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Novel approach to enhance sensitivity in surface-assisted laser desorption/ionization mass spectrometry imaging using deposited organic-inorganic hybrid matrices

机译:用沉积的有机无机杂交基质提高表面辅助激光解吸/电离质谱成像敏感性的新方法

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Sample pretreatment is key to obtaining good data in matrix-assisted laser desorption/ionization mass spectrometry imaging (MALDI-MSI). Although sublimation is one of the best methods for obtaining homogenously fine organic matrix crystals, its sensitivity can be low due to the lack of a solvent extraction effect. We investigated the effect of incorporating a thin film of metal formed by zirconium (Zr) sputtering into the sublimation process for MALDI matrix deposition for improving the detection sensitivity in mouse liver tissue sections treated with olanzapine. The matrix-enhanced surface-assisted laser desorption/ionization (ME-SALDI) method, where a matrix was formed by sputtering Zr to form a thin nanoparticle layer before depositing MALDI organic matrix comprising alpha-cyano-4-hydroxycinnamic acid (CHCA) by sublimation, resulted in a significant improvement in sensitivity, with the ion intensity of olanzapine being about 1800 times that observed using the MALDI method, comprising CHCA sublimation alone. When Zr sputtering was performed after CHCA deposition, however, no such enhancement in sensitivity was observed. The enhanced sensitivity due to Zr sputtering was also observed when the CHCA solution was applied by spraying, being about twice as high as that observed by CHCA spraying alone. In addition, the detection sensitivity of these various pretreatment methods was similar for endogenous glutathione. Given that sample preparation using the ME-SALDI-MSI method, which combines Zr sputtering with the sublimation method for depositing an organic matrix, does not involve a solvent, delocalization problems such as migration of analytes observed after matrix spraying and washing with aqueous solutions as sample pretreatment are not expected. Therefore, ME-Zr-SALDI-MSI is a novel sample pretreatment method that can improve the sensitivity of analytes while maintaining high spatial resolution in MALDI-MSI.
机译:样品预处理是获得矩阵辅助激光解吸/电离质谱(MALDI-MSI)中的良好数据的关键。虽然升华是获得均匀细菌的有机基质晶体的最佳方法之一,但由于缺乏溶剂萃取效果,其敏感性可能是低的。我们研究了将通过锆(Zr)形成的金属薄膜溅射到用于MALDI基质沉积的升华过程中的效果,以改善用奥氮翼处理的小鼠肝组织切片中的检测灵敏度。基质增强的表面辅助激光解吸/电离(ME-SALDI)方法,其中通过溅射Zr形成基质以在沉积包含α-氰基-4-羟基氨基氨基酸(CHCA)的MALDI有机基质之前形成薄的纳米颗粒层。升华导致敏感性显着提高,奥氮藻的离子强度为使用MALDI方法观察到的约1800倍,仅包含CHCA升华。然而,当CHCA沉积后进行Zr溅射时,观察到敏感性的这种增强。当通过喷涂施用CHCA溶液时,还观察到由于Zr溅射引起的增强的敏感性,其单独通过CHCA喷雾观察到的两倍。此外,这些各种预处理方法的检测敏感性类似于内源性谷胱甘肽。考虑到使用ME-SALDI-MSI方法的样品制备,其将Zr溅射与用于沉积有机基质的升华方法,不涉及溶剂,在基质喷涂和用水溶液洗涤后观察到分析物的分析物迁移等溶剂。预计样品预处理是预处理的。因此,ME-ZR-SALDI-MSI是一种新型样品预处理方法,可以提高分析物的敏感性,同时保持MALDI-MSI的高空间分辨率。

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