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首页> 外文期刊>Journal of Medicinal Chemistry >Surface Activity Profiling of Drugs Applied to the Prediction of Blood-Brain Barrier Permeability
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Surface Activity Profiling of Drugs Applied to the Prediction of Blood-Brain Barrier Permeability

机译:药物的表面活性分析在预测血脑屏障通透性中的应用

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The present study describes a novel in vitro platform for physicochemical profiling of compounds, based on their impact on the air/water interfacial tension. Interfacial partitioning coefficient, cross-sectional area, and critical micelle concentration were derived from the Gibbs adsorption isotherms recorded for 76 structurally diverse drugs. An approximation for the membrane partitioning coefficient, K_(memb), is introduced and calculated for the measured compounds. This methodology provides a fully automatic, high-throughput screening technique for compound characterization, yielding precise thermodynamic information on the partitioning behavior of molecules at air/water interfaces, which can be directly related to their anisotropic interaction with lipid bilayers in biological membranes. The latter represents the barrier for the passive entry of compounds into cells. The surface activity profiles are shown to correlate to the ability of the compounds to pass passively through the blood-brain barrier.
机译:本研究基于化合物对空气/水界面张力的影响,描述了一种用于化合物物理化学分析的新型体外平台。界面分配系数,横截面积和临界胶束浓度来自记录的76种结构多样的药物的吉布斯吸附等温线。引入膜分配系数的近似值K_(memb)并为所测化合物计算。这种方法为化合物的表征提供了一种全自动的高通量筛选技术,可提供有关分子在空气/水界面处的分配行为的精确热力学信息,这可能直接关系到它们与生物膜中脂质双层的各向异性相互作用。后者代表化合物被动进入细胞的障碍。显示表面活性曲线与化合物被动通过血脑屏障的能力相关。

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