van Wasen Sebastian, You Yi, Beck Sebastian, Riedel Jens, Volmer Dietrich A
Department of Chemistry, Humboldt-Universität zu Berlin, Brook-Taylor-Straße 2, Berlin 12489, Germany.
Bundesanstalt für Materialforschung und -prüfung (BAM), Richard-Willstätter-Straße 11, Berlin 12489, Germany.
Anal Chem. 2023 Feb 28;95(8):4190-4195. doi: 10.1021/acs.analchem.2c05334. Epub 2023 Feb 16.
The combination of acoustically levitated droplets, mid-IR laser evaporation, and subsequent post-ionization by secondary electrospray ionization was applied for monitoring the enzymatic digestion of various proteins. Acoustically levitated droplets are an ideal, wall-free model reactor, readily allowing compartmentalized microfluidic trypsin digestions. Time-resolved interrogation of the droplets yielded real-time information on the progress of the reaction and thus provided insights into reaction kinetics. After 30 min of digestion in the acoustic levitator, the obtained protein sequence coverages were identical to the reference overnight digestions. Importantly, our results clearly demonstrate that the applied experimental setup can be used for the real-time investigation of chemical reactions. Furthermore, the described methodology only uses a fraction of the typically applied amounts of solvent, analyte, and trypsin. Thus, the results exemplify the use of acoustic levitation as a green analytical chemistry alternative to the currently used batch reactions.
声学悬浮液滴、中红外激光蒸发以及随后通过二次电喷雾电离进行的后电离相结合,被用于监测各种蛋白质的酶促消化。声学悬浮液滴是一种理想的、无壁模型反应器,能够轻松实现微流控胰蛋白酶的分区消化。对液滴进行时间分辨询问可获得反应进程的实时信息,从而深入了解反应动力学。在声学悬浮器中消化30分钟后,获得的蛋白质序列覆盖率与过夜参考消化的结果相同。重要的是,我们的结果清楚地表明,所应用的实验装置可用于化学反应的实时研究。此外,所描述的方法仅使用了通常用量的一小部分溶剂、分析物和胰蛋白酶。因此,这些结果例证了声学悬浮作为一种绿色分析化学方法,可替代目前使用的批量反应。