Literature DB >> 24238261

Population pharmacokinetic-pharmacogenetic model of tacrolimus in the early period after kidney transplantation.

Nayoung Han1, Soojung Ha, Hwi-yeol Yun, Myeong Gyu Kim, Sang-Il Min, Jongwon Ha, Jangik Ike Lee, Jung Mi Oh, In-Wha Kim.   

Abstract

As tacrolimus has a rather narrow therapeutic range and high individual variability in its pharmacokinetics, it is important to determine the cause of the variation in tacrolimus pharmacokinetics. The purpose of this study was to establish a population pharmacokinetic-pharmacogenetic model of tacrolimus and identify covariates that affect pharmacokinetic parameters to prevent fluctuations in the tacrolimus trough concentration during the early period after transplantation. Data from 1501 trough concentrations and 417 densely collected concentrations were compiled from 122 patients who were on post-operative days 10-20 and analysed with a nonlinear mixed-effect model. The first-order conditional estimation (FOCE) with interaction method was used to fit the model using the NONMEM program. Clinical/laboratory data were also collected for the same period, and CYP3A5 and ABCB1 genotypes were analysed for use in modelling from all included patients. An empirical Bayesian approach was used to estimate individual pharmacokinetic profiles. A one-compartment model with first absorption and elimination and lag time best described the data. The estimated population mean of clearance (CL/F), volume of distribution (V/F) and absorption rate (Ka ) were 21.9 L/hr, 205 L, and 3.43/hr, respectively, and the lag time was fixed at 0.25 hr. Clearance increased with days after transplantation and decreased with CYP3A5*3/*3 about 18.4% compared with CYP3A5*1 carriers (p < 0.001). A population pharmacokinetic model was developed for tacrolimus in early post-kidney transplantation recipients to identify covariates that affect tacrolimus pharmacokinetics. Post-operative days and CYP3A5 genotype were confirmed as critical factors of tacrolimus pharmacokinetics.
© 2013 Nordic Association for the Publication of BCPT (former Nordic Pharmacological Society).

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Year:  2013        PMID: 24238261     DOI: 10.1111/bcpt.12176

Source DB:  PubMed          Journal:  Basic Clin Pharmacol Toxicol        ISSN: 1742-7835            Impact factor:   4.080


  15 in total

1.  External evaluation of published population pharmacokinetic models of tacrolimus in adult renal transplant recipients.

Authors:  Chen-Yan Zhao; Zheng Jiao; Jun-Jun Mao; Xiao-Yan Qiu
Journal:  Br J Clin Pharmacol       Date:  2016-02-26       Impact factor: 4.335

2.  Tacrolimus troughs and genetic determinants of metabolism in kidney transplant recipients: A comparison of four ancestry groups.

Authors:  Moataz E Mohamed; David P Schladt; Weihua Guan; Baolin Wu; Jessica van Setten; Brendan J Keating; David Iklé; Rory P Remmel; Casey R Dorr; Roslyn B Mannon; Arthur J Matas; Ajay K Israni; William S Oetting; Pamala A Jacobson
Journal:  Am J Transplant       Date:  2019-05-13       Impact factor: 8.086

3.  Predictive Performance of Published Tacrolimus Population Pharmacokinetic Models in Thai Kidney Transplant Patients.

Authors:  Janthima Methaneethorn; Manupat Lohitnavy; Kamonwan Onlamai; Nattawut Leelakanok
Journal:  Eur J Drug Metab Pharmacokinet       Date:  2021-11-24       Impact factor: 2.441

Review 4.  Population Pharmacokinetic Modelling and Bayesian Estimation of Tacrolimus Exposure: Is this Clinically Useful for Dosage Prediction Yet?

Authors:  Emily Brooks; Susan E Tett; Nicole M Isbel; Christine E Staatz
Journal:  Clin Pharmacokinet       Date:  2016-11       Impact factor: 6.447

5.  Toward a robust tool for pharmacokinetic-based personalization of treatment with tacrolimus in solid organ transplantation: A model-based meta-analysis approach.

Authors:  Tom M Nanga; Thao T P Doan; Pierre Marquet; Flora T Musuamba
Journal:  Br J Clin Pharmacol       Date:  2019-12-17       Impact factor: 4.335

6.  Evaluating tacrolimus pharmacokinetic models in adult renal transplant recipients with different CYP3A5 genotypes.

Authors:  Can Hu; Wen-Jun Yin; Dai-Yang Li; Jun-Jie Ding; Ling-Yun Zhou; Jiang-Lin Wang; Rong-Rong Ma; Kun Liu; Ge Zhou; Xiao-Cong Zuo
Journal:  Eur J Clin Pharmacol       Date:  2018-07-17       Impact factor: 2.953

Review 7.  Population Pharmacokinetics of Tacrolimus in Transplant Recipients: What Did We Learn About Sources of Interindividual Variabilities?

Authors:  Olivia Campagne; Donald E Mager; Kathleen M Tornatore
Journal:  J Clin Pharmacol       Date:  2018-10-29       Impact factor: 3.126

8.  A Minimal Physiologically-Based Pharmacokinetic Model for Tacrolimus in Living-Donor Liver Transplantation: Perspectives Related to Liver Regeneration and the cytochrome P450 3A5 (CYP3A5) Genotype.

Authors:  Kotaro Itohara; Ikuko Yano; Tetsunori Tsuzuki; Miwa Uesugi; Shunsaku Nakagawa; Atsushi Yonezawa; Hideaki Okajima; Toshimi Kaido; Shinji Uemoto; Kazuo Matsubara
Journal:  CPT Pharmacometrics Syst Pharmacol       Date:  2019-06-09

9.  Genotype-guided tacrolimus dosing in African-American kidney transplant recipients.

Authors:  K Sanghavi; R C Brundage; M B Miller; D P Schladt; A K Israni; W Guan; W S Oetting; R B Mannon; R P Remmel; A J Matas; P A Jacobson
Journal:  Pharmacogenomics J       Date:  2015-12-15       Impact factor: 3.550

10.  Increased Exposure of Tacrolimus by Co-administered Mycophenolate Mofetil: Population Pharmacokinetic Analysis in Healthy Volunteers.

Authors:  Jae Hyun Kim; Nayoung Han; Myeong Gyu Kim; Hwi-Yeol Yun; Sunhwa Lee; Eunjin Bae; Yon Su Kim; In-Wha Kim; Jung Mi Oh
Journal:  Sci Rep       Date:  2018-01-26       Impact factor: 4.379

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