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接种量对氨苄西林-舒巴坦抗菌作用的净效应:使用体外动态模型的研究

Net effect of inoculum size on antimicrobial action of ampicillin-sulbactam: studies using an in vitro dynamic model.

作者信息

Firsov A A, Ruble M, Gilbert D, Saverino D, Manzano B, Medeiros A A, Zinner S H

机构信息

Department of Medicine, Brown University, Roger Williams Medical Center 02908, Providence, USA.

出版信息

Antimicrob Agents Chemother. 1997 Jan;41(1):7-12. doi: 10.1128/AAC.41.1.7.

Abstract

To examine the predictable effect of inoculum size on the kinetics of the antimicrobial action of ampicillin-sulbactam, five TEM-1 beta-lactamase-producing Escherichia coli strains were studied in an in vitro dynamic model at two different initial inocula (N0S). All bacteria were exposed to ampicillin-sulbactam in a simulated system reflecting the pharmacokinetic profiles in human tissue after the administration of a single intravenous dose of ampicillin (2 g) plus sulbactam (1 g). Each strain was studied at low (4.0 to 5.2 log CFU/ml) and high (5.0 to 7.1 log CFU/ml) N0S. Despite pronounced differences in susceptibilities, the patterns of the killing curves observed with a given strain at different N0S were similar. As expected, viable bacterial counts increased with inoculum size. Striking visual contrasts in the respective curves for each organism were reflected by the area under the bacterial count-time curve (AUBC) but not by the difference between the N0 and the lowest bacterial counts (Nmin) at the nadir of the killing curve: the N0-associated changes in the AUBC on average were 75%, versus 2.5% for log N0--logNmin. To examine qualitative differences in antimicrobial effects at different N0S (i.e., the net effect of the inoculum), the difference in the high and low N0S was subtracted from each point on the killing curve obtained at the higher N0 for each strain. These adjusted curves were virtually superimposable on the observed killing curves obtained at the lower N0. Moreover, by using adjusted data, the AUBC values were similar at the two inocula, although slight (average, 11%) but systematic increases in the AUBC occurred at high N0S. Thus, there was only a weak net effect of inoculum size on the antibacterial effect of ampicillin-sulbactam. Due to similar slopes of the AUBC-log N0 plots, the antibacterial action at different N0S may be easily predicted by an approximate equation; the predicted AUBCs were unbiased and well correlated with the observed AUBCs (r = 0.997). Compiled data obtained with normalized AUBCs for different strains at different N0S yielded a positive correlation (r = 0.963) between the N0-normalized AUBC and the MIC of ampicillin-sulbactam. The adjustment and normalization procedure described might be a useful tool for revealing the net effect of the inoculum and to predict the inoculum effect if there are no qualitative differences in antimicrobial action at different inocula.

摘要

为研究接种量对氨苄西林-舒巴坦抗菌作用动力学的可预测影响,在体外动态模型中,使用两种不同的初始接种量(N0S)对五株产TEM-1β-内酰胺酶的大肠杆菌菌株进行了研究。在模拟系统中,所有细菌均暴露于氨苄西林-舒巴坦,该系统反映了单次静脉注射氨苄西林(2g)加舒巴坦(1g)后人体组织中的药代动力学特征。对每种菌株在低(4.0至5.2 log CFU/ml)和高(5.0至7.1 log CFU/ml)N0S条件下进行研究。尽管敏感性存在明显差异,但给定菌株在不同N0S下观察到的杀灭曲线模式相似。正如预期的那样,活菌数随接种量增加。每种生物体各自曲线中的明显视觉差异通过细菌计数-时间曲线下面积(AUBC)反映出来,但不是通过杀灭曲线最低点处的N0与最低细菌计数(Nmin)之间的差异反映:与N0相关的AUBC变化平均为75%,而log N0-logNmin为2.5%。为研究不同N0S下抗菌效果的定性差异(即接种量的净效应),从每种菌株在较高N0下获得的杀灭曲线上的每个点减去高、低N0S之间的差异。这些调整后的曲线实际上与在较低N0下观察到的杀灭曲线重叠。此外,通过使用调整后的数据,两种接种量下的AUBC值相似,尽管在高N0S时AUBC有轻微(平均11%)但系统性的增加。因此,接种量对氨苄西林-舒巴坦抗菌效果的净效应较弱。由于AUBC-log N0图的斜率相似,不同N0S下的抗菌作用可以通过一个近似方程轻松预测;预测的AUBC无偏差且与观察到的AUBC高度相关(r = 0.997)。不同菌株在不同N0S下使用标准化AUBC获得的汇总数据显示,N0标准化AUBC与氨苄西林-舒巴坦的MIC之间呈正相关(r = 0.963)。所描述的调整和标准化程序可能是揭示接种量净效应以及预测接种量效应的有用工具,如果不同接种量下抗菌作用没有定性差异的话。

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