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首页> 外文期刊>Electrophoresis: The Official Journal of the International Electrophoresis Society >Two-dimensional separation system of coupling capillary liquid chromatography to capillary electrophoresis for analysis of Escherichia coli metabolites
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Two-dimensional separation system of coupling capillary liquid chromatography to capillary electrophoresis for analysis of Escherichia coli metabolites

机译:毛细管液相色谱与毛细管电泳耦合的二维分离系统,用于大肠杆菌代谢物的分析

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A two-dimensional (2-D) separation system of coupling chromatography to electrophoresis was developed for profiling Escherichia coli metabolites. Capillary liquid chromatography (LC) with a monolithic silica-octaclecyl silica column (500 x 0.2 mm ID) was used as the first dimension, from which the effluent fractions were further analyzed by capillary electrophoresis (CE) acting as the second dimension. Field-enhanced stacking was selectively employed as a concentration strategy to interface the two dimensions, which proved to be beneficial for the detection of metabolites. An artificial sample containing 118 standards, some of which lack chromophores or have weak UV absorbance, was used to optimize the 2-D separation system. Under the optimum conditions, 63 components in the artificial sample having absorbance at 254 nm could be well resolved and detected. The utility of the system was demonstrated by comprehensive analysis of E coli metabolites. Comparing with the previous 2-D separation system we published in AnaL Chem. 2004, 76, 1419-1428, using a longer monolithic column in the first dimension improved the separation efficiency and offered the possibility of increasing the injection volume without compromising the separation efficiency. In the second dimension, field-enhanced stacking was used to improve the concentration sensitivity of the metabolites, and more metabolites in E coli cell extract were detected and identified using the developed 2-D separation system. In addition, preliminary investigation for future CE-mass spectrometry coupling was also made in the study by using volatile buffers in the capillary LC and CE techniques.
机译:开发了二维(2-D)分离色谱-电泳分离系统,用于分析大肠杆菌代谢产物。毛细管液相色谱(LC)和整体硅胶-八烷基硅胶色谱柱(500 x 0.2 mm内径)被用作第一维,从其中流出的馏分通过毛细管电泳(CE)作为第二维被进一步分析。场增强堆被选择性地用作集中策略来连接二维,这被证明对检测代谢物是有益的。使用包含118个标准品的人工样品优化了二维分离系统,其中一些标准品缺少发色团或紫外线吸收率较弱。在最佳条件下,可以很好地分离和检测出人工样品中63种在254 nm处有吸光度的成分。通过对大肠杆菌代谢产物的综合分析证明了该系统的实用性。与先前在AnaL Chem中发布的2-D分离系统相比。 2004,76,1419-1428,在第一维中使用更长的整体式色谱柱提高了分离效率,并提供了在不影响分离效率的情况下增加进样量的可能性。在第二维中,使用场增强堆叠技术来提高代谢物的浓度敏感性,并使用开发的二维分离系统检测和鉴定大肠杆菌细胞提取物中的更多代谢物。此外,在研究中还通过使用毛细管液相色谱和毛细管电泳技术中的挥发性缓冲液对未来的毛细管电泳-质谱联用进行了初步研究。

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