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采用非接触式电导检测的毛细管区带电泳法分离20种未衍生化的必需氨基酸。

Separation of twenty underivatized essential amino acids by capillary zone electrophoresis with contactless conductivity detection.

作者信息

Coufal Pavel, Zuska Jirí, van de Goor Tom, Smith Vonda, Gas Bohuslav

机构信息

Department of Analytical Chemistry, Faclty of Science, Charles Unviersity, Pragye, Czech Republic.

出版信息

Electrophoresis. 2003 Feb;24(4):671-7. doi: 10.1002/elps.200390079.

Abstract

Twenty underivatized essential amino acids were separated using capillary zone electrophoresis and consequently detected with contactless conductivity detection (CCD). A simple acidic background electrolyte (BGE) containing 2.3 M acetic acid and 0.1% w/w hydroxyethylcellulose (HEC) allowed the electrophoretic separation and sensitive detection of all 20 essential amino acids in their underivatized cationic form. The addition of HEC to the BGE suppressed both, electroosmotic flow and analyte adsorption on the capillary surface resulting in an excellent migration time reproducibility and a very good analyte peak symmetry. Additionally, the HEC addition significantly reduced the noise and long-term fluctuations of the CCD baseline. The optimized electrophoretic separation method together with the CCD was proved to be a powerful technique for determination of amino acid profiles in various natural samples, like beer, yeast, urine, saliva, and herb extracts.

摘要

使用毛细管区带电泳分离了20种未衍生化的必需氨基酸,并随后通过非接触式电导检测(CCD)进行检测。一种简单的酸性背景电解质(BGE),含有2.3 M乙酸和0.1% w/w羟乙基纤维素(HEC),能够以未衍生化的阳离子形式对所有20种必需氨基酸进行电泳分离和灵敏检测。向BGE中添加HEC可同时抑制电渗流和分析物在毛细管表面的吸附,从而实现出色的迁移时间重现性和良好的分析物峰对称性。此外,添加HEC显著降低了CCD基线的噪声和长期波动。经证明,优化后的电泳分离方法与CCD相结合是测定各种天然样品(如啤酒、酵母、尿液、唾液和草药提取物)中氨基酸谱的强大技术。

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