Effect of protein binding on exposure of unbound and total mycophenolic acid: a population pharmacokinetic analysis in Chinese adult kidney transplant recipients
Changcheng Sheng, Qun Zhao, Wanjie Niu, Xiaoyan Qiu, Ming Zhang, Zheng, Jiao

TL;DR
This study developed a population pharmacokinetic model for unbound and total mycophenolic acid and its metabolite in Chinese kidney transplant patients, highlighting the influence of serum albumin on drug exposure and suggesting uMPA monitoring for dose optimization.
Contribution
It presents a novel PK model for Chinese patients, linking protein binding to serum albumin and recommending uMPA measurement for better dose management.
Findings
Unbound MPA clearance estimated at 852 L/h.
Serum albumin significantly affects total MPA exposure.
Monitoring uMPA is recommended for dose optimization.
Abstract
AIMS A population pharmacokinetic (PK) analysis was performed to: (1) characterise the PK of unbound and total mycophenolic acid (MPA) and its 7-O-mycophenolic acid glucuronide (MPAG) metabolite, and (2) identify the clinically significant covariates that cause variability in the dose-exposure relationship to facilitate dose optimisation. METHODS A total of 740 unbound MPA (uMPA), 741 total MPA (tMPA) and 734 total MPAG (tMPAG) concentration-time data from 58 Chinese kidney transplant patients were analysed using a nonlinear mixed-effect model. The influence of covariates was tested using a stepwise procedure. RESULTS The PK of unbound MPA and MPAG were characterised by a two- and one-compartment model with first-order elimination, respectively. Apparent clearance of uMPA (CLuMPA/F) was estimated to be 852 L/h with a relative standard error (RSE) of 7.1%. The tMPA and uMPA were…
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