van Wijk A M, Muijselaar P G, Stegman K, de Jong G J
Solvay Pharmaceuticals, Chemical and Pharmaceutical Development, C.J. van Houtenlaan 36, 1381 CP, Weesp, The Netherlands.
J Chromatogr A. 2007 Aug 3;1159(1-2):175-84. doi: 10.1016/j.chroma.2007.05.070. Epub 2007 May 29.
A generic approach has been developed for coupling capillary electrophoresis (CE) using non-volatile background electrolytes (BGEs) with mass spectrometry (MS) using a sheath liquid interface. CE-MS has been applied for basic and bi-functional compounds using a BGE consisting of 100 mM of TRIS adjusted to pH 2.5 using phosphoric acid. A liquid sheath effect is observed which may influence the CZE separation and hence may complicate the correlation between CE-UV and CE-MS methods. The influence of the liquid sheath effect on the migration behavior of basic pharmaceuticals has been studied by simulation experiments, in which the BGE outlet vial is replaced by sheath liquid in a CE-UV experiment. As a consequence of the liquid sheath effect, phosphate based BGEs can be used without significant loss of MS sensitivity compared to volatile BGEs. The use of buffer constituents such as TRIS can lead to lower detection limits as loss of MS sensitivity can be compensated by better CE performance. TRIS based BGEs permit relatively high injection amounts of about 100 pmol while maintaining high resolution. The ESI-MS parameters were optimized for a generic method with maximum sensitivity and stable operation, in which the composition of the sheath liquid and the position of the capillary were found to be important. Furthermore, the nebulizing pressure strongly influenced the separation efficiency. The system showed stable performance for several days and a reproducibility of about 15% RSD in peak area has been obtained. Nearly all test compounds used in this study could be analyzed with an MS detection limit of 0.05% measured in scan mode using extracted ion chromatograms. As a result, CE-MS was found to be a valuable analytical tool for pharmaceutical impurity profiling.
已经开发出一种通用方法,用于将使用非挥发性背景电解质(BGE)的毛细管电泳(CE)与使用鞘液接口的质谱(MS)联用。CE-MS已应用于碱性和双功能化合物,使用的BGE由100 mM的TRIS组成,用磷酸调节至pH 2.5。观察到一种液体鞘效应,这可能会影响毛细管区带电泳(CZE)分离,因此可能会使CE-UV和CE-MS方法之间的相关性变得复杂。通过模拟实验研究了液体鞘效应对碱性药物迁移行为的影响,在CE-UV实验中,将BGE出口小瓶替换为鞘液。由于液体鞘效应,与挥发性BGE相比,基于磷酸盐的BGE可以在不显著损失MS灵敏度的情况下使用。使用诸如TRIS等缓冲成分可以降低检测限,因为MS灵敏度的损失可以通过更好的CE性能来补偿。基于TRIS的BGE允许相对较高的进样量,约为100 pmol,同时保持高分辨率。对ESI-MS参数进行了优化,以实现具有最大灵敏度和稳定运行的通用方法,其中发现鞘液的组成和毛细管的位置很重要。此外,雾化压力强烈影响分离效率。该系统在几天内表现出稳定的性能,峰面积的相对标准偏差(RSD)约为15%。本研究中使用的几乎所有测试化合物都可以通过在扫描模式下使用提取离子色谱图测量的MS检测限为0.05%进行分析。因此,CE-MS被发现是药物杂质分析的一种有价值的分析工具。