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Silver-Assisted Laser Desorption Ionization For High Spatial Resolution Imaging Mass Spectrometry of Olefins from Thin Tissue Sections

机译:银辅助激光解吸电离,用于薄组织切片中烯烃的高空间分辨率成像质谱分析

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Silver has been demonstrated to be a powerful cationization agent in mass spectrometry (MS) for various olefinic species such as cholesterol and fatty acids. This work explores the utility of metallic silver sputtering on tissue sections for high resolution imaging mass spectrometry (IMS) of olefins by laser desorption ionization (LDI). For this purpose, sputtered silver coating thickness was optimized on an assorted selection of mouse and rat tissues including brain, kidney, liver, and testis. For mouse brain tissue section, the thickness was adjusted to 23 ± 2 nm of silver to prevent ion suppression effects associated with a higher cholesterol and lipid content. On all other tissues, a thickness of at 16 ± 2 nm provided the best desorption/ ionization efficiency. Characterization of the species by MS/MS showed a wide variety of olefinic compounds allowing the IMS of different lipid classes including cholesterol, arachidonic acid, docosahexaenoic acid, and triacylglyceride 52:3. A range of spatial resolutions for IMS were investigated from 150 μm down to the high resolution cellular range at 5 μm. The applicability of direct on-tissue silver sputtering to LDI-IMS of cholesterol and other olefinic compounds presents a novel approach to improve the amount of information that can be obtained from tissue sections. This IMS strategy is thus of interest for providing new biological insights on the role of cholesterol and other olefins in physiological pathways or disease.
机译:在质谱(MS)中,银已被证明是多种烯烃类化合物(如胆固醇和脂肪酸)的强阳离子化剂。这项工作探索金属银溅射在组织切片上的应用,以通过激光解吸电离(LDI)对烯烃进行高分辨率成像质谱(IMS)。为此,在各种选择的小鼠和大鼠组织(包括脑,肾,肝和睾丸)上优化了溅射银涂层的厚度。对于小鼠脑组织切片,将银的厚度调整为23±2 nm,以防止与更高的胆固醇和脂质含量相关的离子抑制作用。在所有其他组织上,16±2 nm的厚度提供了最佳的解吸/电离效率。通过MS / MS对物种进行表征显示,烯烃化合物种类繁多,可以实现IMS的不同脂质类别,包括胆固醇,花生四烯酸,二十二碳六烯酸和甘油三酯52:3。研究了IMS的一系列空间分辨率,范围从150μm降至5μm的高分辨率细胞范围。直接组织上银溅射对胆固醇和其他烯烃化合物的LDI-IMS的适用性提出了一种新颖的方法,可以改善可从组织切片获得的信息量。因此,对于提供有关胆固醇和其他烯烃在生理途径或疾病中的作用的新的生物学见解,此IMS策略引起了人们的兴趣。

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