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首页> 外文期刊>International Journal of Pharmaceutics >Prediction of passive intestinal absorption using bio-mimetic artificial membrane permeation assay and the paracellular pathway model.
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Prediction of passive intestinal absorption using bio-mimetic artificial membrane permeation assay and the paracellular pathway model.

机译:使用仿生人工膜渗透测定和细胞旁通路模型预测被动肠道吸收。

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摘要

The purpose of this study was to construct and examine the prediction model for total passive permeation through the intestinal membrane. The paracellular pathway prediction model based on Renkin function (PP-RF) was combined with a bio-mimetic artificial membrane permeation assay (BAMPA), which is an in vitro method to predict transcellular pathway permeation, to construct the prediction model (BAMPA-PP-RF model). The parameters of the BAMPA-PP-RF model, e.g. apparent pore radius and potential drop of the paracellular pathway, were calculated from BAMPA permeability, the dissociation constant, the molecular radius and the fraction of a dose absorbed in humans consisting of 80 structurally diverse compounds. The apparent pore radius and the apparent potential drop obtained in this study were 5.61-5.65 A and 75-86 mV, respectively, and these were in accordance with the previously reported values. The mean square root error of the BAMPA-PP-RF model was 13-14%. The BAMPA-PP-RF model was shown to be able to predict the total passive permeability more adequately than BAMPA alone.
机译:本研究的目的是构建和检验通过肠膜的总被动渗透的预测模型。将基于Renkin功能的细胞旁通路预测模型(PP-RF)与仿生人工膜渗透测定(BAMPA)(一种体外预测跨细胞通路渗透的方法)相结合,以构建预测模型(BAMPA-PP -RF模型)。 BAMPA-PP-RF模型的参数,例如根据BAMPA的通透性,解离常数,分子半径和人体吸收的由80种结构多样的化合物组成的剂量分数,可以计算出明显的孔半径和副细胞途径的电位下降。在这项研究中获得的表观孔半径和表观电势降分别为5.61-5.65 A和75-86 mV,与先前报道的值一致。 BAMPA-PP-RF模型的均方根误差为13-14%。与单独使用BAMPA相比,显示BAMPA-PP-RF模型能够更充分地预测总被动磁导率。

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