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Ambient Molecular Imaging and Depth Profiling of Live Tissue by Infrared Laser Ablation Electrospray Ionization Mass Spectrometry

机译:红外激光烧蚀电喷雾电离质谱法对活组织的环境分子成像和深度分析

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Mass spectrometry in conjunction with atmospheric pressure ionization methods enables the in vivo investigation of biochemical changes with high specificity and sensitivity. Laser ablation electrospray ionization (LAESI) is a recently introduced ambient ionization method suited for the analysis of biological samples with sufficient water content. With LAESI mass spectrometric analysis of chimeric Aphelandra squarrosa leaf tissue, we identify the metabolites characteristic for the green and yellow sectors of variegation. Significant parts of the related biosynthetic pathways (e.g., kaempferol biosynthesis) are ascertained from the detected metabolites and metabolomic data-bases. Scanning electron microscopy of the ablated areas indicates the feasibility of both two-dimensional imaging and depth profiling with a approx350 (mu)m lateral and approx50 (mu)m depth resolution. Molecular distributions of some endogenous metabolites show chemical contrast between the sectors of variegation and quantitative changes as the ablation reaches the epidermal and mesophyll layers. Our results demonstrate that LAESI mass spectrometry opens a new way for ambient molecular imaging and depth profiling of metabolites in biological tissues and live organisms.
机译:质谱与大气压电离方法相结合,可以高特异性和高灵敏度地对生物化学变化进行体内研究。激光烧蚀电喷雾电离(LAESI)是最近引入的环境电离方法,适用于分析具有足够水分的生物样品。通过对嵌合辣椒粉叶片组织的LAESI质谱分析,我们确定了绿色和黄色杂色部分的代谢物特征。从检测到的代谢物和代谢组学数据库中确定了相关生物合成途径的重要部分(例如山emp酚生物合成)。消融区域的扫描电子显微镜显示了二维成像和深度轮廓的可行性,横向分辨率约为350μm,深度分辨率约为50μm。当消融到达表皮和叶肉层时,某些内源性代谢物的分子分布显示出变化和定量变化之间的化学对比。我们的结果表明,LAESI质谱仪为环境分子成像和生物组织和活生物体中代谢产物的深度分析开辟了一条新途径。

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