首页> 外文期刊>European journal of pharmaceutics and biopharmaceutics: official journal of Arbeitsgemeinschaft fuer Pharmazeutische Verfahrenstechnik e.V >Predicting the oral absorption of a poorly soluble, poorly permeable weak base using biorelevant dissolution and transfer model tests coupled with a physiologically based pharmacokinetic model
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Predicting the oral absorption of a poorly soluble, poorly permeable weak base using biorelevant dissolution and transfer model tests coupled with a physiologically based pharmacokinetic model

机译:使用与生物有关的溶出和转移模型测试以及基于生理学的药代动力学模型,预测难溶性,低渗透性弱碱的口服吸收

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摘要

For predicting food effects and simulating plasma profiles of poorly soluble drugs, physiologically based pharmacokinetic models have become a widely accepted tool in academia and the pharmaceutical industry. Up till now, however, simulations appearing in the open literature have mainly focused on BCS class II compounds, and many of these simulations tend to have more of a "retrospective" than a prognostic, predictive character. In this work, investigations on the absorption of a weakly basic BCS class IV drug, "Compound A", were performed. The objective was to predict the plasma profiles of an immediate release (IR) formulation of Compound A in the fasted and fed state. For this purpose, in vitro biorelevant dissolution tests and transfer model experiments were conducted. Dissolution and precipitation kinetics were then combined with in vivo post-absorptive disposition parameters using STELLA? software. As Compound A not only exhibits poor solubility but also poor permeability, a previously developed STELLA? model was revised to accommodate the less than optimal permeability characteristics as well as precipitation of the drug in the fasted state small intestine. Permeability restrictions were introduced into the model using an absorption rate constant calculated from the Caco-2 permeability value of Compound A, the effective intestinal surface area and appropriate intestinal fluid volumes. The results show that biorelevant dissolution tests are a helpful tool to predict food effects of Compound A qualitatively. However, the plasma profiles of Compound A could only be predicted quantitatively when the results of biorelevant dissolution test were coupled with the newly developed PBPK model.
机译:为了预测食物效果并模拟难溶药物的血浆谱,基于生理学的药代动力学模型已成为学术界和制药行业广泛接受的工具。然而,到目前为止,公开文献中出现的模拟主要集中在BCS II类化合物上,并且其中许多模拟往往具有更多的“回顾性”特征,而不具有预后性和预测性。在这项工作中,对弱碱性BCS IV类药物“化合物A”的吸收进行了研究。目的是预测禁食和进食状态下化合物A的速释(IR)制剂的血浆分布。为此目的,进行了体外生物相关的溶出试验和转移模型实验。然后使用STELLA?将溶解和沉淀动力学与体内吸收后处置参数结合起来。软件。由于化合物A不仅显示出不良的溶解性,而且显示出不良的渗透性,因此,先前开发的STELLA?对模型进行了修改,以适应不太理想的通透性以及禁食状态的小肠中药物的沉淀。使用根据化合物A的Caco-2渗透率值,有效肠表面积和适当肠液量计算出的吸收率常数,将渗透率限制引入模型中。结果表明,与生物有关的溶出度测试是定性预测化合物A对食物的影响的有用工具。但是,只有将生物相关溶出度测试的结果与新开发的PBPK模型结合使用时,才能定量预测化合物A的血浆分布。

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