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Atmospheric-pressure Molecular Imaging of Biological Tissues and Biofilms by LAESI Mass Spectrometry

机译:LAESI质谱法对生物组织和生物膜进行大气压分子成像

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摘要

Ambient ionization methods in mass spectrometry allow analytical investigations to be performed directly on a tissue or biofilm under native-like experimental conditions. Laser ablation electrospray ionization (LAESI) is one such development and is particularly well-suited for the investigation of water-containing specimens. LAESI utilizes a mid-infrared laser beam (2.94 μm wavelength) to excite the water molecules of the sample. When the ablation fluence threshold is exceeded, the sample material is expelled in the form of particulate matter and these projectiles travel to tens of millimeters above the sample surface. In LAESI, this ablation plume is intercepted by highly charged droplets to capture a fraction of the ejected sample material and convert its chemical constituents into gas-phase ions. A mass spectrometer equipped with an atmospheric-pressure ion source interface is employed to analyze and record the composition of the released ions originating from the probed area (pixel) of the sample. A systematic interrogation over an array of pixels opens a way for molecular imaging in the microprobe analysis mode. A unique aspect of LAESI mass spectrometric imaging is depth profiling that, in combination with lateral imaging, enables three-dimensional (3D) molecular imaging. With current lateral and depth resolutions of ~100 μm and ~40 μm, respectively, LAESI mass spectrometric imaging helps to explore the molecular structure of biological tissues. Herein, we review the major elements of a LAESI system and provide guidelines for a successful imaging experiment.
机译:质谱中的环境电离方法允许在类似天然的实验条件下直接在组织或生物膜上进行分析研究。激光烧蚀电喷雾电离(LAESI)就是其中之一,特别适合用于含水样品的研究。 LAESI利用中红外激光束(2.94μm波长)激发样品中的水分子。当超过烧蚀通量阈值时,样品材料以颗粒物质的形式排出,这些弹丸移动到样品表面上方数十毫米。在LAESI中,这种消融羽流被高电荷的液滴拦截,以捕获一部分喷射的样品材料并将其化学成分转换为气相离子。使用配备有大气压离子源接口的质谱仪来分析和记录源自样品探测区域​​(像素)的释放离子的成分。对像素阵列的系统询问为在微探针分析模式下进行分子成像提供了一种途径。 LAESI质谱成像的一个独特方面是深度剖析,结合横向成像,可以进行三维(3D)分子成像。目前的横向和深度分辨率分别为〜100μm和〜40μm,LAESI质谱成像有助于探索生物组织的分子结构。在此,我们回顾了LAESI系统的主要元素,并为成功的成像实验提供了指导。

著录项

  • 作者

    Nemes, Peter; Vertes, Akos;

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  • 年度 2010
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  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
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