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Sublimation as a Method of Matrix Application for Mass Spectrometric Imaging

机译:升华作为质谱成像中矩阵应用的一种方法

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摘要

Common organic MALDI matrices, 2,5-dihydroxybenzoic acid, 3,5-dimethoxy-4-hydroxycinnamic acid, and alpha-cyano-4-hydroxy-cinnamic acid were found to undergo sublimation without decomposition under conditions of reduced pressure and elevated temperature. This solid to vapor phase transition was exploited to apply MALDI matrix onto tissue samples over a broad surface in a solvent-free application for mass spectrometric imaging. Sublimation of matrix produced an even layer of small crystals across the sample plate. The deposition was readily controlled with time, temperature and pressure settings and was highly reproducible from one sample to the next. Mass spectrometric images acquired from phospholipid standards robotically spotted onto a MALDI plate yielded a more intense, even signal with fewer sodium adducts when matrix was applied by sublimation relative to samples where matrix was deposited by an electrospray technique. MALDI matrix could be readily applied to tissue sections on glass slides and stainless steel MALDI plate inserts as long as good thermal contact was made with the condenser of the sublimation device. Sections of mouse brain were coated with matrix applied by sublimation, and were imaged using a Q-q-TOF mass spectrometer to yield mass spectral images of very high quality. Image quality is likely enhanced by several features of this technique including the microcrystalline morphology of the deposited matrix, increased purity of deposited matrix, and evenness of deposition. This inexpensive method was reproducible, and eliminated the potential for spreading of analytes due to solvent deposition during matrix application.
机译:发现常见的有机MALDI基质,2,5-二羟基苯甲酸,3,5-二甲氧基-4-羟基肉桂酸和α-氰基-4-羟基肉桂酸在减压和高温条件下升华而不分解。利用这种从固相到气相的转变,可以在无溶剂应用中将MALDI基质广泛地应用于组织样品的质谱成像。基质的升华在整个样品板上产生了均匀的小晶体层。沉积易于通过时间,温度和压力设置进行控制,并且从一个样品到下一个样品都具有很高的重现性。与通过电喷雾技术沉积基质的样品相比,通过升华法施用基质时,从磷脂标准物上自动点到MALDI板上获得的质谱图产生的信号更强,均匀,且钠加合物更少。 MALDI基质可以很容易地应用于载玻片和MALDI不锈钢板插入物上的组织切片,只要与升华装置的冷凝器保持良好的热接触即可。小鼠脑部的切片涂有通过升华施加的基质,并使用Q-q-TOF质谱仪成像以产生非常高质量的质谱图像。该技术的几个特征可能会提高图像质量,包括沉积基质的微晶形态,沉积基质的纯度提高以及沉积均匀性。这种廉价的方法具有可重现性,并且消除了由于在基质应用过程中溶剂沉积而导致分析物扩散的可能性。

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