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采用解吸电喷雾电离质谱法对分析物平面阵列进行表面扫描分析。

Surface scanning analysis of planar arrays of analytes with desorption electrospray ionization-mass spectrometry.

作者信息

Pasilis Sofie P, Kertesz Vilmos, Van Berkel Gary J

机构信息

Organic and Biological Mass Spectrometry Group, Chemical Sciences Division, Oak Ridge National Laboratory, Oak Ridge, Tennessee 37831-6131, USA.

出版信息

Anal Chem. 2007 Aug 1;79(15):5956-62. doi: 10.1021/ac070527v. Epub 2007 Jul 3.

Abstract

The analysis of analytes deposited on, separated on, or otherwise distributed about a planar surface using desorption electrospray ionization mass spectrometry in a surface scanning sampling mode was investigated. The physical regions of the surface-impacting solvent/gas jet desorption/ionization plume were described. Under the conditions typical for desorption electrospray ionization used here, the impact plume formed an elliptical desorption/ionization region on the surface. Most effective desorption/ionization was obtained from a smaller elliptical area within the larger impact region that was centered on a point on-axis from the sprayer tip to the surface. Maximum signal from a given amount of material on a surface was observed with proper plume and sample alignment when the diameter of the sample spot was less than the diameter of the central high-efficiency desorption/ionization region of the impact plume. Solvent and gas flow out of this high-efficiency desorption/ionization region was found to limit analyte accessibility to this region via a "washing effect" when analytes were on smooth surfaces or on surfaces for which the analyte had little affinity. As such, the direction of surface scanning and scan speed during an analysis was found to be important for maximizing signal levels and signal reproducibility on particular surface types. Overall, the results presented illustrate means to improve analysis of sample spots on various types of surfaces using desorption electrospray ionization mass spectrometry in a surface scanning mode.

摘要

研究了在表面扫描采样模式下,使用解吸电喷雾电离质谱对沉积在平面表面上、在平面表面上分离或以其他方式分布在平面表面周围的分析物进行分析的情况。描述了表面冲击溶剂/气体喷射解吸/电离羽流的物理区域。在本文所使用的典型解吸电喷雾电离条件下,冲击羽流在表面形成一个椭圆形的解吸/电离区域。在较大冲击区域内,以从喷雾器尖端到表面的轴上一点为中心的较小椭圆形区域可获得最有效的解吸/电离。当样品点的直径小于冲击羽流中心高效解吸/电离区域的直径时,在羽流和样品适当对齐的情况下,可观察到表面上给定数量物质的最大信号。当分析物位于光滑表面或分析物对其亲和力较小的表面上时,发现溶剂和气体流出该高效解吸/电离区域会通过“冲洗效应”限制分析物进入该区域。因此,发现在分析过程中表面扫描的方向和扫描速度对于在特定表面类型上最大化信号水平和信号重现性很重要。总体而言,所呈现的结果说明了在表面扫描模式下使用解吸电喷雾电离质谱改进对各种类型表面上样品点分析的方法。

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