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Online Coupling of Digital Microfluidic Devices with Mass Spectrometry Detection Using an Eductor with Electrospray Ionization

机译:数字微流控设备与使用电喷雾电离发生器进行质谱检测的在线耦合

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摘要

MS detection coupled with digital microfluidic (DMF) devices has most commonly been demonstrated in an offline manner using matrix assisted laser desorption ionization. In this work, an eductor is demonstrated which facilitated online coupling of DMF with electrospray ionization MS detection. The eductor consisted of a transfer capillary, a standard ESI needle, and a tapered gas nozzle. As a pulse of N_(2) was applied to the nozzle, a pressure differential was induced at the outlet of the ESI needle that pulled droplets from the DMF, past the ESI needle, and into the flow of gas exiting the nozzle, allowing detection by MS. Operating position, ionization potential, and N_(2) pressure were optimized, with the optimum ionization potential and N_(2) pressure found to be 3206 V and 80 psi, respectively. Online MS detection was demonstrated from both open and closed DMF devices using 2.5 (mu)L and 630 nL aqueous droplets, respectively. Relative quantitation by DMF-MS was demonstrated by mixing droplets of caffeine with droplets of theophylline on an open DMF device and comparing the peak area ratio obtained to an on-chip generated calibration curve. This eductor-based method for transferring droplets has the potential for rapid, versatile, and high-throughput microfluidic analyses.
机译:质谱检测与数字微流控(DMF)装置结合使用,最常见的方法是使用基质辅助激光解吸电离以离线方式进行。在这项工作中,展示了一种喷射器,该喷射器有助于DMF与电喷雾电离MS检测的在线耦合。喷射器由传输毛细管,标准ESI针和锥形气体喷嘴组成。当向喷嘴施加N_(2)脉冲时,在ESI针的出口处引起了压差,该压力差从DMF中拉出液滴,经过ESI针,并进入离开喷嘴的气流中,从而可以进行检测由MS。优化了工作位置,电离电势和N_(2)压力,发现最佳电离电势和N_(2)压力分别为3206 V和80 psi。分别使用2.5μL和630 nL水滴从打开和关闭DMF设备中证明了在线MS检测。通过在开放式DMF设备上将咖啡因液滴与茶碱液滴混合,并将获得的峰面积比与芯片上生成的校准曲线进行比较,证明了DMF-MS的相对定量。这种基于喷射器的液滴转移方法具有进行快速,通用和高通量微流体分析的潜力。

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