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Interfacing microchip isoelectric focusing with on-chip electrospray ionization mass spectrometry

机译:将微芯片等电聚焦与芯片上电喷雾电离质谱联用

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In this work, we demonstrate the interfacing of microchip capillary isoelectric focusing (cIEF) with online mass spectrometric (MS) detection via a fully integrated, on-chip sheath flow electrospray ionization (ESI) emitter. Thanks to the pH-dependent surface charge of the SU-8 polymer clEF can be successfully run in native SU-8 microchannels without need for surface pretreatment prior to analysis. On the other hand, the inherent electroosmotic flow (EDF) taking place in SU-8 microchannels at high pH can be exploited to electrokinetic mobilization of the focused pH gradient toward the MS and no external pumps are required. In addition to direct coupling of a cIEP separation channel to an El emitter, we developed a two-dimensional separation chip for two-step, multiplex clEF-transient-isotachophoretic (tITP) separation. In this case, cIEF is performed in the first dimension (effective L= 20 mm) and tITP in the second dimension (L=35 mm) followed by ESI/MS. As a result, the migration order is affected by both the p1 values (cIEF) and the intrinsic electrophoretic mobilities (tITP) of the sample components. The selectivity of the separation system was shown to be different from pure clEF or pure ITP, which allows at best for baseline separation of two compounds with nearly identical p1 values. The repeatabilities of the migration times of the two-step clEF-tITP separation were 3.1-6.8% RSD (n =3). Thanks to the short separation channel, relatively short focusing times of 60-270 s (depending on the applied focusing potential) were sufficient for establishment of the pH gradient and cIEF separation of the sample components, yielding total analysis times (including loading, focusing, and mobilization) well below 10 min. (C) 2015 Elsevier B.V. All rights reserved.
机译:在这项工作中,我们通过完全集成的芯片上鞘流电喷雾电离(ESI)发射器演示了微芯片毛细管等电聚焦(cIEF)与在线质谱(MS)检测的接口。由于SU-8聚合物的pH依赖表面电荷,因此可以在天然SU-8微通道中成功运行clEF,而无需在分析前进行表面预处理。另一方面,可以利用SU-8微通道在高pH条件下发生的固有电渗流(EDF)来将聚焦的pH梯度向MS电动迁移,而无需外部泵。除了将cIEP分离通道直接耦合至El发射极外,我们还开发了一种二维分离芯片,用于两步,多重clEF-瞬态-等速电泳(tITP)分离。在这种情况下,在第一维度(有效L = 20毫米)中执行cIEF,在第二维度(L = 35毫米)中执行tITP,然后执行ESI / MS。结果,迁移顺序受样品组分的p1值(cIEF)和固有电泳迁移率(tITP)的影响。分离系统的选择性显示出不同于纯clEF或纯ITP的选择性,这最多允许以几乎相同的p1值对两种化合物进行基线分离。两步式clEF-tITP分离的迁移时间的可重复性为3.1-6.8%RSD(n = 3)。得益于较短的分离通道,相对较短的聚焦时间为60-270 s(取决于所施加的聚焦电位)足以建立pH梯度和样品组分的cIEF分离,从而获得了总的分析时间(包括上样时间,聚焦时间,和动员时间)远远低于10分钟。 (C)2015 Elsevier B.V.保留所有权利。

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