Institute of Bioanalytical Chemistry, Saarland University , 66123 Saarbrücken, Germany.
Department of Mechanical Engineering, Ruhr-University Bochum , 44801 Bochum, Germany.
Anal Chem. 2016 Sep 6;88(17):8396-403. doi: 10.1021/acs.analchem.6b01519. Epub 2016 Aug 16.
Direct in-droplet (in stillo) microreaction monitoring using acoustically levitated micro droplets has been achieved by combining acoustic (ultrasonic) levitation for the first time with real time ambient tandem mass spectrometry (MS/MS). The acoustic levitation and inherent mixing of microliter volumes of reactants (3 μL droplets), yielding total reaction volumes of 6 μL, supported monitoring the acid-catalyzed degradation reaction of erythromycin A. This reaction was chosen to demonstrate the proof-of-principle of directly monitoring in stillo microreactions via hyphenated acoustic levitation and ambient ionization mass spectrometry. The microreactions took place completely in stillo over 30, 60, and 120 s within the containerless stable central pressure node of an acoustic levitator, thus readily promoting reaction miniaturization. For the evaluation of the miniaturized in stillo reactions, the degradation reactions were also carried out in vials (in vitro) with a total reaction volume of 400 μL. The reacted in vitro mixtures (6 μL total) were similarly introduced into the acoustic levitator prior to ambient ionization MS/MS analysis. The in stillo miniaturized reactions provided immediate real-time snap-shots of the degradation process for more accurate reaction monitoring and used a fraction of the reactants, while the larger scale in vitro reactions only yielded general reaction information.
采用声悬浮技术首次实现了直接在微滴中(in stillo)进行微反应监测,将实时大气串联质谱(MS/MS)与之结合。声悬浮和反应物(3 μL 液滴)的固有混合实现了微升体积的反应,总反应体积为 6 μL,支持监测红霉素 A 的酸催化降解反应。选择该反应来证明通过键合的声悬浮和环境电离质谱直接监测 in stillo 微反应的原理验证。微反应在无容器稳定的声悬浮中央压力节点内完全在 in stillo 中进行,持续 30、60 和 120 s,从而很容易促进反应的微型化。为了评估微型化的 in stillo 反应,降解反应也在 400 μL 总体积的小瓶(in vitro)中进行。反应后的 in vitro 混合物(6 μL 总量)也在进行环境电离 MS/MS 分析之前被类似地引入声悬浮器中。微型化的 in stillo 反应提供了降解过程的即时实时快照,用于更准确的反应监测,并使用了反应物的一部分,而较大规模的 in vitro 反应仅提供了一般的反应信息。