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儿茶酚胺的毛细管电泳-电喷雾电离-质谱分析的优化

Optimization of capillary electrophoretic-electrospray ionization-mass spectrometric analysis of catecholamines.

作者信息

Vuorensola K, Kokkonen J, Sirén H, Ketola R A

机构信息

VTT Chemical Technology, Finland.

出版信息

Electrophoresis. 2001 Dec;22(20):4347-54. doi: 10.1002/1522-2683(200112)22:20<4347::AID-ELPS4347>3.0.CO;2-J.

Abstract

The capillary electrophoretic-mass spectrometric analysis (CE-MS) of catecholamines was optimized with coaxial sheath flow interface and electrospray ionization (ESI). The parameters studied included the sheath liquid composition and its flow rate, separation conditions in ammonium acetate buffer together with the ESI and cone voltages as mass spectrometric parameters. In addition, the effect of ESI voltage on injection as well as the siphoning effect were considered. The optimized conditions were a sheath liquid composition of methanol-water (80:20 v/v) with 0.5% acetic acid, with a flow rate of 6 microL/min. The capillary electrophoretic separation parameters were optimized with 50 mM ammonium acetate buffer, pH 4.0, to +25 kV separation voltage together with a pressure of 0.1 psi. The most intensive signals were obtained with an ESI voltage of +4.0 kV and a cone voltage of +20 V. The nonactive ESI voltage during injection as well as avoidance of the siphoning effect increased the sensitivity of the MS detection considerably. The use of ammonium hydroxide as the CE capillary conditioning solution instead of sodium hydroxide did not affect the CE-MS performance, but allowed the conditioning of the capillary between analyses to be performed in the MS without contaminating the ion source.

摘要

采用同轴鞘流接口和电喷雾电离(ESI)对儿茶酚胺进行毛细管电泳-质谱分析(CE-MS)优化。研究的参数包括鞘液组成及其流速、醋酸铵缓冲液中的分离条件以及作为质谱参数的ESI和锥孔电压。此外,还考虑了ESI电压对进样的影响以及虹吸效应。优化条件为甲醇-水(80:20 v/v)与0.5%醋酸组成的鞘液,流速为6 μL/min。毛细管电泳分离参数用50 mM pH 4.0的醋酸铵缓冲液优化,分离电压为+25 kV,压力为0.1 psi。在ESI电压为+4.0 kV、锥孔电压为+20 V时获得最强信号。进样期间使用非活性ESI电压以及避免虹吸效应显著提高了MS检测的灵敏度。使用氢氧化铵而非氢氧化钠作为CE毛细管调节溶液不会影响CE-MS性能,但可在MS中进行分析之间的毛细管调节而不污染离子源。

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