首页> 外文期刊>Hemijska industrija >Application of lipophilicity parameters in QSRR analysis of newly synthesized s-triazine derivatives: Prediction of the retention behavior
【24h】

Application of lipophilicity parameters in QSRR analysis of newly synthesized s-triazine derivatives: Prediction of the retention behavior

机译:亲脂性参数在新合成的s-三嗪衍生物的QSRR分析中的应用:保留行为的预测

获取原文
           

摘要

Considerable attention has been paid to the analysis of chemicals in the s-triazine group, due to their widespread use in agricultural chemistry and their subsequent impact on biological systems. For initial chemical screening of the activity of newly synthesized compounds, it is recommended to determine their lipophilicity and physico-chemical property in relation to biological activity. Lipophilicity is difficult to quantify. The most widely accepted measure of lipophilicity is the octanol-water partition coefficient. Measurement of the octanol-water partition coefficients is achieved by an alternative method, i.e. reversed-phase liquid chromatography. Reversed-phase thin-layer chromatography (RP TLC) is a rapid method for the analysis of large number of s-triazine type compounds. Certain relationship between the structure of s-triazine compounds and their mobility on silica gel impregnated with paraffin oil have recently been demonstrated. The retention behavior of compounds in various chromatographic systems strongly depends on their physico-chemical properties. Recently, much effort was given in finding adequate mathematical model relating the retention of the given analyte to its physico-chemical and structural parameters (descriptors). These correlations are known as quantitative structure-retention relationships (QSRR), which offer a powerful tool for the prediction of separation behavior. The QSRR equations describing retention constants RM0, determined for different modifiers in mobile phase in terms of logarithms of n-octanol-water partition coefficients, were derived. The partition coefficients (AlogPs, AClogP, AB/logP, milogP, AlogP, MlogP, logPKowin, XlogP2, XlogP3, ACDlogP i ClogP) were calculated by application of different software packages. The goal of this paper was to select the logP data and TLC system that best characterize octanol/water partitioning and thus the lipophilicity of the investigated molecules.
机译:由于s-三嗪类化合物在农业化学中的广泛使用及其对生物系统的影响,因此对s-三嗪类化学物质的分析给予了极大的关注。对于新合成化合物活性的初步化学筛选,建议确定与生物活性相关的亲脂性和理化性质。亲脂性很难量化。最广泛接受的亲脂性度量是辛醇-水分配系数。辛醇-水分配系数的测量是通过另一种方法实现的,即反相液相色谱法。反相薄层色谱法(RP TLC)是分析大量s-三嗪类化合物的快速方法。最近已经证明了s-三嗪化合物的结构与其在石蜡油浸渍的硅胶上的迁移率之间的某些关系。化合物在各种色谱系统中的保留行为在很大程度上取决于其理化性质。近来,在寻找适当的数学模型上付出了很多努力,该数学模型将给定分析物的保留与其理化和结构参数(描述符)联系起来。这些相关性称为定量结构保留关系(QSRR),它为预测分离行为提供了强大的工具。得出了描述保留常数RM0的QSRR方程,该方程是根据正辛醇-水分配系数的对数确定的,用于流动相中不同改性剂的保留常数。通过应用不同的软件包来计算分配系数(AlogPs,AClogP,AB / logP,milogP,AlogP,MlogP,logPKowin,XlogP2,XlogP3,ACDlogP i ClogP)。本文的目的是选择最能表征辛醇/水分配以及所研究分子的亲脂性的logP数据和TLC系统。

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