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High-resolution atmospheric-pressure MALDI mass spectrometry imaging workflow for lipidomic analysis of late fetal mouse lungs

机译:高分辨率大气压MALDI质谱成像工作流程用于晚期胎儿小鼠肺的脂质组学分析

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Mass spectrometry imaging (MSI) provides label-free, non-targeted molecular and spatial information of the biomolecules within tissue. Lipids play important roles in lung biology, e.g. as surfactant, preventing alveolar collapse during normal and forced respiration. Lipidomic characterization of late fetal mouse lungs at day 19 of gestation (E19) has not been performed yet. In this study we employed high-resolution atmospheric pressure scanning microprobe matrix-assisted laser desorption/ionization MSI for the lipidomic analysis of E19 mouse lungs. Molecular species of different lipid classes were imaged in E19 lung sections at high spatial and mass resolution in positive- and negative-ion mode. Lipid species were characterized based on accurate mass and on-tissue tandem mass spectrometry. In addition, a dedicated sample preparation protocol, homogenous deposition of matrices on tissue surfaces and data processing parameters were optimized for the comparison of signal intensities of lipids between different tissue sections of E19 lungs of wild type and Pex11β-knockout mice. Our study provides lipid information of E19 mouse lungs, optimized experimental and data processing strategies for the direct comparison of signal intensities of metabolites (lipids) among the tissue sections from MSI experiments. To best of our knowledge, this is the first MSI and lipidomic study of E19 mouse lungs.
机译:质谱成像(MSI)提供了组织内生物分子的无标记,非目标分子和空间信息。脂质在肺生物学中起重要作用,例如作为表面活性剂,可防止正常和强制呼吸过程中肺泡塌陷。尚未在妊娠第19天(E19)进行晚期胎儿小鼠肺的脂血学表征。在这项研究中,我们采用高分辨率大气压扫描微探针基质辅助激光解吸/电离MSI进行E19小鼠肺的脂质组学分析。在E19肺切片中以正离子和负离子模式以高空间和质量分辨率对不同脂质类别的分子种类进行成像。基于准确的质量和组织串联质谱对脂质种类进行了表征。此外,优化了专用样品制备方案,组织在组织表面上的均匀沉积和数据处理参数,以比较野生型E19肺和Pex11β基因敲除小鼠的不同组织切片之间脂质的信号强度。我们的研究提供了E19小鼠肺的脂质信息,优化的实验和数据处理策略,可直接比较MSI实验的组织切片之间代谢产物(脂质)的信号强度。据我们所知,这是E19小鼠肺部的首次MSI和脂质组学研究。

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