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Nonresonant, femtosecond laser vaporization and electrospray post-ionization mass spectrometry as a tool for biological tissue imaging

机译:非统治,飞秒激光蒸发和电喷雾后电离质谱作为生物组织成像的工具

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摘要

An ambient mass spectrometry imaging (MSI) source is demonstrated with both high spatial and mass resolution that enables measurement of the compositional heterogeneity within a biological tissue sample. The source is based on nonresonant, femtosecond laser electrospray mass spectrometry (LEMS) coupled to a quadrupole time-of-flight (QTOF) mass analyzer. No matrix deposition and minimal sample preparation is necessary for the source. The laser, translation stage, and mass spectrometer are synchronized and controlled using a customized user interface. Single or multiple laser shots may be applied to each pixel. A scanning rate of 2.0 s per pixel is achieved. Measurement of a patterned ink film indicates the potential of LEMS for ambient imaging with a lateral resolution of similar to 60 mu m. Metabolites including sugar, anthocyanins and other small metabolites were successfully mapped from plant samples without oversampling using a spot size of 60 x 70 mu m(2). Molecular identification of the detected analytes from the tissue was enabled by accurate mass measurement in conjunction with tandem mass spectrometry. Statistical analysis, non-negative matrix factorization and principle component analysis, were applied to the imaging data to extract regions with distinct and/or correlated spectral profiles. (C) 2016 Elsevier Inc. All rights reserved.
机译:通过高空间和质量分辨率来证明环境质谱成像(MSI)源,其能够测量生物组织样品内的组成异质性。该来源基于非族经,飞秒激光电喷雾质谱(LEM),耦合到四极杆飞行时间(QTOF)质量分析仪。对于源是必要的NO基质沉积和最小样品制备。使用自定义用户界面同步和控制激光器,翻译阶段和质谱仪。单个或多个激光镜头可以应用于每个像素。实现每像素每像素的2.0秒的扫描速率。图案化油墨膜的测量表明,对于环境成像的潜力,具有类似于60μm的横向分辨率。包括糖,花青素和其他小代谢物的代谢物成功地从植物样品中映射,而不使用60×70μm(2)的光斑尺寸过采样。通过精确的质量测量结合串联质谱来实现来自组织的检测分析物的分子鉴定。统计分析,非负矩阵分解和原理分量分析被应用于成像数据以提取具有不同和/或相关的光谱谱的区域。 (c)2016年Elsevier Inc.保留所有权利。

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