Xu Zhongqi, Hirokawa Takeshi
Applied Chemistry, Department of Chemistry and Chemical Engineering, Graduate School of Engineering, Hiroshima University, Higashi-hiroshima, Japan.
Electrophoresis. 2004 Jul;25(14):2357-62. doi: 10.1002/elps.200305910.
We developed a novel on-line preconcentration procedure for microchip gel electrophoresis (MCGE), which enables application of electrokinetic supercharging (EKS) for highly sensitive detection of DNA fragments on a cross-geometry microchip. In comparison with conventional pinched injection using the cross microchip, the present approach allows loading a much larger amount of the sample by taking advantage of a newly developed operational mode. In order to obtain high preconcentration effect and prevent splitting of an enriched sample into subchannels, i.e., off the detector range, effects of the voltage applied on the reservoirs and the time of isotachophoretic preconcentration were examined. The optimal balance between the voltage and time was found for a high-sensitivity analysis of DNA fragments. After experimental optimization the detection limit of a 150 bp fragment was as low as 0.22 mg/L (S/N = 3) that is 10 times better than using the conventional pinched injection.
我们开发了一种用于微芯片凝胶电泳(MCGE)的新型在线预浓缩方法,该方法能够在交叉几何形状的微芯片上应用电动增压(EKS)对DNA片段进行高灵敏度检测。与使用交叉微芯片的传统夹断进样相比,本方法通过利用新开发的操作模式允许加载更多量的样品。为了获得高预浓缩效果并防止富集样品分裂到子通道中,即超出检测器范围,研究了施加在储液器上的电压和等速电泳预浓缩时间的影响。发现了电压和时间之间的最佳平衡,用于DNA片段的高灵敏度分析。经过实验优化,150 bp片段的检测限低至0.22 mg/L(S/N = 3),比使用传统夹断进样时提高了10倍。