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Characterization of a nanoflow sheath liquid interface and comparison to a sheath liquid and a sheathless porous-tip interface for CE-ESI-MS in positive and negative ionization

机译:纳米洒鞘液界面的表征,并与鞘液和鞘液和辐射多孔尖端界面的正负电离中的CE-ESI-MS相比

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Coupling of capillary electrophoresis to electrospray mass spectrometry still remains challenging and a topic of research to find the best interface regarding sensitivity, robustness, and ease of use. Here, a nanoflow sheath liquid interface for CE-ESI-MS is presented and compared to both a standard triple-tube sheath liquid and a porous-tip sheathless interface for three groups of analytes. The nanoflow sheath liquid interface with a separation capillary inserted into a glass emitter was initially characterized to facilitate optimization and method development. Implementation of a shut-off valve, syringe pump, and inline filter enabled easy handling and fast analyses, repeatable both in positive and negative modes (intra-day RSD of 6.6 to 12.0%). The same setup was used for sheathless interfacing by exchanging the emitter and using a porous etched tip separation capillary. Both nanoflow interfaces showed similar performance. Average peak areas using the nanoflow sheath liquid interface were a factor of 38 for 6 organic acids in negative mode, 114 and 36 for the light and heavy chain of a monoclonal antibody, and 13 higher for peptides in positive mode compared to the triple-tube interface. This first direct comparison of the three most common interfaces exhibits a strong improvement in sensitivity to the same extent for both nanoflow interfaces, where sheath liquid interfaces offer full flexibility in method development.
机译:毛细管电泳与电喷雾质谱仪的偶联仍然仍然具有挑战性和研究主题,以找到关于灵敏度,鲁棒性和易用性的最佳界面。这里,呈现用于CE-ESI-MS的纳米射线鞘液界面,并与标准三管鞘液和用于三组分析物的多孔尖端的护套界面进行比较。最初表征了插入玻璃发射器中的分离毛细管的纳米射线鞘液界面,以促进优化和方法开发。截止阀,注射器泵和内联过滤器的实施能够易于处理和快速分析,可重复于正面和阴性模式(日内RSD为6.6至12.0%)。通过交换发射器并使用多孔蚀刻的尖端分离毛细管来使用相同的设置。纳米射线接口都显示出类似的性能。使用纳米氟鞘液界面的平均峰面积为6个有机酸的负面模式,114和36倍,对于单克隆抗体的轻链和重链,与三管相比,肽的肽高13倍界面。这首先直接比较三种最常见的接口对纳米射线接口的敏感性的强烈改善表现出对相同程度的灵敏度,其中鞘液界面在方法开发中提供全部灵活性。

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