Department of Chemistry, Aalen University, Beethovenstrasse 1, 73430 Aalen, Germany.
Department of Pharmaceutical and Medicinal Chemistry, Friedrich Schiller University Jena, 07743 Jena, Germany.
Anal Chem. 2021 Nov 9;93(44):14593-14598. doi: 10.1021/acs.analchem.1c03213. Epub 2021 Nov 1.
Capillary electrophoresis-mass spectrometry (CE-MS) is a powerful tool in various fields including proteomics, metabolomics, and biopharmaceutical and environmental analysis. Nanoflow sheath liquid (SL) CE-MS interfaces provide sensitive ionization, required in these fields, but are still limited to a few research laboratories as handling is difficult and expertise is necessary. Here, we introduce nanoCEasy, a novel nanoflow SL interface based on 3D printed parts, including our previously reported two capillary approach. The customized plug-and-play design enables the introduction of capillaries and an emitter without any fittings in less than a minute. The transparency of the polymer enables visual inspection of the liquid flow inside the interface. Robust operation was systematically demonstrated regarding the electrospray voltage, the distance between the emitter and MS orifice, the distance between the separation capillary and emitter tip, and different individual emitters of the same type. For the first time, we evaluated the influence of high electroosmotic flow (EOF) separation conditions on a nanoflow SL interface. A high flow from the separation capillary can be outbalanced by increasing the electrospray voltage, leading to an overall increased electrospray flow, which enables stable operation under high-EOF conditions. Overall, the nanoCEasy interface allows easy, sensitive, and robust coupling of CE-MS. We aspire the use of this sensitive, easy-to-use interface in large-scale studies and by nonexperts.
毛细管电泳-质谱联用(CE-MS)在蛋白质组学、代谢组学、生物制药和环境分析等多个领域都是一种强大的工具。纳流鞘液(SL)CE-MS 接口提供了这些领域所需的灵敏离子化,但由于操作困难且需要专业知识,因此仍然局限于少数几个研究实验室。在这里,我们介绍了一种基于 3D 打印部件的新型纳流 SL 接口——nanoCEasy,包括我们之前报道的两种毛细管进样方法。定制的即插即用设计使毛细管和喷针的引入能够在不到一分钟的时间内完成,而无需任何配件。聚合物的透明性使得能够对接口内的液体流动进行可视化检查。我们系统地演示了电喷雾电压、喷针和 MS 进样口之间的距离、分离毛细管和喷针尖端之间的距离以及同一类型的不同喷针之间的稳健操作。这是首次评估了高电动流(EOF)分离条件对纳流 SL 接口的影响。通过增加电喷雾电压,可以平衡来自分离毛细管的高流速,从而导致整体电喷雾流量增加,这使得在高 EOF 条件下能够实现稳定操作。总的来说,nanoCEasy 接口允许 CE-MS 的简便、灵敏和稳健耦合。我们希望这个灵敏易用的接口能够在大规模研究和非专业人员中得到应用。