首页> 外文期刊>Journal of pharmaceutical sciences. >Rapid-gradient HPLC method for measuring drug interactions with immobilized artificial membrane: comparison with other lipophilicity measures.
【24h】

Rapid-gradient HPLC method for measuring drug interactions with immobilized artificial membrane: comparison with other lipophilicity measures.

机译:快速梯度HPLC方法,用于测定药物与固定化人造膜的相互作用:与其他亲脂性方法的比较。

获取原文
获取原文并翻译 | 示例
           

摘要

A fast-gradient high-performance liquid chromatographic (HPLC) method has been suggested to characterize the interactions of drugs with an immobilized artificial membrane (IAM). With a set of standards, the gradient retention times can be converted to Chromatographic Hydrophobicity Index values referring to IAM chromatography (CHI(IAM)) that approximates an acetonitrile concentration with which the equal distribution of compound can be achieved between the mobile phase and IAM. The CHI(IAM) values are more suitable for interlaboratory comparison and for high throughput screening of new molecular entities than the log k(IAM) values (isocratic retention factor on IAM). The fast-gradient method has been validated against the isocratic log k(IAM) values using the linear free energy relationship solvation equations based on the data from 48 compounds. The compound set was selected to provide a wide range and the least cross-correlation between the molecular descriptors in the solvation equation: (2) where SP is a solute property (e.g., logarithm of partition coefficients, reversed-phase (RP)-HPLC retention parameters, such as log k, log k(w), etc.) and the explanatory variables are solute descriptors as follows: R(2) is an excess molar refraction that can be obtained from the measured refractive index of a compound, pi(2)(H) is the solute dipolarity/polarizability, summation operatoralpha(2)(H) and summation operatorbeta(2)(0) are the solute overall or effective hydrogen-bond acidity and basicity, respectively, and V(x) is the McGowan characteristic volume (in cm(3)/100 mol) that can be calculated for any solute simply from molecular structure using a table of atomic constants. It was found that the relative constants of the solvation equation were very similar for the CHI(IAM) and for the log k(IAM). The IAM lipophilicity scale was quite similar to the octanol/water lipophilicity scale for neutral compounds. The effect of charge on the interaction with IAM was studied by varying the mobile phase pH. Copyright 2000 Wiley-Liss, Inc.
机译:已经提出了一种快速梯度高效液相色谱(HPLC)方法来表征药物与固定化人工膜(IAM)的相互作用。使用一组标准,可以将梯度保留时间转换为参考IAM色谱法(CHI(IAM))的色谱疏水性指数值,该值近似于乙腈浓度,通过该浓度可以在流动相和IAM之间获得化合物的均等分布。与log k(IAM)值(IAM上的等度保留因子)相比,CHI(IAM)值更适合实验室间比较和新分子实体的高通量筛选。基于48种化合物的数据,使用线性自由能关系溶剂化方程针对等度log k(IAM)值对快速梯度方法进行了验证。选择化合物组以在溶剂化方程式中的分子描述子之间提供宽范围和最小的互相关性:(2)其中SP是溶质性质(例如,分配系数的对数,反相(RP)-HPLC保留参数,例如log k,log k(w)等)和解释变量是如下的溶质描述:R(2)是过量的摩尔折射率,可以从化合物的测得折射率pi获得(2)(H)是溶质的双极性/极化率,求和算子alpha(2)(H)和求和算子β(2)(0)分别是溶质的整体或有效氢键酸度和碱度,以及V(x)是McGowan特征体积(单位为cm(3)/ 100 mol),可以使用原子常数表从分子结构简单地计算出任何溶质。发现对于CHI(IAM)和log k(IAM),溶剂化方程的相对常数非常相似。 IAM亲脂性等级与中性化合物的辛醇/水亲脂性等级非常相似。通过改变流动相的pH值,研究了电荷对与IAM相互作用的影响。版权所有2000 Wiley-Liss,Inc.

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号