High-sensitivity analyses of metabolites introduction in biological samples by capillary electrophoresis using dynamic pH junction-sweeping

被引:31
作者
Britz-McKibbin, P [1 ]
Terabe, S [1 ]
机构
[1] Himeji Inst Technol, Grad Sch Sci, Dept Mat Sci, Kamigori, Hyogo 6781297, Japan
关键词
capillary electrophoresis; on-line sample preconcentration; dynamic pH junction-sweeping; metabolites; flavins; bacillus subtilis; biological samples;
D O I
10.1002/tcr.10041
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Emerging fields of biochemical research, such as metabolomics, present challenges to current separation technologies because of the large number of metabolites present in a cell and their often low (submicromolar) concentration. Although capillary electrophoresis (CE) holds great promise as the method of choice for high-resolution separations of biological samples, it suffers from poor concentration sensitivity, especially with the use of UV detection. In CE, sweeping and dynamic PH junction represent two complementary on-line focusing techniques that have been used for sensitivity enhancement of hydrophobic and weakly acidic analytes, respectively. However, the application of either the sweeping or dynamic PH junction technique alone might, in some cases, be less effective for the analysis of certain sample mixtures. Recent work in the development of a hyphenated dynamic PH junction-sweeping technique is presented as an effective on-line method of preconcentration suitable for both hydrophilic (anionic) and hydrophobic (neutral) analytes. Sensitive analyses of flavin metabolites by CE with laser-induced fluorescence (LIF) detection is demonstrated in various biological matrixes, including cell extracts of Bacillus subtilis, pooled human plasma, as well as heat-deproteinized flavoenzymes. Enhanced analyte band narrowing and improved sensitivity is achieved for flavins using dynamic PH junction-sweeping compared to either sweeping or dynamic pH junction alone. This results in over a 1200-fold improvement in sensitivity relative to conventional injection methods, giving a limit of detection (LOD, defined as S/N = 3) of about 4.0 X 10(-12) M. Strategies for sensitive and more comprehensive analyses of other cell metabolites, including nucleotides, coenzymes, and steroids, are also discussed when using on-line focusing techniques in conjunction with multiplexed CE and UV detection. (C) 2002 The Japan Chemical Journal Forum and Wiley Periodicals, Inc.
引用
收藏
页码:397 / 404
页数:8
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