Revisiting nonlinear bosentan pharmacokinetics by physiologically based pharmacokinetic modeling: Target binding, albeit not a major contributor to nonlinearity, can offer prediction of target occupancys

17Citations
Citations of this article
13Readers
Mendeley users who have this article in their library.

This article is free to access.

Abstract

Bosentan is a high-affinity antagonist of endothelin receptors and one of the earliest examples for target-mediated drug disposition [a type of nonlinear pharmacokinetics (PKs) caused by saturable target binding]. The previous physiologically based PK (PBPK) modeling indicated that the nonlinear PKs of bosentan was explainable by considering saturable hepatic uptake. However, it remained unexamined to what extent the saturable target binding contributes to the nonlinear PKs of bosentan. Here, we developed a PBPK model incorporating saturable target binding and hepatic uptake and analyzed the clinical bosentan PK data using the cluster Gauss- Newton method (CGNM). The PBPK model without target binding fell short in capturing the bosentan concentrations below 100 nM, based on the PK profiles and the goodness-of-fit plot. Both global and local identifiability analyses (using the CGNM and Fisher information matrix, respectively) informed that the target binding parameters were identifiable only if the observations from the lowest dose (10 mg) were included. By analyzing blood PK profiles alone, the PBPK model with target binding yielded practically identifiable target binding parameters and predicted the maximum target occupancies of 0.6-0.8 at clinical bosentan doses. Our results indicate that target binding, albeit not a major contributor to the nonlinear bosentan PKs, may offer a prediction of target occupancy from blood PK profiles alone and potential guidance on achieving optimal efficacy outcomes, under the condition when the highaffinity drug target is responsible for the efficacy of interest and when the dose ranges cover varying degrees of target binding.

Cite

CITATION STYLE

APA

Koyama, S., Toshimoto, K., Lee, W., Aoki, Y., & Sugiyama, Y. (2021). Revisiting nonlinear bosentan pharmacokinetics by physiologically based pharmacokinetic modeling: Target binding, albeit not a major contributor to nonlinearity, can offer prediction of target occupancys. Drug Metabolism and Disposition, 49(4), 298–304. https://doi.org/10.1124/dmd.120.000023

Register to see more suggestions

Mendeley helps you to discover research relevant for your work.

Already have an account?

Save time finding and organizing research with Mendeley

Sign up for free