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左氧氟沙星对厄洛替尼吸收的影响。通过大鼠群体药代动力学分析评估营养不良情况下的相互作用。

Levofloxacin effect on erlotinib absorption. Evaluation of the interaction in undernutrition situations through population pharmacokinetic analysis in rats.

作者信息

Pérez-Pitarch Alejandro, Guglieri-López Beatriz, Nacher Amparo, Merino Virginia, Merino-Sanjuan Matilde

机构信息

Pharmacy and Pharmaceutical Technology Department, University of Valencia, Valencia, Spain.

Pharmacy Department, University Clinical Hospital of Valencia, Valencia, Spain.

出版信息

Biopharm Drug Dispos. 2017 Jul;38(5):315-325. doi: 10.1002/bdd.2065. Epub 2017 Feb 17.

Abstract

The main objective of this study was to develop a pharmacokinetic model in order to describe the intestinal absorption of erlotinib in rat and to quantify the interaction of levofloxacin on this process in well- and under-nourished rats. Absorption studies were performed in male Wistar rats. Concentration-time profiles in proximal and distal intestine were analysed through non-linear mixed effect modelling using the NONMEM software version 7.3. Simulations were performed in order to explore the influence of covariates on the apparent absorption rate constant. A passive absorption and an active secretion process best-described erlotinib absorption from lumen to enterocyte. The developed model indicates that levofloxacin exerts an inhibition on erlotinib efflux transporters of the gut epithelium. Undernourishment proved to significantly decrease the maximum capacity of the secretion process. Simulations evidenced that erlotinib absorption only takes place at high enough drug concentrations to overcome the effect of efflux transporters. On the other hand, when levofloxacin is present in the intestinal lumen of undernourished rats, erlotinib drug absorption takes place even at low erlotinib concentrations. In the clinical setting, this interaction may result in increased exposure to erlotinib, especially in undernourished cancer patients. Copyright © 2017 John Wiley & Sons, Ltd.

摘要

本研究的主要目的是建立一个药代动力学模型,以描述大鼠体内厄洛替尼的肠道吸收情况,并量化左氧氟沙星在营养良好和营养不良的大鼠中对该过程的相互作用。在雄性Wistar大鼠中进行吸收研究。使用NONMEM软件版本7.3通过非线性混合效应模型分析近端和远端肠道中的浓度-时间曲线。进行模拟以探讨协变量对表观吸收速率常数的影响。被动吸收和主动分泌过程最能描述厄洛替尼从肠腔到肠细胞的吸收。所建立的模型表明,左氧氟沙星对肠道上皮细胞的厄洛替尼外排转运体有抑制作用。营养不良被证明会显著降低分泌过程的最大能力。模拟结果表明,厄洛替尼仅在足够高的药物浓度下才能发生吸收,以克服外排转运体的作用。另一方面,当左氧氟沙星存在于营养不良大鼠的肠腔中时,即使在低厄洛替尼浓度下也会发生厄洛替尼药物吸收。在临床环境中,这种相互作用可能导致厄洛替尼的暴露增加,尤其是在营养不良的癌症患者中。版权所有© 2017 John Wiley & Sons, Ltd.

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