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A semi-mechanistic exposure–response model to assess the effects of verinurad, a potent URAT1 inhibitor, on serum and urine uric acid in patients with hyperuricemia-associated diseases

Jacob Leander; Mikael Sunnåker; Dinko Rekić; Sergey Aksenov; Ulf G. Eriksson; Susanne Johansson; Joanna Parkinson
Journal of Pharmacokinetics and Pharmacodynamics · Vol. 48, Issue 4 · pp. 525-541 · 2021

Abstract

Verinurad, a uric acid transporter 1 (URAT1) inhibitor, lowers serum uric acid by promoting its urinary excretion. Co-administration with a xanthine oxidase inhibitor (XOI) to simultaneously reduce uric acid production rate reduces the potential for renal tubular precipitation of uric acid, which can lead to acute kidney injury. The combination is currently in development for chronic kidney disease and heart failure. The aim of this work was to apply and extend a previously developed semi-mechanistic exposure–response model for uric acid kinetics to include between-subject variability to verinurad and its combinations with XOIs, and to provide predictions to support future treatment strategies. The model was developed using data from 12 clinical studies from a total of 434 individuals, including healthy volunteers, patients with hyperuricemia, and renally impaired subjects. The model described the data well, taking into account the impact of various patient characteristics such as renal function, baseline fractional excretion of uric acid, and race. The potencies (EC50s) of verinurad (reducing uric acid reuptake), febuxostat (reducing uric acid production), and oxypurinol (reducing uric acid production) were: 29, 128, and 13,030 ng/mL, respectively. For verinurad, symptomatic hyperuricemic (gout) subjects showed a higher EC50 compared with healthy volunteers (37 ng/mL versus 29 ng/mL); while no significant difference was found for asymptomatic hyperuricemic patients. Simulations based on the uric acid model were performed to assess dose–response of verinurad in combination with XOI, and to investigate the impact of covariates. The simulations demonstrated application of the model to support dose selection for verinurad.

Bibliographic Information

JournalJournal of Pharmacokinetics and Pharmacodynamics
PublisherSpringer
Publication Date2021-08-01
Publication Year2021
Volume48
Issue4
Pages525-541
Document TypeJournal Article
Print ISSN1567-567X
eISSN1573-8744
DOI10.1007/s10928-021-09747-y

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NARA Access Coverage1973-01-01~Current
Journal Homepagehttps://www.springer.com/journal/10928
Publisher PageOpen Publisher Page
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