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首页> 外文期刊>Journal of chromatography, A: Including electrophoresis and other separation methods >Novel, fully automatic hydrophilic interaction/reversed-phase column-switching high-performance liquid chromatographic system for the complementary analysis of polar and apolar compounds in complex samples
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Novel, fully automatic hydrophilic interaction/reversed-phase column-switching high-performance liquid chromatographic system for the complementary analysis of polar and apolar compounds in complex samples

机译:新型,全自动亲水相互作用/反相柱切换高效液相色谱系统,用于复杂样品中极性和非极性化合物的互补分析

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in this study we developed and optimized a column-switching high-performance liquid chromatographic (HPLC) system for the complementary analysis of polar and apolar compounds in complex samples. The polar compounds are separated on a hydrophilic interaction chromatographic (HILIC) column; the part of the sample non-retained on HILIC is transferred into and separated on a reversed-phase (RP) column through an interface, thus preventing the loss of analytes eluting at dead time in common single-column mode. The signals are in turn recorded in the same chromatogram either by a UV or by a mass spectrometric detector. Applying a mixture of 25 standard compounds (12 hydrophilic and 13 hydrophobic) the system proves to be reliable, robust and easy-operating. The investigation of urine revealed an increase in the detected metabolite ion masses compared to the single-column HILIC-electrospray ionization (ESI)-MS analysis. Utilizing online the complementary selectivity of HILIC and RPLC in a fully automatic mode, this approach holds out the prospect to enlarge the number of detectable compounds in non-targeted "-omics" studies and sophisticated target-driven approaches by a single injection. (c) 2008 Elsevier B.V. All rights reserved.
机译:在这项研究中,我们开发和优化了一种用于复杂样品中极性和非极性化合物的互补分析的柱切换高效液相色谱(HPLC)系统。极性化合物在亲水作用色谱(HILIC)色谱柱上分离;一部分未保留在HILIC上的样品将通过界面转移到反相(RP)色谱柱中并在色谱柱上分离,从而防止了在常规单柱模式下死区洗脱时分析物的损失。依次通过紫外线或质谱检测器将信号记录在同一色谱图中。应用25种标准化合物(12种亲水性和13种疏水性)的混合物,该系统被证明是可靠,坚固且易于操作的。尿液调查显示,与单柱HILIC电喷雾电离(ESI)-MS分析相比,检测到的代谢物离子质量有所增加。在全自动模式下在线使用HILIC和RPLC的互补选择性,这种方法为单次进样增加了在非目标“组学”研究和复杂的目标驱动方法中可检测化合物的数量。 (c)2008 Elsevier B.V.保留所有权利。

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