each organism was exposed to twice-daily ciprofloxacin for 3 days at AUC24/MIC ratios that provide peak antibiotic concentrations close to the MIC, between the MIC and the MPC, and above the MPC. Resistant E. coli was intensively enriched at AUC24/MPCs from 1 to 10 h (AUC24/MIC from 60 to 360 h) but not at the lower or higher AUC24/MPC and AUC24/MIC ratios. AUC24/MPC and AUC24/MIC relationships of the areas under the time courses of ciprofloxacin-resistant E. coli (AUBCM) were bell-shaped. A Gaussian-like function fits the AUBCM-AUC24/MPC and AUBCM-AUC24/MIC data combined for all organisms (r2 0.69 and 0.86, respectively). The predicted anti-mutant AUC24/MPC ratio was 58 ± 35 h, and the respective AUC24/MIC ratio was 1,080 ± 416 h. Although AUC24/MPC was less predictive of strain-independent E. coli resistance than AUC24/MIC, the established anti-mutant AUC24/MPC ratio was closer to values reported for Staphylococcus aureus (60 to 69 h) than the respective AUC24/MIC ratio (1,080 versus 200 to 240 h). This implies that AUC24/MPC might be a better interspecies predictor of bacterial resistance than AUC24/MIC.
机译:根据突变选择窗口的概念,即MIC和突变预防浓度(MPC)之间的范围,MPC相关的药代动力学指标应比相应的MIC相关的指标更能预测细菌的耐药性。但是,该假设的实验证据仍然有限且矛盾。为了检查曲线下面积比(AUC24)与MPC和MIC的比预测能力,研究了四种MPC / MIC比不同的大肠杆菌菌株对环丙沙星抗性突变体的选择。将每种生物以AUC24 / MIC比每天两次暴露于环丙沙星中3天,以提供接近MIC,在MIC和MPC之间以及在MPC之上的峰值抗生素浓度。抗性大肠杆菌在1至10小时的AUC24 / MPCs(AUC24 / MIC从60到360 h)集中富集,但在较低或较高的AUC24 / MPC和AUC24 / MIC比值下未富集。耐环丙沙星的大肠杆菌(AUBCM)的时间过程下区域的AUC24 / MPC和AUC24 / MIC关系呈钟形。类高斯函数拟合所有生物的AUBCM-AUC24 / MPC和AUBCM-AUC24 / MIC数据(分别为r2 0.69和0.86)。预测的抗突变AUC24 / MPC比为58±35 h,相应的AUC24 / MIC比为1,080±416 h。尽管与AUC24 / MIC相比,AUC24 / MPC对菌株非依赖性大肠埃希菌耐药性的预测要少,但已建立的抗突变AUC24 / MPC比值比各自的AUC24 / MIC比值更接近于报道的金黄色葡萄球菌(60至69 h)值。 (1,080对200至240小时)。这表明,与AUC24 / MIC相比,AUC24 / MPC可能是细菌耐药性更好的种间预测指标。

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