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使用群体药代动力学建模和蒙特卡洛模拟来描述头孢妥仑在血浆和上皮衬液中的药效学特征。

Use of population pharmacokinetic modeling and Monte Carlo simulation to describe the pharmacodynamic profile of cefditoren in plasma and epithelial lining fluid.

作者信息

Lodise Thomas P, Kinzig-Schippers Martina, Drusano George L, Loos Ulrich, Vogel Friedrich, Bulitta Jürgen, Hinder Markus, Sörgel Fritz

机构信息

Institute for Biomedical and Pharmaceutical Research, Nürnberg-Heroldsberg, Germany.

出版信息

Antimicrob Agents Chemother. 2008 Jun;52(6):1945-51. doi: 10.1128/AAC.00736-06. Epub 2007 May 7.

Abstract

Cefditoren is a broad-spectrum, oral cephalosporin that is highly active against clinically relevant respiratory tract pathogens, including multidrug-resistant Streptococcus pneumoniae. This study described its pharmacodynamic profile in plasma and epithelial lining fluid (ELF). Plasma and ELF pharmacokinetic data were obtained from 24 patients under fasting conditions. Cefditoren and urea concentrations were determined in plasma and bronchoalveolar lavage fluid by liquid chromatography-tandem mass spectrometry. Concentration-time profiles in plasma and ELF were modeled using a model with three disposition compartments and first-order absorption, elimination, and transfer. Pharmacokinetic parameters were identified in a population pharmacokinetic analysis (big nonparametric adaptive grid with adaptive gamma). Monte Carlo simulation (9,999 subjects) was performed with the ADAPT II program to estimate the probability of target attainment at which the free-cefditoren plasma concentrations (88%) protein binding and total ELF concentrations exceeded the MIC for 33% of the dosing interval for 400 mg cefditoren given orally every 12 h. After the Bayesian step, the overall fits of the model to the data were good, and plots of predicted versus observed concentrations for plasma and ELF showed slopes and intercepts very close to the ideal values of 1.0 and 0.0, respectively. In the plasma probability of target attainment analysis, the probability of achieving a time for which free, or unbound, plasma concentration exceeds the MIC of the organism for 33% of the dosing interval was <80% for a MIC of >0.06 mg/liter. Similar to plasma, the probability of achieving a time above the MIC of 33% was <80% for MIC of >0.06 mg/liter in ELF. Cefditoren was found to have a low probability of achieving a bacteriostatic effect against MICs of >0.06 mg/liter, which includes most S. pneumoniae isolates with intermediate susceptibility to penicillin, when given in the fasting state in both plasma and ELF.

摘要

头孢妥仑是一种广谱口服头孢菌素,对包括多重耐药肺炎链球菌在内的临床相关呼吸道病原体具有高度活性。本研究描述了其在血浆和上皮衬液(ELF)中的药效学特征。在禁食条件下从24名患者获得血浆和ELF药代动力学数据。通过液相色谱 - 串联质谱法测定血浆和支气管肺泡灌洗液中的头孢妥仑和尿素浓度。使用具有三个处置室以及一级吸收、消除和转运的模型对血浆和ELF中的浓度 - 时间曲线进行建模。在群体药代动力学分析(具有自适应伽马的大型非参数自适应网格)中确定药代动力学参数。使用ADAPT II程序进行蒙特卡罗模拟(9999名受试者),以估计在每12小时口服400 mg头孢妥仑时,游离头孢妥仑血浆浓度(88%蛋白质结合)和总ELF浓度在给药间隔的33%时间内超过MIC的达标概率。经过贝叶斯步骤后,模型对数据的整体拟合良好,血浆和ELF的预测浓度与观察浓度的图分别显示斜率和截距非常接近理想值1.0和0.0。在血浆达标概率分析中,对于MIC>0.06 mg/升的情况,游离或未结合血浆浓度在给药间隔的33%时间内超过生物体MIC的达标概率<80%。与血浆相似,对于ELF中MIC>0.06 mg/升的情况,在33%时间内超过MIC的达标概率<80%。发现在禁食状态下给予头孢妥仑时,对MIC>0.06 mg/升(包括大多数对青霉素中度敏感的肺炎链球菌分离株)实现抑菌作用的概率较低,在血浆和ELF中均如此。

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