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维拉帕米对非索非那定在猪体内药代动力学及肝胆处置的影响。

Effects of verapamil on the pharmacokinetics and hepatobiliary disposition of fexofenadine in pigs.

作者信息

Sjögren Erik, Hedeland Mikael, Bondesson Ulf, Lennernäs Hans

机构信息

Department of Pharmacy, Biopharmaceutic Research Group, Uppsala University, Box 580, SE-751 23 Uppsala, Sweden.

Department of Medicinal Chemistry, Division of Analytical Pharmaceutical Chemistry, Uppsala University, Box 573, SE-751 23 Uppsala, Sweden; National Veterinary Institute (SVA), Department of Chemistry, Environment and Feed Hygiene, SE-751 89 Uppsala, Sweden.

出版信息

Eur J Pharm Sci. 2014 Jun 16;57:214-23. doi: 10.1016/j.ejps.2013.09.014. Epub 2013 Sep 27.

Abstract

The pharmacokinetics (PK) of fexofenadine (FEX) in pigs were investigated with the focus on exploring the interplay between hepatic transport and metabolism when administered intravenously (iv) alone or with verapamil. The in vivo pig model enabled simultaneous sampling from plasma (pre-liver, post-liver and peripheral), bile and urine. Each animal was administered FEX 35mg iv alone or with verapamil 35mg. Plasma, bile and urine were analyzed with liquid chromatography-tandem mass spectrometry. Non-compartmental analysis (NCA) was used to estimate traditional PK parameters. In addition, a physiologically based pharmacokinetic (PBPK) model consisting of 11 compartments (6 tissues +5 sample sites) was applied for mechanistic elucidation and estimation of individual PK parameters. FEX had a terminal half-life of 1.7h and a liver extraction of 3%. The fraction of the administered dose of unchanged FEX excreted into the bile was 25% and the bile exposure was more than 100 times higher than the portal vein total plasma exposure, indicating carrier-mediated (CM) disposition processes in the liver. 23% of the administered dose of FEX was excreted unchanged in the urine. An increase in FEX plasma exposure (+50%) and a decrease in renal clearance (-61%) were detected by NCA as a direct effect of concomitant administration of verapamil. However, analysis of the PBPK model also revealed that biliary clearance was significantly inhibited (-53%) by verapamil. In addition, PBPK analysis established that metabolism and CM uptake were important factors in the disposition of FEX in the liver. In conclusion, this study demonstrated that CM transport of FEX in both liver and kidneys was inhibited by a single dose of verapamil.

摘要

研究了非索非那定(FEX)在猪体内的药代动力学(PK),重点探讨静脉注射(iv)单独给药或与维拉帕米联合给药时肝脏转运与代谢之间的相互作用。体内猪模型能够同时从血浆(肝前、肝后和外周)、胆汁和尿液中取样。每只动物单独静脉注射35mg FEX或与35mg维拉帕米联合注射。采用液相色谱-串联质谱法分析血浆、胆汁和尿液。采用非房室分析(NCA)来估计传统的PK参数。此外,还应用了一个由11个房室(6个组织+5个采样部位)组成的基于生理的药代动力学(PBPK)模型,用于机制阐释和个体PK参数的估计。FEX的终末半衰期为1.7小时,肝脏摄取率为3%。排泄到胆汁中的未改变FEX给药剂量的比例为25%,胆汁暴露量比门静脉总血浆暴露量高100倍以上,表明肝脏中存在载体介导(CM)的处置过程。23%的FEX给药剂量以原形从尿液中排泄。NCA检测到,联合给予维拉帕米的直接效应是FEX血浆暴露量增加(+50%)和肾清除率降低(-61%)。然而,PBPK模型分析还显示,维拉帕米显著抑制胆汁清除率(-53%)。此外,PBPK分析确定,代谢和CM摄取是FEX在肝脏处置中的重要因素。总之,本研究表明,单剂量维拉帕米可抑制FEX在肝脏和肾脏中的CM转运。

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