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基于 PAMPA 渗透率的 QSAR 分析对人类口服吸收的体内预测。

In silico prediction of human oral absorption based on QSAR analyses of PAMPA permeability.

机构信息

Laboratory of Comparative Agricultural Science, Graduate School of Agriculture, Kyoto University, Kyoto 606-8502, Japan.

出版信息

Chem Biodivers. 2009 Nov;6(11):1845-66. doi: 10.1002/cbdv.200900112.

Abstract

The parallel artificial membrane permeation assay (PAMPA) was developed as a model for the prediction of transcellular permeation in the process of drug absorption. Our research group has measured the PAMPA permeability of peptide-related compounds, diverse drugs, and agrochemicals. This work led to a classical quantitative structure-activity relationship (QSAR) equation for PAMPA permeability coefficients of structurally diverse compounds based on simple physicochemical parameters such as lipophilicity at a particular pH (log P(oct) and |pKa-pH|), H-bond acceptor ability (SA(HA)), and H-bond donor ability (SA(HD)). Since the PAMPA permeability of lipophilic compounds decreased with their apparent lipophilicity due to the unstirred water layer (UWL) barrier on membrane surfaces and to membrane retention, a bilinear QSAR model was introduced to explain the permeability of a broader set of compounds using the same physicochemical parameters as those used for the linear model. We also compared PAMPA and Caco-2 cell permeability coefficients of compounds transported by various absorption mechanisms. The compounds were classified according to their absorption pathway (passively transported compounds, actively transported compounds, and compounds excreted by efflux systems) in the plot of Caco-2 vs. PAMPA permeability. Finally, based on the QSAR analyses of PAMPA permeability, an in silico prediction model of human oral absorption for possibly transported compounds was proposed, and the usefulness of the model was examined.

摘要

平行人工膜渗透测定法 (PAMPA) 是作为预测药物吸收过程中细胞间渗透的模型而开发的。我们的研究小组已经测量了与肽相关的化合物、各种药物和农用化学品的 PAMPA 渗透性。这项工作导致了一个基于特定 pH 值下的脂溶性(log P(oct) 和 |pKa-pH|)、氢键供体能力 (SA(HD)) 和氢键受体能力 (SA(HA)) 等简单物理化学参数的经典定量构效关系 (QSAR) 方程,用于预测结构多样的化合物的 PAMPA 渗透系数。由于亲脂性化合物的 PAMPA 渗透性由于膜表面的未搅动水层 (UWL) 屏障和膜保留而随其表观脂溶性降低,因此引入了双线性 QSAR 模型,以使用与线性模型相同的物理化学参数来解释更广泛的化合物的渗透性。我们还比较了通过各种吸收机制运输的化合物的 PAMPA 和 Caco-2 细胞渗透性系数。根据吸收途径(被动转运化合物、主动转运化合物和由外排系统排泄的化合物)将化合物分类,在 Caco-2 与 PAMPA 渗透性的图中进行分类。最后,基于 PAMPA 渗透性的 QSAR 分析,提出了一种用于预测可能转运化合物的人体口服吸收的计算预测模型,并检验了该模型的有用性。

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