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“激光烧蚀实时直接分析”质谱法的发展:在植物组织中沿着导致阿托品和东莨菪碱合成的生物合成级联途径对代谢物的空间分布进行映射的应用。

Development of "Laser Ablation Direct Analysis in Real Time Imaging" Mass Spectrometry: Application to Spatial Distribution Mapping of Metabolites Along the Biosynthetic Cascade Leading to Synthesis of Atropine and Scopolamine in Plant Tissue.

机构信息

State University of New York at Albany , Department of Chemistry, 1400 Washington Avenue, Albany, New York 12222, United States.

JEOL Ltd. , 3-1-2 Musashino, Akishima, Tokyo, Japan 196-8558.

出版信息

Anal Chem. 2017 Mar 21;89(6):3421-3429. doi: 10.1021/acs.analchem.6b04137. Epub 2017 Mar 9.

Abstract

Methods for the accomplishment of small-molecule imaging by mass spectrometry are challenged by the need for sample pretreatment steps, such as cryo-sectioning, dehydration, chemical fixation, or application of a matrix or solvent, that must be performed to obtain interpretable spatial distribution data. Furthermore, these steps along with requirements of the mass analyzer such as high vacuum, can severely limit the range of sample types that can be analyzed by this powerful method. Here, we report the development of a laser ablation-direct analysis in real time imaging mass spectrometry approach which couples a 213 nm Nd:YAG solid state UV laser to a direct analysis in a real time ion source and high-resolution time-of-flight mass spectrometer. This platform enables facile determination of the spatial distribution of small-molecules spanning a range of polarities in a diversity of sample types and requires no matrix, vacuum, solvent, or complicated sample pretreatment steps. It furnishes high-resolution data, can be performed under ambient conditions on samples in their native form, and results in little to no fragmentation of analytes. We demonstrate its application through determination of the spatial distribution of molecules involved in the biosynthetic cascade leading to formation of the clinically relevant alkaloids atropine and scopolamine in Datura leichhardtii seed tissue.

摘要

通过质谱法实现小分子成像的方法受到需要进行样品预处理步骤的挑战,例如冷冻切片、脱水、化学固定或应用基质或溶剂,这些步骤必须进行才能获得可解释的空间分布数据。此外,这些步骤以及质量分析仪的要求,如高真空,可能会严重限制这种强大方法可分析的样品类型范围。在这里,我们报告了一种激光烧蚀-实时直接分析质谱成像方法的发展,该方法将 213nmNd:YAG 固态紫外激光与实时直接分析离子源和高分辨率飞行时间质谱仪相结合。该平台能够轻松确定各种样品类型中跨越多种极性范围的小分子的空间分布,并且不需要基质、真空、溶剂或复杂的样品预处理步骤。它提供高分辨率数据,可以在环境条件下对其天然形式的样品进行分析,并且对分析物几乎没有或没有碎片化。我们通过确定参与导致临床相关生物碱阿托品和东莨菪碱形成的生物合成级联的分子在 Datura leichhardtii 种子组织中的空间分布来证明其应用。

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