Mokaddem Meriem, Varenne Anne, Belgaied Jamel-Eddine, Factor Cécile, Gareil Pierre
Laboratoire d'Electrochimie et Chimie Analytique, UMR 7575 CNRS-ENSCP-Paris 6, Paris, France.
Electrophoresis. 2007 Aug;28(17):3070-7. doi: 10.1002/elps.200700176.
A method for a single-run separation of cationic, anionic, and polyanionic compounds by CE hyphenated to ESI MS (CE-ESI-MS) is described. One of the main issues for coupling CE to MS with an ESI source consists in maintaining an electric contact for the electrophoretic separation. This condition is only performed if a liquid flow arising from the separation capillary is directed to the needle, making it coupling-compatible. This latter situation is incompatible with the separations of polyanionic compounds of higher electrophoretic mobility (in absolute value) than the electroosmotic mobility, performed in bare fused-silica capillaries under a negative polarity. In this study, several alternative approaches were evaluated to circumvent this difficulty, and applied to the setup of the CE-MS separation of a mixture containing both cationic and polyanionic compounds, which are synthesis intermediates of contrast agents for medical imaging. Eventually, the detection of the cationic and anionic compounds in a single run could be obtained by either using neutrally coated polymethylsiloxane (DB-1) capillaries and simultaneously applying a negative voltage polarity and a pressure allowing to compensate for the residual cathodic EOF or by dynamically modifying the inner wall of a bare fused-silica capillary with a polycationic polymer (hexadimethrine bromide) and using it afterwards under negative voltage polarity.
描述了一种通过与电喷雾电离质谱联用的毛细管电泳(CE-ESI-MS)对阳离子、阴离子和聚阴离子化合物进行单次分离的方法。将CE与带有ESI源的MS联用的主要问题之一在于维持电泳分离的电接触。只有当分离毛细管产生的液流导向针头时,才能实现这种条件,使其具有联用兼容性。后一种情况与在负极性下在裸熔融石英毛细管中进行的电泳迁移率(绝对值)高于电渗迁移率的聚阴离子化合物的分离不兼容。在本研究中,评估了几种替代方法来克服这一困难,并将其应用于含有阳离子和聚阴离子化合物混合物的CE-MS分离设置中,这些化合物是医学成像造影剂的合成中间体。最终,通过使用中性涂层的聚甲基硅氧烷(DB-1)毛细管,并同时施加负极性电压和压力以补偿残留的阴极电渗流,或者通过用聚阳离子聚合物(溴化己二甲铵)动态修饰裸熔融石英毛细管的内壁,然后在负极性电压下使用它,可以在单次运行中检测阳离子和阴离子化合物。