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通过毛细管电泳结合化学衍生化在线样品预富集进行单步对映选择性氨基酸通量分析。

Single-step enantioselective amino acid flux analysis by capillary electrophoresis using on-line sample preconcentration with chemical derivatization.

作者信息

Ptolemy Adam S, Tran Lara, Britz-McKibbin Philip

机构信息

Department of Chemistry, McMaster University, Hamilton, Ont. L8S 4M1, Canada.

出版信息

Anal Biochem. 2006 Jul 15;354(2):192-204. doi: 10.1016/j.ab.2006.04.016. Epub 2006 May 17.

Abstract

Capillary electrophoresis (CE) represents a versatile platform for integrating sample pretreatment with chemical analysis because of its ability to tune analyte electromigration and band dispersion properties in discontinuous electrolyte systems. In this article, a single-step method that combines on-line sample preconcentration with in-capillary chemical derivatization is developed for rapid, sensitive, and enantioselective analysis of micromolar levels of amino acids that lack intrinsic chromophores by CE with UV detection. Time-resolved electrophoretic studies revealed two distinct stages of amino acid band narrowing within the original long sample injection plug occurring both prior to and after in-capillary labeling via zone passing by ortho-phthalaldehyde/N-acetyl l-cysteine (OPA/NAC). This technique enabled direct analysis of d-amino acids in a 95% enantiomeric excess mixture with sub-micromolar detection limits and minimal sample handling, where the capillary functions as a preconcentrator, microreactor, and chiral selector. On-line sample preconcentration with chemical derivatization CE (SPCD-CE) was applied to study the enantioselective amino acid flux in Escherichia coli bacteria cultures, which demonstrated a unique l-Ala efflux into the extracellular medium. New strategies for high-throughput analyses of low-abundance metabolites are important for understanding fundamental physiological processes in bacteria required for screening the efficacy of new classes of antibiotics as well as altered metabolism in genetically modified mutant strains.

摘要

毛细管电泳(CE)是一种多功能平台,可将样品预处理与化学分析相结合,因为它能够在不连续电解质系统中调节分析物的电迁移和谱带分散特性。在本文中,开发了一种将在线样品预浓缩与毛细管内化学衍生相结合的单步方法,用于通过紫外检测的CE对缺乏固有发色团的微摩尔水平氨基酸进行快速、灵敏和对映选择性分析。时间分辨电泳研究表明,在通过邻苯二甲醛/N-乙酰基-L-半胱氨酸(OPA/NAC)进行毛细管内标记之前和之后,原始长样品进样塞内氨基酸谱带变窄有两个不同阶段。该技术能够直接分析对映体过量95%的混合物中的D-氨基酸,检测限低于亚微摩尔,且样品处理最少,其中毛细管起到预浓缩器、微反应器和手性选择器的作用。将化学衍生毛细管电泳在线样品预浓缩(SPCD-CE)应用于研究大肠杆菌培养物中的对映选择性氨基酸通量,结果表明有独特的L-丙氨酸外流到细胞外培养基中。高通量分析低丰度代谢物的新策略对于理解细菌的基本生理过程很重要,这些过程对于筛选新型抗生素的疗效以及转基因突变菌株中代谢变化是必需的。

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