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基于生理的药代动力学模型预测胃 pH 值介导的药物暴露:以伊曲康唑为例的案例研究。

Prediction of gastric pH-mediated drug exposure using physiologically-based pharmacokinetic modeling: A case study of itraconazole.

机构信息

Department of Clinical Pharmacology and Therapeutics, Seoul National University College of Medicine and Hospital, 101 Daehak-ro, Jongno-gu, Seoul, 03080, Republic of Korea.

Kidney Research Institute, Seoul National University Medical Research Center, 103 Daehak-ro, Jongno-gu, Seoul, 03080, Republic of Korea.

出版信息

CPT Pharmacometrics Syst Pharmacol. 2023 Jun;12(6):865-877. doi: 10.1002/psp4.12959. Epub 2023 Mar 26.

Abstract

Abnormal gastric acidity, including achlorhydria, can act as a significant source of variability in orally administered drugs especially with pH-sensitive solubility profiles, such as weak bases, potentially resulting in an undesirable therapeutic response. This study aimed to evaluate the utility of physiologically-based pharmacokinetic (PBPK) modeling in the prediction of gastric pH-mediated drug exposure by using itraconazole, a weak base, as a case. An itraconazole PBPK model was developed on the mechanistic basis of its absorption kinetics in a middle-out manner from a stepwise in vitro-in vivo extrapolation to in vivo refinement. Afterward, an independent prospective clinical study evaluating gastric pH and itraconazole pharmacokinetics (PKs) under normal gastric acidity and esomeprazole-induced gastric hypoacidity was conducted for model validation. Validation was performed by comparing the predicted data with the clinical observations, and the valid model was subsequently applied to predict PK changes under achlorhydria. The developed itraconazole PBPK model showed reasonable reproducibility for gastric pH-mediated exposure observed in the clinical investigation. Based on the model-based simulations, itraconazole exposure was expected to be decreased up to 65% under achlorhydria, and furthermore, gastric pH-mediated exposure could be mechanistically interpreted according to sequential variation in total solubility, dissolution, and absorption. This study suggested the utility of PBPK modeling in the prediction of gastric pH-mediated exposure, especially for drugs whose absorption is susceptible to gastric pH. Our findings will serve as a leading model for further mechanistic assessment of exposure depending on gastric pH for various drugs, ultimately contributing to personalized pharmacotherapy.

摘要

异常胃酸(包括胃酸缺乏)可成为经口给予药物的显著变异性来源,尤其是对于 pH 敏感的溶解度特征的药物,如弱碱性药物,可能导致不理想的治疗反应。本研究旨在评估生理药代动力学(PBPK)模型在预测胃酸介导的药物暴露中的应用价值,以伊曲康唑(一种弱碱性药物)为例。伊曲康唑 PBPK 模型是基于其吸收动力学的机制建立的,采用逐步的体外-体内外推法和体内优化法,以中出方式进行。之后,进行了一项独立的前瞻性临床研究,评估了正常胃酸和埃索美拉唑诱导的胃酸不足下的胃内 pH 和伊曲康唑药代动力学(PK),以验证模型。通过将预测数据与临床观察进行比较来进行验证,有效的模型随后被应用于预测胃酸缺乏下的 PK 变化。所开发的伊曲康唑 PBPK 模型对于临床研究中观察到的胃酸介导的暴露具有合理的重现性。基于模型模拟,在胃酸缺乏下,伊曲康唑的暴露预计会降低 65%,此外,根据总溶解度、溶解和吸收的顺序变化,可以从机制上解释胃酸介导的暴露。本研究表明 PBPK 模型在预测胃酸介导的暴露中的应用价值,特别是对于那些吸收易受胃酸影响的药物。我们的研究结果将为进一步根据各种药物的胃内 pH 进行暴露的机制评估提供一个基础模型,最终有助于实现个体化的药物治疗。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/484c/10272297/da260916e8e3/PSP4-12-865-g003.jpg

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