Department of Chemistry, W. M. Keck Institute for Proteomics Technology and Applications, George Washington University, Washington, DC 20052, USA.
Anal Chem. 2009 Aug 15;81(16):6668-75. doi: 10.1021/ac900745e.
Three-dimensional (3D) imaging of molecular distributions offers insight into the correlation between biochemical processes and the spatial organization of a biological tissue. Simultaneous identification of diverse molecules is a virtue of mass spectrometry (MS) that in combination with ambient ion sources enables the atmospheric pressure investigation of biomolecular distributions and processes. Here, we report on the development of an MS-based technique that allows 3D chemical imaging of tissues under ambient conditions without sample preparation. The method utilizes laser ablation electrospray ionization (LAESI) for direct molecular imaging with lateral and depth resolutions of approximately 300 microm and 30-40 microm, respectively. We demonstrate the feasibility of LAESI 3D imaging MS of metabolites in the leaf tissues of Peace lily (Spathiphyllum lynise) and the variegated Zebra plant (Aphelandra squarrosa). Extensive tandem MS studies help with the structure identification of the metabolites. The 3D distributions are found to exhibit tissue-specific metabolite accumulation patterns that correlate with the biochemical roles of these chemical species in plant defense and photosynthesis. Spatial correlation coefficients between the intensity distributions of different ions help to identify colocalization of metabolites and potentially uncover connections between metabolic pathways.
三维(3D)分子分布成像可以深入了解生化过程与生物组织空间组织之间的相关性。质谱(MS)的优点是可以同时识别多种分子,与环境离子源结合后,可以在大气压下研究生物分子的分布和过程。在这里,我们报告了一种基于 MS 的技术的发展,该技术允许在无需样品制备的情况下在环境条件下对组织进行 3D 化学成像。该方法利用激光烧蚀电喷雾电离(LAESI)进行直接分子成像,横向和深度分辨率分别约为 300 微米和 30-40 微米。我们证明了在和平百合(Spathiphyllum lynise)和杂色斑马草(Aphelandra squarrosa)的叶片组织中进行 LAESI 3D 成像 MS 分析代谢物的可行性。广泛的串联 MS 研究有助于鉴定代谢物的结构。发现 3D 分布表现出组织特异性的代谢物积累模式,这与这些化学物质在植物防御和光合作用中的生化作用相关。不同离子强度分布之间的空间相关系数有助于鉴定代谢物的共定位,并可能揭示代谢途径之间的联系。