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Hyphenation of Production-Scale Free-Flow Electrophoresis to Electrospray Ionization Mass Spectrometry Using a Highly Conductive Background Electrolyte

机译:使用高导电背景电解质将生产规模自由流电泳与电子喷雾电离质谱联用

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In this technical note, we demonstrate the hyphenation of production-scale free-flow electrophoresis (FFE) and sheathless electrospray ionization mass spectrometry (ESI-MS). In contrast to previous hyphenation approaches, we used a highly conductive background electrolyte (BGE) required for production-scale FFE. We found that this kind of BGE as well as a production-scale setup leads to significant electric interference between FFE and MS. This interference prevents steady-state FFE operation. We examine this interference in detail and discuss possible solutions to this issue. We demonstrate that the straightforward grounding of the transfer line removes the influence of ESI-MS on FFE, but creates a current leak from the ESI interface, which adversely affects the ESI spray. Furthermore, we show that only the electrical disconnection of the ESI probe from the FFE-MS transfer line suppresses this undesirable current. In order to facilitate the electrical disconnection we used a low conductivity, silica-based ESI probe with withdrawn inner capillary. This approach allowed the interference-free hyphenation of production-scale FFE (using a highly conductive BGE) with ESI-MS.
机译:在本技术说明中,我们演示了生产规模的自由流电泳(FFE)和无鞘电喷雾电离质谱(ESI-MS)的联用。与以前的断字方法相比,我们使用了生产规模FFE所需的高导电背景电解质(BGE)。我们发现,这种BGE以及生产规模的设置会导致FFE和MS之间出现明显的电干扰。这种干扰会阻止稳态FFE操作。我们将详细研究这种干扰,并讨论该问题的可能解决方案。我们证明,传输线的直接接地消除了ESI-MS对FFE的影响,但从ESI界面产生了电流泄漏,这对ESI喷雾产生了不利影响。此外,我们表明,只有ESI探针与FFE-MS传输线的电气断开才能抑制此不良电流。为了促进电气断开,我们使用了低电导率的基于二氧化硅的ESI探针,并抽出了内部毛细管。这种方法可以通过ESI-MS进行生产规模FFE(使用高导电性BGE)的无干扰连字。

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