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Ozonization of Tissue Sections for MALDI MS Imaging of Carbon-Carbon Double Bond Positional Isomers of Phospholipids

机译:磷脂 - 碳 - 碳双粘合磷脂碳 - 碳双粘合定位异构体的组织切片臭氧化

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Visualizing the differential distribution of carbon-carbon double bond (C=C db) positional isomers of unsaturated phospholipids (PL) in tissue sections by use of refined matrix-assisted laser desorption ionization mass spectrometry imaging (MALDI MSI) technologies offers a high promise to deeper understand PL metabolism and isomer-specific functions in health and disease. Here we introduce an on-tissue ozonization protocol that enables a particular straightforward derivatization of unsaturated lipids in tissue sections. Collision-induced dissociation (CID) of MALDI-generated ozonide ions (with yields in the several ten percent range) produced the Criegee fragment ion pairs, which are indicative of C=C db position(s). We used our technique for visualizing the differential distribution of Delta 9 and Delta 11 isomers of phosphatidylcholines in mouse brain and in human colon samples with the desorption laser spot size 15 mu m, emphasizing the potential of the technique to expose local isomer-specific metabolism of PLs.
机译:通过使用精制基质辅助激光解吸电离质谱法(MALDI MSI)技术,通过使用精制基质辅助激光解吸电离(MALDI MSI)技术,可视化不饱和磷脂(C = C DB)定位异构体的碳 - 碳双键(PL)的位置异构体更深入地了解PL代谢和健康和疾病的特定异构体功能。在这里,我们介绍了一种组织臭氧化方案,其能够在组织切片中特定的直接衍生不饱和脂质的衍生化。 Maldi产生的臭氧胺离子的碰撞诱导的解离(CID)(在几十百分之百分比中的产率)产生了Criegee片段离子对,其指示C = C dB位置。我们利用我们的技术可视化小鼠脑中磷脂酰胆碱的Delta 9和Delta 11异构体的差异分布,并在解吸激光光斑尺寸15μm中,强调该技术暴露局部异构体特异性代谢的潜力PLS。

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