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肾移植受者中的霉酚酸及其代谢产物:一种用于改善暴露量估计的半机制性肠肝循环模型

Mycophenolic Acid and Its Metabolites in Kidney Transplant Recipients: A Semimechanistic Enterohepatic Circulation Model to Improve Estimating Exposure.

作者信息

Okour Malek, Jacobson Pamala A, Ahmed Mariam A, Israni Ajay K, Brundage Richard C

机构信息

Clinical Pharmacology Modeling and Simulation (CPMS), GlaxoSmithKline, King of Prussia, PA, USA.

Department of Experimental and Clinical Pharmacology, College of Pharmacy, University of Minnesota, Minneapolis, MN, USA.

出版信息

J Clin Pharmacol. 2018 May;58(5):628-639. doi: 10.1002/jcph.1064. Epub 2018 Jan 12.

Abstract

Mycophenolic acid (MPA) is an approved immunosuppressive agent widely prescribed to prevent rejection after kidney transplantation. Wide between-subject variability (BSV) in MPA exposure exists which in part may be due to variability in enterohepatic recirculation (EHC). Several modeling strategies were developed to evaluate EHC as part of MPA pharmacokinetics, however mechanistic representation of EHC is limited. These models have not provided a satisfactory representation of the physiology of EHC in their modeling assumptions. The aim of this study was i) to develop an integrated model of MPA (total and unbound) and its metabolites (MPAG and acyl-MPAG) in kidney recipients, where this model provides a more physiological representation of EHC process, and ii) to evaluate the effect of donor and recipient clinical covariates and genotypes on MPA disposition. A five-compartment model with first-order input into an unbound MPA compartment connected to the MPAG, acyl-MPAG, and gallbladder compartment best fit the data. To represent the EHC process, the model was built based on the physiological concepts related to the hepatobiliary system and the gallbladder filling and emptying processes. The effect of cyclosporine versus tacrolimus on clearance of unbound MPA was included in the base model. Covariate analysis showed creatinine clearance to be significant on oral clearance of unbound MPA. The hepatic nuclear factor 1 alpha (HNF1A) genetic single nucleotide polymorphism (SNP) (rs2393791) in the recipient significantly affected the fraction of enterohepatically-circulated drug. Oral clearance of MPAG was affected by recipient IMPDH1 SNP (rs2288553), diabetes at the time of transplant, and donor sex.

摘要

霉酚酸(MPA)是一种已获批准的免疫抑制剂,广泛用于预防肾移植后的排斥反应。MPA暴露存在较大的个体间差异(BSV),部分原因可能是肠肝循环(EHC)的变异性。已开发了几种建模策略来评估EHC作为MPA药代动力学的一部分,然而EHC的机制性表征有限。这些模型在其建模假设中并未提供令人满意的EHC生理学表征。本研究的目的是:i)建立肾移植受者中MPA(总MPA和游离MPA)及其代谢物(MPAG和酰基-MPAG)的综合模型,该模型能更真实地反映EHC过程;ii)评估供体和受体临床协变量及基因型对MPA处置的影响。一个五室模型,其中未结合MPA室的一级输入连接到MPAG、酰基-MPAG和胆囊室,最符合数据。为了表示EHC过程,该模型基于与肝胆系统以及胆囊充盈和排空过程相关的生理学概念构建。基础模型中纳入了环孢素与他克莫司对游离MPA清除率的影响。协变量分析显示肌酐清除率对游离MPA的口服清除率有显著影响。受体中的肝细胞核因子1α(HNF1A)基因单核苷酸多态性(SNP)(rs2393791)显著影响肠肝循环药物的比例。MPAG的口服清除率受受体IMPDH1 SNP(rs2288553)、移植时的糖尿病以及供体性别影响。

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