Physiologically based pharmacokinetic model analysis of the inhibitory effect of vonoprazan on the metabolic activation of proguanil

基于生理学的药代动力学模型 药代动力学 化学 药理学 代谢物 体外 口服 普罗瓜尼 微粒体 活性代谢物 新陈代谢 生物化学 医学 免疫学 氯喹 疟疾
作者
Kaori Okubo,Toshiyuki Kudo,Sae Yoshihara,Yu Nakabayashi,Kana Nakauchi,Tanaka Aya,Moe Saito,Ayumi Tsujisawa,Hitomi Goda,Yoshiaki Yamagishi,Chinatsu Otake,Kosho Makino,Hideyo Takahashi,Kiyomi Ito
出处
期刊:Drug Metabolism and Pharmacokinetics [Elsevier]
卷期号:54: 100537-100537
标识
DOI:10.1016/j.dmpk.2023.100537
摘要

We previously reported that repeated oral administration of vonoprazan (VPZ) followed by oral administration of proguanil (PG) in healthy adults increased blood concentration of PG and decreased blood concentration of its metabolite cycloguanil (CG) compared with administration of PG alone. In this study, we investigated whether this interaction can be quantitatively explained by VPZ inhibition of PG metabolism. In an in vitro study using human liver microsomes, VPZ inhibited CG formation from PG in a concentration-dependent manner, and the inhibition was enhanced depending on preincubation time. Then, a physiologically based pharmacokinetic (PBPK) model analysis was performed incorporating the obtained inhibition parameters. By fitting the blood concentration profiles of VPZ and PG/CG after VPZ and PG were orally administered alone to our PBPK model, parameters were obtained which can reproduce their concentration profiles. In contrast, when the VPZ inhibition parameters for CG formation from the in vitro study were incorporated, the predicted blood PG and CG concentrations were unchanged; the apparent dissociation constant had to be set to about 1/23 of the obtained in vitro value to reproduce the observed interaction. Further comprehensive evaluation is required, including the possibility that mechanisms other than metabolic inhibition may be involved.

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