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首页> 外文期刊>Electrophoresis: The Official Journal of the International Electrophoresis Society >Shape-anchored porous polymer monoliths for integrated online solid-phase extraction-microchip electrophoresis-electrospray ionization mass spectrometry
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Shape-anchored porous polymer monoliths for integrated online solid-phase extraction-microchip electrophoresis-electrospray ionization mass spectrometry

机译:集成在线固相萃取-微芯片电泳-电喷雾电离质谱的定型多孔聚合物整料

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摘要

We report a simple protocol for fabrication of shape-anchored porous polymer monoliths (PPMs) for on-chip SPE prior to online microchip electrophoresis (ME) separation and on-chip (ESI/MS). The chip design comprises a standard ME separation channel with simple cross injector and a fully integrated ESI emitter featuring coaxial sheath liquid channel. The monolith zone was prepared in situ at the injection cross by laser-initiated photopolymerization through the microchip cover layer. The use of high-power laser allowed not only maskless patterning of a precisely defined monolith zone, but also faster exposure time (here, 7 min) compared with flood exposure UV lamps. The size of the monolith pattern was defined by the diameter of the laser output (empty set 500 m) and the porosity was geared toward high through-flow to allow electrokinetic actuation and thus avoid coupling to external pumps. Placing the monolith at the injection cross enabled firm anchoring based on its cross-shape so that no surface premodification with anchoring linkers was needed. In addition, sample loading and subsequent injection (elution) to the separation channel could be performed similar to standard ME setup. As a result, 15- to 23-fold enrichment factors were obtained already at loading (preconcentration) times as short as 25 s without sacrificing the throughput of ME analysis. The performance of the SPE-ME-ESI/MS chip was repeatable within 3.1% and 11.5% RSD (n = 3) in terms of migration time and peak height, respectively, and linear correlation was observed between the loading time and peak area.
机译:我们报告了在线微芯片电泳(ME)分离和芯片上(ESI / MS)之前用于芯片上SPE的形状锚定多孔聚合物整料(PPM)制造的简单协议。芯片设计包括带有简单交叉注射器的标准ME分离通道和具有同轴鞘液通道的完全集成ESI发射器。通过激光引发的光致聚合通过微芯片覆盖层在注入交叉处就地制备整料区。与泛光紫外灯相比,大功率激光的使用不仅允许对精确定义的整料区域进行无掩模图案化,而且还允许更快的曝光时间(此处为7分钟)。整体图案的尺寸由激光输出的直径(空集500 m)定义,孔隙率适合高通量以允许电动驱动,因此避免与外部泵耦合。将整料放置在注射十字处可基于其十字形状实现牢固的锚固,因此无需使用锚固连接件进行表面预改性。另外,样品装载和随后对分离通道的进样(洗脱)可以类似于标准ME设置进行。结果,在短至25 s的加载(预浓缩)时间就已经获得了15到23倍的富集因子,而不会牺牲ME分析的通量。就迁移时间和峰高而言,SPE-ME-ESI / MS芯片的性能分别在3.1%和11.5%RSD(n = 3)内具有可重复性,并且在加载时间和峰面积之间观察到线性相关性。

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