Lu Minghua, Tong Ping, Xiao Hui, Xia Shifei, Zheng Xinyu, Liu Wei, Zhang Lan, Chen Guonan
Ministry of Education Key Laboratory of Analysis and Detection Technology for Food Safety, Department of Chemistry, Fuzhou University, Fuzhou, Fujian, P. R. China.
Electrophoresis. 2007 May;28(9):1461-71. doi: 10.1002/elps.200600543.
A rapid, high-resolution and effective new method for analyzing 12 diuretics by CE-ESI-MS was established in this paper. Ten diuretics (except two neutral compounds) could be fast separated by CE with a DAD at 214 nm with a 20 kV voltage within 6 min, using a 50 microm id and 48.5 cm effective length uncoated fused-silica capillary in a 40 mM ammonium formate buffer (pH 9.40). CE was coupled to the mass spectrometer applying an orthogonal electrospray interface with a triple-tube sheath liquid arrangement. The sheath liquid was composed of isopropanol-water (1:1 v/v) containing 30 mM acetic acid with a flow rate of 4 microL/min. Mass spectrum was employed in the positive mode and both full scan mode and SIM scan mode were utilized. All 12 diuretics could be detected and confirmed by MS in a single analysis. Under optimized conditions, LODs for the 12 diuretics were in the range of 0.13-2.7 micromol/L at an S/N of 3, and the correlation coefficients R(2 )were between 0.9921 and 0.9978. The RDSs (n = 5) of the method was 0.24-0.94 % for migration times and 1.6-8.8 % for peak areas. The recoveries of spiked samples of 12 diuretics were between 72.4% and 118%. The real urine samples were injected directly for analysis, with only simple filtration through a 0.22 microm membrane filter in order to remove solid particles, which may cause capillary blockage. Based on the migration times and characteristic ions, the diuretics in urine samples were detected successfully. This CE-ESI-MS method for analyzing diuretics will hopefully be applied to doping control.
本文建立了一种快速、高分辨率且有效的采用毛细管电泳-电喷雾电离质谱联用技术分析12种利尿剂的新方法。10种利尿剂(除两种中性化合物外)能够在20 kV电压下,于6分钟内在40 mM甲酸铵缓冲液(pH 9.40)中,使用内径50微米、有效长度48.5厘米的未涂层熔融石英毛细管,通过214 nm波长的二极管阵列检测器进行快速分离。毛细管电泳与质谱仪联用,采用具有三管鞘液装置的正交电喷雾接口。鞘液由含30 mM乙酸的异丙醇-水(1:1 v/v)组成,流速为4微升/分钟。质谱采用正离子模式,同时使用全扫描模式和选择离子监测扫描模式。单次分析中,所有12种利尿剂均可通过质谱检测并确认。在优化条件下,12种利尿剂的检测限在S/N为3时为0.13 - 2.7微摩尔/升,相关系数R²在0.9921至0.9978之间。该方法的相对标准偏差(n = 5)迁移时间为0.24 - 0.94%,峰面积为1.6 - 8.8%。12种利尿剂加标样品的回收率在72.4%至118%之间。实际尿液样品直接进样分析,仅通过0.22微米的膜过滤器进行简单过滤以去除可能导致毛细管堵塞的固体颗粒。基于迁移时间和特征离子,成功检测出尿液样品中的利尿剂。这种用于分析利尿剂的毛细管电泳-电喷雾电离质谱联用方法有望应用于兴奋剂检测。