Ptolemy Adam S, Britz-McKibbin Philip
Department of Chemistry, McMaster University, Hamilton, Ont., Canada L8S 4M1.
J Chromatogr A. 2006 Feb 17;1106(1-2):7-18. doi: 10.1016/j.chroma.2005.11.012. Epub 2005 Dec 5.
New strategies for integrating sample pretreatment with chemical analyses under a single format is required for rapid, sensitive and enantioselective analyses of low abundance metabolites in complex biological samples. Capillary electrophoresis (CE) offers a unique environment for controlling analyte/reagent band dispersion and electromigration properties using discontinuous electrolyte systems. Recent work in our laboratory towards developing a high-throughput CE platform for low abundance metabolites via on-line sample preconcentration with chemical derivatization (SPCD) is primarily examined in this review, as there have been surprisingly only a few strategies reported in the literature to date. In-capillary sample preconcentration serves to enhance concentration sensitivity via electrokinetic focusing of long sample injection volumes for lower detection limits, whereas chemical derivatization by zone passing is used to expand detectability and selectivity, notably for enantiomeric resolution of metabolites lacking intrinsic chromophores using nanolitre volumes of reagent. Together, on-line SPCD-CE can provide over a 100-fold improvement in concentration sensitivity, shorter total analysis times, reduced sample handling and improved reliability for a variety of amino acid and amino sugar metabolites, which is also amenable to automated high-throughput screening. This review will highlight basic method development and optimization parameters relevant to SPCD-CE, including applications to bacterial metabolite flux and biomarker analyses. Insight into the mechanism of analyte focusing and labeling by SPCD-CE is also discussed, as well as future directions for continued research.
为了对复杂生物样品中的低丰度代谢物进行快速、灵敏和对映选择性分析,需要在单一形式下将样品预处理与化学分析相结合的新策略。毛细管电泳(CE)提供了一个独特的环境,可使用不连续电解质系统来控制分析物/试剂带的分散和电迁移特性。本文综述主要探讨了我们实验室最近通过化学衍生在线样品预浓缩(SPCD)开发用于低丰度代谢物的高通量CE平台的工作,因为迄今为止文献中报道的此类策略出奇地少。毛细管内样品预浓缩通过对长进样体积进行电动聚焦来提高浓度灵敏度,以实现更低的检测限,而通过区带通过进行化学衍生则用于扩大可检测性和选择性,特别是对于使用纳升体积试剂对缺乏固有发色团的代谢物进行对映体拆分。在线SPCD-CE共同作用,可使各种氨基酸和氨基糖代谢物的浓度灵敏度提高100倍以上,总分析时间缩短,样品处理减少,可靠性提高,这也适用于自动化高通量筛选。本综述将重点介绍与SPCD-CE相关的基本方法开发和优化参数,包括在细菌代谢物通量和生物标志物分析中的应用。还讨论了对SPCD-CE分析物聚焦和标记机制的见解以及持续研究的未来方向。