In vitro models for the prediction of in vivo performance of oral dosage forms

生物制药 生化工程 体内 药物开发 药品 体外 计算机科学 药物发现 药代动力学 化学 药学 离体 生物利用度 药理学 生物制药 生物技术 医学 工程类 生物信息学 生物
作者
Edmund Kostewicz,Bertil Abrahamsson,Marcus E. Brewster,Joachim Brouwers,James Butler,Sara Carlert,Paul Dickinson,Jennifer B. Dressman,René Holm,Sandra Klein,James Mann,Mark McAllister,M. Minekus,Uwe Muenster,Anette Müllertz,Miriam Verwei,Maria Vertzoni,Werner Weitschies,Patrick Augustijns
出处
期刊:European Journal of Pharmaceutical Sciences [Elsevier]
卷期号:57: 342-366 被引量:288
标识
DOI:10.1016/j.ejps.2013.08.024
摘要

Accurate prediction of the in vivo biopharmaceutical performance of oral drug formulations is critical to efficient drug development. Traditionally, in vitro evaluation of oral drug formulations has focused on disintegration and dissolution testing for quality control (QC) purposes. The connection with in vivo biopharmaceutical performance has often been ignored. More recently, the switch to assessing drug products in a more biorelevant and mechanistic manner has advanced the understanding of drug formulation behavior. Notwithstanding this evolution, predicting the in vivo biopharmaceutical performance of formulations that rely on complex intraluminal processes (e.g. solubilization, supersaturation, precipitation…) remains extremely challenging. Concomitantly, the increasing demand for complex formulations to overcome low drug solubility or to control drug release rates urges the development of new in vitro tools. Development and optimizing innovative, predictive Oral Biopharmaceutical Tools is the main target of the OrBiTo project within the Innovative Medicines Initiative (IMI) framework. A combination of physico-chemical measurements, in vitro tests, in vivo methods, and physiology-based pharmacokinetic modeling is expected to create a unique knowledge platform, enabling the bottlenecks in drug development to be removed and the whole process of drug development to become more efficient. As part of the basis for the OrBiTo project, this review summarizes the current status of predictive in vitro assessment tools for formulation behavior. Both pharmacopoeia-listed apparatus and more advanced tools are discussed. Special attention is paid to major issues limiting the predictive power of traditional tools, including the simulation of dynamic changes in gastrointestinal conditions, the adequate reproduction of gastrointestinal motility, the simulation of supersaturation and precipitation, and the implementation of the solubility-permeability interplay. It is anticipated that the innovative in vitro biopharmaceutical tools arising from the OrBiTo project will lead to improved predictions for in vivo behavior of drug formulations in the GI tract.
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