Department of Mechanical Engineering, National Central University, Taoyuan, Taiwan.
Analyst. 2018 Feb 12;143(4):981-988. doi: 10.1039/c7an01548h.
Mass spectrometry (MS) interfacing technology provides the means for incorporating microfluidic processing with post MS analysis. In this study, we propose a simple piezo-ring-on-chip microfluidic device for the controlled spraying of MALDI-MS targets. This device uses a low-cost, commercially-available ring-shaped piezoelectric acoustic atomizer (piezo-ring) directly integrated into a polydimethylsiloxane microfluidic device to spray the sample onto the MS target substrate. The piezo-ring-on-chip microfluidic device's design, fabrication, and actuation, and its pulsatile pumping effects were evaluated. The spraying performance was examined by depositing organic matrix samples onto the MS target substrate by using both an automatic linear motion motor, and manual deposition. Matrix-assisted laser desorption/ionization mass spectrometry (MALDI-MS) was performed to analyze the peptide samples on the MALDI target substrates. Using our technique, model peptides with 10 M concentration can be successfully detected. The results also indicate that the piezo-ring-on-chip approach forms finer matrix crystals and presents better MS signal uniformity with little sample consumption compared to the conventional pipetting method.
质谱(MS)接口技术为微流控处理与 MS 分析后整合提供了手段。在本研究中,我们提出了一种简单的片上压环微流控装置,用于控制 MALDI-MS 靶标的喷雾。该装置使用低成本、市售的环形压电声雾化器(压环)直接集成到聚二甲基硅氧烷微流控装置中,将样品喷雾到 MS 靶标基底上。评估了片上压环微流控装置的设计、制造和驱动,以及其脉动泵送效果。通过使用自动线性运动电机和手动沉积,将有机基质样品沉积在 MS 靶标基底上,检查了喷雾性能。对 MALDI 靶标基底上的肽样品进行基质辅助激光解吸/电离质谱(MALDI-MS)分析。使用我们的技术,浓度为 10 M 的模型肽可以成功检测到。结果还表明,与传统的移液方法相比,片上压环方法形成更细的基质晶体,呈现更好的 MS 信号均匀性,且样品消耗较少。