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通过毛细管电泳对细菌生物标志物进行化学衍生化的在线样品预浓缩:一种将样品预处理与化学分析相结合的双重策略。

On-line sample preconcentration with chemical derivatization of bacterial biomarkers by capillary electrophoresis: a dual strategy for integrating sample pretreatment with chemical analysis.

作者信息

Ptolemy Adam S, Le Bihan Marianne, Britz-McKibbin Philip

机构信息

Department of Chemistry, McMaster University, Hamilton, Canada.

出版信息

Electrophoresis. 2005 Nov;26(21):4206-14. doi: 10.1002/elps.200500278.

Abstract

Simple, selective yet sensitive methods to quantify low-abundance bacterial biomarkers derived from complex samples are required in clinical, biological, and environmental applications. In this report, a new strategy to integrate sample pretreatment with chemical analysis is investigated using on-line preconcentration with chemical derivatization by CE and UV detection. Single-step enantioselective analysis of muramic acid (MA) and diaminopimelic acid (DAP) was achieved by CE via sample enrichment by dynamic pH junction with ortho-phthalaldehyde/N-acetyl-L-cysteine labeling directly in-capillary. The optimized method resulted in up to a 100-fold enhancement in concentration sensitivity compared to conventional off-line derivatization procedures. The method was also applied toward the detection of micromolar levels of MA and DAP excreted in the extracellular medium of Escherichia coli bacterial cell cultures. On-line preconcentration with chemical derivatization by CE represents a unique approach for conducting rapid, sensitive, and high-throughput analyses of other classes of amino acid and amino sugar metabolites with reduced sample handling, where the capillary functions simultaneously as a concentrator, microreactor, and chiral selector.

摘要

在临床、生物学和环境应用中,需要简单、选择性高且灵敏的方法来定量复杂样品中低丰度的细菌生物标志物。在本报告中,研究了一种将样品预处理与化学分析相结合的新策略,该策略采用毛细管电泳(CE)在线预富集和化学衍生化以及紫外检测。通过毛细管电泳(CE),利用邻苯二甲醛/N-乙酰-L-半胱氨酸标记在毛细管内直接进行动态pH连接富集样品,实现了对胞壁酸(MA)和二氨基庚二酸(DAP)的单步对映体选择性分析。与传统的离线衍生化方法相比,优化后的方法在浓度灵敏度上提高了100倍。该方法还应用于检测大肠杆菌细胞培养物细胞外培养基中微摩尔水平的胞壁酸(MA)和二氨基庚二酸(DAP)。通过毛细管电泳(CE)进行化学衍生化的在线预富集是一种独特的方法,可用于对其他类别的氨基酸和氨基糖代谢物进行快速、灵敏和高通量分析,同时减少样品处理,其中毛细管同时作为浓缩器、微反应器和手性选择器。

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