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Multi-channel microfluidic chip coupling with mass spectrometry for simultaneous electro-sprays and extraction

机译:多通道微流控芯片与质谱联用,可同时进行电喷雾和萃取

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摘要

Considering the advantages and research status of microfluidic chip coupling with mass spectrometry (MS), a microfluidic chip-based multi-channel ionization (MCMCI) for the extraction of untreated compounds in complex matrices without sample pretreatments was developed. Quantitative analysis of human urine spiked with various rhodamine B concentrations was also performed, and good linearity was obtained. Comparing to the macro ionization device, MCMCI significantly improved the integration of ionization source, simplified the operation of such a device, and greatly increased the signal intensity with much lower gas pressure. Comparison of our MCMCI with two and three gas channels indicated that the liquid–liquid extraction process before spraying and after spraying produced similar MS results. Moreover, this MCMCI with three gas channels also implemented simultaneous dual sprays with high DC voltages, the interference of two samples was minor and ion suppression effect was drastically alleviated. Such advantages may easily enable internal calibration for accurate mass measurement. Furthermore, dual extraction can be implemented by integrating such multi-spray configuration, which can improve the extracted signal intensity and sensitivity. These technologies open up new avenues for the application of microfluidic chip coupling with MS.
机译:考虑到微流控芯片与质谱联用的优点和研究现状,开发了一种基于微流控芯片的多通道电离(MCMCI)技术,无需样品即可对复杂基质中的未处理化合物进行萃取。还对掺有不同罗丹明B浓度的人尿进行了定量分析,并获得了良好的线性。与大型电离装置相比,MCMCI显着改善了电离源的集成度,简化了该装置的操作,并以大大降低的气压大大提高了信号强度。我们的MCMCI与两个和三个气体通道的比较表明,喷涂前后的液-液萃取过程产生了相似的MS结果。此外,该具有三个气体通道的MCMCI还同时实施了具有高DC电压的双重喷雾,两个样品的干扰较小,并且离子抑制效果得到了极大的缓解。这些优点可以轻松实现内部校准,以进行精确的质量测量。此外,可以通过集成这样的多喷雾配置来实现双重提取,这可以提高提取的信号强度和灵敏度。这些技术为微流控芯片与质谱联用的应用开辟了新途径。

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