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通过阀接口将顺序注射分析与毛细管电泳-激光诱导荧光联用,用于氨基酸和肽的在线衍生化及分析。

Coupling of sequential injection analysis and capillary electrophoresis - Laser-induced fluorescence via a valve interface for on-line derivatization and analysis of amino acids and peptides.

作者信息

Zacharis Constantinos K, Tempels F W Alexander, Theodoridis Georgios A, Voulgaropoulos Anastasios N, Underberg Willy J M, Somsen Govert W, de Jong Gerhardus J

机构信息

Laboratory of Analytical Chemistry, Department of Chemistry, Aristotle University Thessaloniki, 541 24 Thessaloniki, Greece.

出版信息

J Chromatogr A. 2006 Nov 3;1132(1-2):297-303. doi: 10.1016/j.chroma.2006.07.076. Epub 2006 Aug 21.

Abstract

The on-line coupling of sequential injection analysis (SIA) and capillary electrophoresis (CE) via an in-line injection valve is presented. The SIA system is used for automated derivatization of amino acids and peptides. Dichlorotriazinylaminofluorescein serves as the derivatization agent, thus enabling sensitive laser-induced fluorescence detection of the derivatized analytes. The SIA procedure includes the following steps: (a) introduction of reagent and sample zones in a holding coil, (b) sample and reagent mixing in a reaction coil, (c) stop-flow step for increase of the reaction time, and (d) delivery of derivatized sample into the loop of the micro-valve interface. A small portion of the analyte zone is introduced electrokinetically in the separation capillary via the valve interface and CE analysis is performed. Factors affecting the CE separation, such as pH, the borate and sodium dodecyl sulphate concentration of the background electrolyte have been optimized. The derivatization conditions have been studied to obtain a high reaction yield in a relative short time. The transfer of a part of the reaction plug into the loop of the valve interface has been optimized. Using des-Tyr(1)-[Met]-enkephalinamide as test compound, it is demonstrated that after automated derivatization, on-line electrophoretic analysis could be achieved. Glycine has been selected as the internal standard in order to correct for variations in reaction time and filling of the injection loop. For the enkephalin, good reproducibility (RSD<4.5% calculated by the ratio of the peak areas) and linearity (0.5-5 microg mL(-1), R(2)>or=0.994) are obtained with a detection limit of 30 ng mL(-1) (S/N=3).

摘要

本文介绍了通过在线进样阀实现顺序注射分析(SIA)与毛细管电泳(CE)的在线联用。SIA系统用于氨基酸和肽的自动衍生化。二氯三嗪基氨基荧光素用作衍生化试剂,从而能够对衍生化分析物进行灵敏的激光诱导荧光检测。SIA程序包括以下步骤:(a)在保持线圈中引入试剂和样品区带;(b)在反应线圈中混合样品和试剂;(c)停流步骤以延长反应时间;(d)将衍生化样品输送到微阀接口的定量环中。一小部分分析物区带通过阀接口电动引入分离毛细管中并进行CE分析。已对影响CE分离的因素进行了优化,如背景电解质的pH值、硼酸盐和十二烷基硫酸钠浓度。对衍生化条件进行了研究,以在相对较短的时间内获得高反应产率。已对将部分反应塞转移到阀接口定量环中的操作进行了优化。以去酪氨酸(1)-[甲硫氨酸]-脑啡肽酰胺为测试化合物,结果表明,经过自动衍生化后,可以实现在线电泳分析。选择甘氨酸作为内标,以校正反应时间和进样环填充量的变化。对于脑啡肽,获得了良好的重现性(以峰面积比计算的相对标准偏差<4.5%)和线性(0.5 - 5 μg mL⁻¹,R²≥0.994),检测限为30 ng mL⁻¹(信噪比=3)。

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