Risley Jessica May, Chen David Da Yong
Department of Chemistry, University of British Columbia, Vancouver, BC, Canada.
Electrophoresis. 2017 Jun;38(12):1644-1648. doi: 10.1002/elps.201600545. Epub 2017 Apr 26.
Post-column chemical environment modification can affect detection sensitivity and signal appearance when capillary electrophoresis is coupled through electrospray ionization to mass spectrometry (CE-ESI-MS). In this study, changes in the signal intensity and peak shape of N-Acetylneuraminic acid (Neu5Ac) were examined when the modifier solution used in a flow-through microvial interface for CE-ESI-MS was prepared using an acidic or basic background electrolyte (BGE) composition. The use of a basic modifier resulted in improved detection compared to the results obtained when an acidic modifier was used in negative ion mode. Increased sensitivity and more symmetrical peak shape were obtained. Using an acidic modifier, the LOD of Neu5Ac was 47.7 nM, whereas for a basic modifier, the LOD of Neu5Ac was 5.20 nM. The calculated asymmetry factor at 100 nM of Neu5Ac ranged from 0.71 to 1.5 when an acidic modifier was used, while the factor ranged from 1.0 to 1.1 when a basic modifier was used. Properly chosen post-column chemical modification can have a significant effect on the performance of the CE-MS system.
当毛细管电泳通过电喷雾电离与质谱联用(CE-ESI-MS)时,柱后化学环境修饰会影响检测灵敏度和信号表现。在本研究中,当用于CE-ESI-MS的流通式微瓶接口中使用的改性剂溶液采用酸性或碱性背景电解质(BGE)组成制备时,检测了N-乙酰神经氨酸(Neu5Ac)的信号强度和峰形变化。与在负离子模式下使用酸性改性剂时获得的结果相比,使用碱性改性剂可提高检测效果。获得了更高的灵敏度和更对称的峰形。使用酸性改性剂时,Neu5Ac的检测限为47.7 nM,而使用碱性改性剂时,Neu5Ac的检测限为5.20 nM。当使用酸性改性剂时,100 nM的Neu5Ac计算出的不对称因子范围为0.71至1.5,而使用碱性改性剂时,该因子范围为1.0至1.1。正确选择柱后化学修饰对CE-MS系统的性能会有显著影响。