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首页> 外文期刊>Electrophoresis: The Official Journal of the International Electrophoresis Society >Electrokinetic-driven microfluidic system in poly(dimethylsiloxane) for mass spectrometry detection integrating sample injection, capillary electrophoresis, and electrospray emitter on-chip.
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Electrokinetic-driven microfluidic system in poly(dimethylsiloxane) for mass spectrometry detection integrating sample injection, capillary electrophoresis, and electrospray emitter on-chip.

机译:聚二甲基硅氧烷中电动驱动的微流体系统,用于质谱检测,集成了样品注入,毛细管电泳和片上电喷雾发射器。

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摘要

A novel microsystem device in poly(dimethylsiloxane) (PDMS) for MS detection is presented. The microchip integrates sample injection, capillary electrophoretic separation, and electrospray emitter in a single substrate, and all modules are fabricated in the PDMS bulk material. The injection and separation flow is driven electrokinetically and the total amount of external equipment needed consists of a three-channel high-voltage power supply. The instant switching between sample injection and separation is performed through a series of low-cost relays, limiting the separation field strength to a maximum of 270 V/cm. We show that this set-up is sufficient to accomplish electrospray MS analysis and, to a moderate extent, microchip separation of standard peptides. A new method of instant in-channel oxidation makes it possible to overcome the problem of irreversibly bonded PDMS channels that have recovered their hydrophobic properties over time. The fast method turns the channel surfaces hydrophilic and less prone to nonspecific analyte adsorption, yielding better separation efficiencies and higher apparent peptide mobilities.
机译:提出了一种新型的聚二甲基硅氧烷(PDMS)中用于MS检测的微系统装置。该微芯片将样品注射,毛细管电泳分离和电喷雾发射器集成在单个基板上,所有模块均以PDMS块状材料制造。电动驱动进样和分离流,所需的外部设备总量由三通道高压电源组成。样品注入和分离之间的即时切换通过一系列低成本继电器执行,从而将分离场强度限制为最大270 V / cm。我们表明,这种设置足以完成电喷雾质谱分析,并在一定程度上完成了标准肽的微芯片分离。即时通道内氧化的新方法可以克服不可逆结合的PDMS通道的问题,该通道已随着时间的流逝恢复了疏水性。快速方法使通道表面具有亲水性,不易吸附非特异性分析物,从而产生了更高的分离效率和更高的表观肽迁移率。

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