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首页> 外文期刊>質量分析 >Mass Spectrometry Imaging and Structural Analysis of Lipids Directly on Tissue Specimens by Using a Spiral Orbit Type Tandem Time-of-Flight Mass Spectrometer, SpiralTOF-TOF
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Mass Spectrometry Imaging and Structural Analysis of Lipids Directly on Tissue Specimens by Using a Spiral Orbit Type Tandem Time-of-Flight Mass Spectrometer, SpiralTOF-TOF

机译:使用螺旋轨道式串联飞行时间质谱仪SpiralTOF-TOF直接在组织样本上进行脂质的质谱成像和结构分析

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摘要

In this paper, we report the use of mass spectrometry imaging and structural analysis of lipids directly on a tissue speci-men, carried out by means of matrix-assisted laser desorption/ionization tandem time-of-flight mass spectrometry, using a combination of spiral orbit-type and reflectron-type time-of-flight mass spectrometers. The most intense peak observed in the mass spectrum from a brain tissue specimen was confirmed as phosphatidylcholine (34:1) [M+K]~+, using tandem mass spectrometry. The charge remote fragmentation channels, which are characteristically observed using high-energy collision-induced dissociation, contributed significantly to this confirmation. Accurate mass analysis was further facilitated by mass correction using the confirmed peak. In mass spectrometry imaging, the high resolving power of our system could separate doublet peak of less than 0.1 u difference, which would otherwise be problematic when using a low-resolution reflectron type time-of-flight mass spectrometer. Two compounds, observed at m/z 848.56 and 848.65, were found to be located in comple-mentary positions on a brain tissue specimen. These results demonstrate the importance of a high-performance tandem time-of-flight mass spectrometer for mass spectrometry imaging and analysis of observed compounds, to allow distinction between biological molecules.
机译:在本文中,我们报告了通过基质辅助激光解吸/电离串联飞行时间质谱法,结合以下方法的组合,在组织标本上直接使用质谱成像和脂质结构分析螺旋轨道式和反射式飞行时间质谱仪。使用串联质谱法,在脑组织样品中质谱图中观察到的最强峰被确认为磷脂酰胆碱(34:1)[M + K]〜+。使用高能碰撞诱导的离解来观察到的电荷远程碎裂通道对这一确认做出了重要贡献。使用已确证的峰进行质量校正可进一步促进准确的质量分析。在质谱成像中,我们系统的高分辨能力可以分离出小于0.1 u的双峰峰,否则在使用低分辨率反射式飞行时间质谱仪时会出现问题。发现在m / z 848.56和848.65处观察到的两种化合物位于脑组织标本的互补位置。这些结果证明了高性能串联飞行时间质谱仪对于质谱成像和观察到的化合物分析的重要性,以区分生物分子。

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