首页> 美国卫生研究院文献>Antimicrobial Agents and Chemotherapy >Pharmacodynamic Analysis of the Activity of Quinupristin-Dalfopristin against Vancomycin-Resistant Enterococcus faecium with Differing MBCs via Time-Kill-Curve and Postantibiotic Effect Methods
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Pharmacodynamic Analysis of the Activity of Quinupristin-Dalfopristin against Vancomycin-Resistant Enterococcus faecium with Differing MBCs via Time-Kill-Curve and Postantibiotic Effect Methods

机译:时效曲线和抗生素后作用方法研究奎奴普丁-达福普汀抗万古霉素粪便肠球菌与不同MBC的药效关系

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摘要

Quinupristin-dalfopristin (Q-D) is a new water-soluble, semisynthetic antibiotic that is derived from natural streptogramins and that is combined in a 30:70 ratio. A number of studies have described the pharmacodynamic properties of this drug, but most have investigated only staphylococci or streptococci. We evaluated the relationship between Q-D, quinupristin (Q), and/or dalfopristin (D) susceptibility parameters and antibacterial activities against 22 clinical isolates of vancomycin-resistant Enterococcus faecium (VREF) by using the concentration-time-kill-curve method and by measuring postantibiotic effects. Q-D, Q, and D MICs and minimum bactericidal concentrations (MBCs) ranged from 0.125 to 1 and 0.25 to 64, 8 to 512 and >512, and 2 to 8 and 8 to 512 μg/ml, respectively. There were no significant relationships between susceptibilities to the individual components and the susceptibilities to the Q-D combination product. In the time-kill-curves studies, Q-D at a concentration of 6 μg/ml was at least bacteriostatic against all VREF tested. There was increased activity against more susceptible isolates when the isolates were grouped either by Q-D MBCs or by Q MICs. By multivariate regression analyses, the percent change in the inoculum from that at the baseline was significantly correlated with the Q MIC (R = 0.74; P = 0.008) and the Q-D concentration-to-MBC ratio (R = 0.58; P = 0.02) and was inversely correlated with the Q-D MBC-to-MIC ratio (R = 0.68; P = 0.003). A strong correlation existed between the killing rate and the Q-D concentration-to-MBC ratio (R = 0.99; P < 0.0001). Time to 99.9% killing was best correlated with the Q-D MBC (R = 0.96; P < 0.0001). The postantibiotic effect ranged from 0.2 to 3.2 h and was highly correlated with the Q-D concentration-to-MBC ratio (R = 0.96; P < 0.0001) and was less highly correlated with the Q MIC (R = 0.42; P = 0.04). Further study of these relationships with in vitro or in vivo infection models that simulate Q-D pharmacokinetics should further define the utility of these pharmacodynamic parameters in the prediction of Q-D activity for the treatment of VREF infections in humans.
机译:奎奴普丁-达福普汀(Q-D)是一种新型的水溶性半合成抗生素,它源自天然链霉菌素,并且以30:70的比例混合。许多研究已经描述了该药物的药效学性质,但是大多数研究仅研究了葡萄球菌或链球菌。我们通过使用浓度-时间-杀死-曲线法并通过以下方法评估了QD,奎奴普丁(Q)和/或dalfopristin(D)对22种耐万古霉素粪便肠球菌(VREF)临床分离株的敏感性参数与抗菌活性之间的关系。测量抗生素的作用。 Q-D,Q和D MIC和最小杀菌浓度(MBC)分别在0.125至1和0.25至64、8至512和> 512以及2至8和8至512微克/毫升之间。对单个成分的敏感性与对Q-D组合产品的敏感性之间没有显着的关系。在时间杀伤曲线研究中,浓度为6μg/ ml的Q-D对所有测试的VREF至少具有抑菌作用。当通过Q-D MBC或Q MIC对分离株进行分组时,针对较易感分离株的活性增加。通过多元回归分析,接种物相对于基线的变化百分比与Q MIC(R = 0.74; P = 0.008)和QD浓度与MBC的比例(R = 0.58; P = 0.02)显着相关。并与QD MBC与MIC的比率呈负相关(R = 0.68; P = 0.003)。杀灭率与Q-D浓度与MBC的比率之间存在很强的相关性(R = 0.99; P <0.0001)。达到99.9%杀死率的时间与Q-D MBC最佳相关(R = 0.96; P <0.0001)。抗生素后作用范围为0.2至3.2 h,与Q-D浓度与MBC的比例高度相关(R = 0.96; P <0.0001),与Q MIC的相关性较低(R = 0.42; P = 0.04)。与模拟Q-D药代动力学的体外或体内感染模型之间的关系的进一步研究应进一步定义这些药效学参数在预测Q-D活性以治疗人类VREF感染中的效用。

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