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Hydrophobic Treatment Enabling Analysis of Wettable Surfaces Using a Liquid Microjunction Surface Sampling Probe/Electrospray Ionization-Mass Spectrometry System

机译:使用液体微结表面采样探针/电喷雾电离质谱系统对可湿性表面进行疏水处理分析

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摘要

An aerosol application procedure involving one or more commercially available silicone-based products was developed to create hydrophobic surfaces that enable analysis of otherwise wettable, absorbent surfaces using a liquid microjunction surface sampling probe/electrospray ionization mass spectrometry system. The treatment process resulted in a hydrophobic surface that enabled formation of the requisite probe-to-surface liquid microjunction for sampling and allowed efficient extraction of the analytes from the surface, but did not contribute significant chemical background in the mass spectra. The utility of this treatment process was demonstrated with the treatment of wettable high-performance thin layer chromatography plates, post-plate development, and their subsequent analysis with the sampling probe. The surface treatment process for different surface types was described and explained and the effectiveness of the treatment and subsequent analysis was illustrated using alkaloids from goldenseal (Hydrastis canadensis) root separated on a normal phase silica gel 60 F_(254S) plate and peptides from protein tryptic digests separated on a ProteoChrom HPTLC Silica gel 60 F_(254S) plate and a ProteoChrom HPTLC Cellulose sheet. This simple surface treatment process significantly expands the analytical surfaces that can be analyzed with the liquid microjunction surface sampling probe, and therefore, also expands the analytical utility of this liquid extraction based surface sampling approach.
机译:开发了涉及一种或多种可商购的基于硅酮的产品的气溶胶施加程序,以产生疏水性表面,该疏水性表面能够使用液体微结表面采样探针/电喷雾电离质谱系统对否则为可润湿的吸收性表面进行分析。处理过程产生疏水性表面,该表面能够形成用于采样所需的探针到表面的液体微结,并允许从表面有效地提取分析物,但不会在质谱图中提供重要的化学背景。该处理方法的实用性通过可湿性高性能薄层色谱板的处理,板后显影以及随后使用采样探针进行的分析得到了证明。描述和解释了不同表面类型的表面处理过程,并使用了在正相硅胶60 F_(254S)板上分离的金毛(加拿大水y)根中的生物碱和蛋白胰蛋白酶提取的肽,阐明了处理和后续分析的有效性。在ProteoChrom HPTLC硅胶60 F_(254S)板和ProteoChrom HPTLC纤维素板上分离的酶切消化物。这种简单的表面处理过程极大地扩展了可以用液体微结表面采样探针进行分析的分析表面,因此,还扩展了这种基于液体提取的表面采样方法的分析实用性。

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