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Direct Coupling Of A Free-flow Isotachophoresis (ffitp) Device With Electrospray Ionization Mass Spectrometry (esi- Ms)

机译:自由流等速电泳(ffitp)设备与电喷雾电离质谱(esi-MS)的直接耦合

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摘要

We present the online coupling of a free-flow isotachophoresis (FFITP) device to an electrospray ionization mass spectrometer (ESI-MS) for continuous analysis without extensive sample preparation. Free-flow-electrophoresis techniques are used for continuous electrophoretic separations using an electric field applied perpendicular to the buffer and sample flow, with FFITP using a discontinuous electrolyte system to concurrently focus a target analyte and remove interferences. The online coupling of FFITP to ESI-MS decouples the separation and detection timeframe because the electrophoretic separation takes place perpendicular to the flow direction, which can be beneficial for monitoring (bio)chemical changes and/or extensive MSn studies. We demonstrated the coupling of FFITP with ESI-MS for simultaneous concentration of target analytes and sample clean-up. Furthermore, we show hydrodynamic control of the fluidic fraction injected into the MS, allowing for fluidically controlled scanning of the ITP window. Future applications of this approach are expected in monitoring biochemical changes and proteomics.
机译:我们目前在线耦合的自由流动等速电泳仪(FFITP)到电喷雾电离质谱仪(ESI-MS)进行连续分析,而无需进行大量样品制备。自由流动电泳技术用于连续电泳分离,该分离使用垂直于缓冲液和样品流施加的电场,而FFITP使用不连续电解质系统同时聚焦目标分析物并消除干扰。 FFITP与ESI-MS的在线耦合使分离和检测时间框架脱钩,因为电泳分离垂直于流动方向进行,这对于监测(生物)化学变化和/或广泛的MSn研究可能是有益的。我们展示了FFITP与ESI-MS的结合,可同时进行目标分析物的浓缩和样品净化。此外,我们显示了注入MS的流体部分的流体动力学控制,从而可以对ITP窗口进行流体控制的扫描。预期该方法的未来应用将用于监测生化变化和蛋白质组学。

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