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Quantitative structure-retention relationships of flavonoids unraveled by immobilized artificial membrane chromatography

机译:固定化人工膜色谱法揭示的类黄酮的定量结构-保留关系

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The pharmacokinetic properties of flavonoids with differing degrees of lipophilicity were investigated using immobilized artificial membranes (IAMs) as the stationary phase in high performance liquid chromatography (HPLC). For each flavonoid compound, we investigated whether the type of column used affected the correlation between the retention factors and the calculated octanol/water partition (log P-oct). Three-dimensional (3D) molecular descriptors were calculated from the molecular structure of each compound using i) VolSurf software, ii) the GRID method (computational procedure for determining energetically favorable binding sites in molecules of known structure using a probe for calculating the 3D molecular interaction fields, between the probe and the molecule), and iii) the relationship between partition and molecular structure, analyzed in terms of physicochemical descriptors. The VolSurf built-in Caco-2 model was used to estimate compound permeability. The extent to which the datasets obtained from different columns differ both from each other and from both the calculated log Poct and the predicted permeability in Caco-2 cells was examined by principal component analysis (PCA). The immobilized membrane partition coefficients (k(IAM)) were analyzed using molecular descriptors in partial least square regression (PLS) and a quantitative structure-retention relationship was generated for the chromatographic retention in the cholesterol column. The cholesterol column provided the best correlation with the permeability predicted by the Caco-2 cell model and a good fit model with great prediction power was obtained for its retention data (R-2 = 0.96 and Q(2) = 0.85 with four latent variables). (C) 2015 Elsevier B.V. All rights reserved.
机译:在高效液相色谱(HPLC)中,使用固定化的人工膜(IAM)作为固定相,研究了不同亲脂度的类黄酮的药代动力学特性。对于每种类黄酮化合物,我们调查了所用色谱柱的类型是否会影响保留因子与计算出的辛醇/水分配之间的相关性(log P-oct)。使用i)VolSurf软件,ii)GRID方法(使用已知的结构使用能计算3D分子的探针确定在能量上有利的结合位点的计算程序,从每种化合物的分子结构中计算出三维(3D)分子描述符探针和分子之间的相互作用场),以及iii)分区与分子结构之间的关系,根据理化指标进行了分析。 VolSurf内置的Caco-2模型用于估计化合物的渗透率。通过主成分分析(PCA)检查了从不同列获得的数据集彼此之间的差异以及在Caco-2细胞中计算的log Poct和预测的渗透率两者之间的差异。使用分子描述符在偏最小二乘回归(PLS)中分析固定的膜分配系数(k(IAM)),并为色谱柱在胆固醇柱中的保留建立了定量的结构保留关系。胆固醇列与Caco-2细胞模型预测的通透性具有最佳相关性,并且其保留数据获得了具有良好预测能力的良好拟合模型(R-2 = 0.96和Q(2)= 0.85,具有四个潜在变量) )。 (C)2015 Elsevier B.V.保留所有权利。

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