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Combining selection valve and mixing chamber for nanoflow gradient generation: Toward developing a liquid chromatography cartridge coupled with mass spectrometer for protein and peptide analysis

机译:结合选择阀和混合室以产生纳流梯度:致力于开发液相色谱柱和质谱仪,用于蛋白质和多肽分析

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Toward developing a micro HPLC cartridge, we have recently built a high-pressure electroosmotic pump (EOP). However, we do not recommend people to use this pump to deliver an organic solvent directly, because it often makes the pump rate unstable. We have experimented several approaches to address this issue, but none of them are satisfactory. Here, we develop an innovative approach to address this issue. We first create an abruption (a dead-volume) within a fluid conduit. We then utilize an EOP to withdraw, via a selection valve, a train of eluent solutions having decreasing eluting power into the fluid conduit. When these solutions are further aspirated through the dead-volume, these solutions are partially mixed, smoothening concentration transitions between two adjacent eluent solutions. As these solutions are pushed back, through the dead-volume again, a smooth gradient profile is formed. In this work, we characterize this scheme for gradient formation, and we incorporate this approach with a high-pressure EOP, a nanoliter injection valve, and a capillary column, yielding a micro HPLC system. We then couple this micro HPLC with an electrospray ionization - mass spectrometer for peptide and protein separations and identifications. (C) 2015 Elsevier B.V. All rights reserved.
机译:为了开发微型HPLC色谱柱,我们最近建立了高压电渗泵(EOP)。但是,我们不建议人们使用此泵直接输送有机溶剂,因为这通常会使泵速不稳定。我们已经尝试了几种方法来解决此问题,但没有一个令人满意。在这里,我们开发了一种创新的方法来解决此问题。我们首先在流体导管内产生一个切除(死体积)。然后,我们利用EOP通过选择阀将洗脱力逐渐下降的一系列洗脱液排入流体导管。当这些溶液进一步通过死体积吸出时,这些溶液会部分混合,从而使两个相邻洗脱液之间的浓度过渡变平滑。随着这些解决方案被推回,再次通过死体积,形成了平滑的梯度轮廓。在这项工作中,我们对梯度形成的方案进行了表征,并将该方法与高压EOP,纳升进样阀和毛细管柱相结合,产生了微型HPLC系统。然后,我们将此微型HPLC与电喷雾电离质谱仪结合使用,以进行肽和蛋白质的分离和鉴定。 (C)2015 Elsevier B.V.保留所有权利。

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