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首页> 外文期刊>Molecular pharmaceutics >In Vitro Primary Human and Animal Cell-Based Blood-Brain Barrier Models as a Screening Tool in Drug Discovery.
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In Vitro Primary Human and Animal Cell-Based Blood-Brain Barrier Models as a Screening Tool in Drug Discovery.

机译:体外基于人类和动物细胞的主要血脑屏障模型作为药物发现中的筛选工具。

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摘要

Brain penetration is characterized by its extent and rate and is influenced by drug physicochemical properties, plasma exposure, plasma and brain protein binding and BBB permeability. This raises questions related to physiology, interspecies differences and in vitro/in vivo extrapolation. We herein discuss the use of in vitro human and animal BBB model as a tool to improve CNS compound selection. These cell-based BBB models are characterized by low paracellular permeation, well-developed tight junctions and functional efflux transporters. A study of twenty drugs shows similar compound ranking between rat and human models although with a 2-fold higher permeability in rat. cLogP < 5, PSA < 120 A, MW < 450 were confirmed as essential for CNS drugs. An in vitro/in vivo correlation in rat (R(2) = 0.67; P = 2 x 10(-4)) was highlighted when in vitro permeability and efflux were considered together with plasma exposure and free fraction. The cell-based BBB model is suitable to optimize CNS-drug selection, to study interspecies differences and then to support human brain exposure prediction.
机译:脑渗透的特征在于其程度和速率,并受药物理化特性​​,血浆暴露,血浆和脑蛋白结合以及BBB渗透性的影响。这就提出了与生理学,种间差异和体外/体内外推有关的问题。我们在此讨论体外人和动物BBB模型作为改善CNS化合物选择的工具的用途。这些基于细胞的血脑屏障模型的特点是细胞旁渗透率低,发达的紧密连接和功能性外排转运蛋白。一项对二十种药物的研究显示,尽管大鼠的通透性高出2倍,但在大鼠和人类模型之间的化合物排名相似。 cLogP <5,PSA <120 A,MW <450被确认对CNS药物至关重要。当将体外渗透性和外排量与血浆暴露和游离分数一起考虑时,突出显示了大鼠体内/体外的相关性(R(2)= 0.67; P = 2 x 10(-4))。基于细胞的血脑屏障模型适用于优化中枢神经系统药物选择,研究物种间差异,然后支持人脑暴露预测。

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