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首页> 外文期刊>CPT: Pharmacometrics & Systems Pharmacology >Application of Physiologically‐Based Pharmacokinetic Modeling to Predict Gastric pH‐Dependent Drug–Drug Interactions for Weak Base Drugs
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Application of Physiologically‐Based Pharmacokinetic Modeling to Predict Gastric pH‐Dependent Drug–Drug Interactions for Weak Base Drugs

机译:基于生理学的药代动力学模拟在弱碱药物中预测胃pH依赖性药物 - 药物相互作用的应用

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摘要

Weak‐base drugs are susceptible to drug–drug interactions (DDIs) when coadministered with gastric acid–reducing agents (ARAs). We developed PBPK models to evaluate the potential of such pH‐dependent DDIs for four weak‐base drugs, i.e., tapentadol, darunavir, erlotinib, and saxagliptin. The physiologically‐based pharmacokinetic (PBPK) models of these drugs were first optimized using pharmacokinetic (PK) data following oral administration without ARAs, which were then verified with data from additional PK studies in the presence and absence of food. The models were subsequently used to predict the extent of DDIs with ARA coadministration. Sensitivity analysis was conducted to explore the impact of gastric pH on quantitative prediction of drug exposure in the presence of ARA. The results suggested that the PBPK models developed could adequately describe the lack of the effect of ARA on the PK of tapentadol, darunavir, and saxagliptin and could qualitatively predict the effect of ARA in reducing the absorption of erlotinib. Further studies involving more drugs with positive pH‐dependent DDIs are needed to confirm the findings and broaden our knowledge base to further improve the utilization of PBPK modeling to evaluate pH‐dependent DDI potential.
机译:当共用胃酸还原剂(ARAS)时,弱碱药物易受药物 - 药物相互作用(DDIS)的影响。我们开发了PBPK模型,以评估四种弱碱药物依赖DDI的潜力,即Tapentadol,Darunavir,Erlotinib和Saxagliptin。这些药物的基于生理学的药代动力学(PBPK)模型首先使用药代动力学(PK)数据在口服给药后进行优化,然后在没有ARAS的情况下通过来自额外PK研究的数据进行验证,在存在和不存在食物中。随后使用该模型来预测具有ARA共同分子的DDI的程度。进行了敏感性分析,以探讨胃pH对ARA存在的胃水暴露定量预测的影响。结果表明,开发的PBPK模型可以充分描述ARA对Tabentadol,Darunavir和Saxagliptin的PK缺乏作用,并且可以定性地预测ARA在减少欧洲毒素的吸收方面的作用。需要进一步研究涉及具有阳性pH依赖性DDIS的药物,以确认调查结果并扩大知识基础,以进一步改善PBPK建模的利用率来评估pH依赖性DDI电位。

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