首页> 外文期刊>Journal of Pharmaceutical and Biomedical Analysis: An International Journal on All Drug-Related Topics in Pharmaceutical, Biomedical and Clinical Analysis >Structural properties governing drug-plasma protein binding determined by high-performance liquid chromatography method
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Structural properties governing drug-plasma protein binding determined by high-performance liquid chromatography method

机译:通过高效液相色谱法测定药物 - 血浆蛋白结合的结构性能

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Graphical abstract Display Omitted Abstract The high-performance liquid chromatography (HPLC) method employing stationary phases immobilized with plasma proteins was used for this study to investigate the structural properties governing drug-plasma protein binding. A set of 65 compounds with a broad range of structural diversity (in terms of volume, hydrogen-bonding, polarity and electrostatic force) were selected for this purpose. The Abraham linear free energy relationship (LFER) analyses of the retention factors on the immobilized HSA (human serum albumin) and AGP (α 1 -acid glycoprotein) stationary phases showed that McGowan’s characteristic molecular volume (V), dipolarity/polarizability (S) and hydrogen bond basicity (B) are the three significant molecular descriptors of solutes determining the interaction with immobilized plasma proteins, whereas excess molar refraction (E) is less important and hydrogen bond acidity (A) is not of statistical significance in both systems, for electrically neutral compounds. It was shown that ionised acids, as carboxylate anions, bind very strongly to the immobilized HSA stationary phase and that ionised bases, as cations bind strongly to the AGP stationary phase. This is the first time that the effect of ionised species on plasma protein binding has been determined quantitatively; the increased binding of acids to HSA is due almost entirely to acids in their ionised form.
机译:图形摘要显示省略摘要摘要采用固定用血浆蛋白质固定的固定相的高效液相色谱(HPLC)方法用于该研究以研究药物 - 血浆蛋白结合的结构性能。为此目的选择了一组具有宽范围结构多样性的65种具有宽范围结构多样性的化合物(在体积,氢键,极性和静电力方面)。固定化HSA(人血清白蛋白)和AGP(α1-ocid糖蛋白)固定阶段的保留因子的亚伯拉姆线性自由能量关系(LEFE)分析表明,McGowan的特征分子量(V),偏振/极化性(S)和氢键碱度(b)是确定与固定的血浆蛋白相互作用的三种重要分子描述符,而过量的摩尔折射(e)不太重要,氢键酸度(a)在两个系统中都不是统计学意义,电中性化合物。结果表明,作为羧酸盐阴离子的电离酸与固定的HSA固定相和电离碱非常强烈地结合,因为阳离子强烈地与AGP固定相强烈结合。这是第一次定量确定了电离物种对血浆蛋白结合的影响;酸与HSA的增加的增加几乎完全是其电离形式的酸。

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