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微乳液电动色谱法分析抗癌铂(II)配合物:非对映异构体的分离及正辛醇-水分配系数的估算

Analysis of anticancer platinum(II)-complexes by microemulsion electrokinetic chromatography: separation of diastereomers and estimation of octanol-water partition coefficients.

作者信息

Rappel Christina, Galanski Mathea Sophia, Yasemi Afshin, Habala Ladislav, Keppler Bernhard K

机构信息

Institute of Inorganic Chemistry, University of Vienna, Vienna, Austria.

出版信息

Electrophoresis. 2005 Feb;26(4-5):878-884. doi: 10.1002/elps.200410053.

Abstract

Microemulsion electrokinetic chromatography (MEEKC) was applied for the separation and lipophilicity estimation of oxaliplatin and eight novel anticancer oxaliplatin derivatives. Solubility and permeability have to be balanced in modern drug development, and the octanol-water partition coefficient (log P) still represents one of the most useful quantifiable parameters providing a reasonable estimation of a drug's lipophilicity. Therefore, the capacity factors from MEEKC were correlated to log P values derived by the traditional shake flask method. The MEEKC method was accomplished using a microemulsion of heptane/sodium dodecyl sulfate (SDS)/butanol in phosphate buffer at pH 7.4 and 37 degrees C with all analytes being in a neutral state during the run. This experimental setup allowed a baseline separation of all platinum complexes within 11 min. Remarkably, beside the very good resolution and precision of the measurements, separation of diastereomers of the complexes and quantification of the diastereomeric ratios could be achieved. Correlating the capacity factors with the corresponding log P values resulted in a linear dependency with a correlation factor of r = 0.9935. Consequently, the applied MEEKC method was found to be a highly valuable technique not only for the separation of platinum complexes but as well for the estimation of the octanol-water partition coefficient with many advantages in comparison to other methods.

摘要

微乳液电动色谱法(MEEKC)用于奥沙利铂及八种新型抗癌奥沙利铂衍生物的分离和脂溶性评估。在现代药物研发中,溶解性和渗透性必须达到平衡,而正辛醇 - 水分配系数(log P)仍是最有用的可量化参数之一,能合理估算药物的脂溶性。因此,将MEEKC得到的容量因子与传统摇瓶法得出的log P值进行关联。MEEKC方法是在pH 7.4、37℃的磷酸盐缓冲液中使用庚烷/十二烷基硫酸钠(SDS)/丁醇的微乳液来完成的,运行过程中所有分析物均处于中性状态。这种实验设置能在11分钟内实现所有铂配合物的基线分离。值得注意的是,除了测量具有非常好的分辨率和精密度外,还能实现配合物非对映异构体的分离以及非对映体比例的定量。将容量因子与相应的log P值进行关联,得到了线性相关性,相关系数r = 0.9935。因此,发现所应用的MEEKC方法不仅是分离铂配合物的一项非常有价值的技术,而且与其他方法相比,在估算正辛醇 - 水分配系数方面也具有许多优势。

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