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Minimizing Visceral Fat Delocalization on Tissue Sections with Porous Aluminum Oxide Slides for Imaging Mass Spectrometry

机译:用多孔氧化铝氧化物载玻片上的组织切片缩小粘合剂的成像质谱法

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A high correlation of bioanalytes with their corresponding histologies is the landmark feature of matrix-assisted laser desorption ionization (MALDI) imaging mass spectrometry (IMS). Lipids are one of the most studied classes of biomolecules, and monitoring lipid distribution and abundance in tissue samples can lead to major inputs in the understanding of disease. Lipid delocalization and ion suppression are two major effects that can lead to misinterpretation of the IMS results to an unaware analyst. We and others have observed that tissue specimens containing high amounts of visceral fat are challenging to analyze because of fat delocalization on and off section leading to significant triacylglyceride and phospholipid delocalization and major ion suppression effects. In this work, we introduce a novel and easy to produce reusable porous aluminum oxide sample slide that minimizes visceral fat delocalization after thaw-mounting of tissue sections. Using fatty mouse kidneys and other tissues, we demonstrate its efficacy in minimizing delocalization of triacylglycerides, the primary constituents of fat, and the resulting beneficial effects on phospholipid MALDI IMS.
机译:生物分析与相应组织学的高相关是基质辅助激光解吸电离(MALDI)成像质谱(IMS)的地标特征。脂质是最受研究的生物分子类别之一,并且监测脂质分布和组织样品的丰度会导致对疾病的理解中的主要投入。脂质疏水化和离子抑制是两种主要效果,可能导致IMS结果误解为不发布的分析师。我们和其他人已经观察到含有大量内脏脂肪的组织标本是挑战,因为脂肪的脱稗脱落和剥离部分导致显着的三酰基甘油酯和磷脂去透明度和主要离子抑制效果。在这项工作中,我们介绍了一种新颖且易于生产可重复使用的多孔氧化铝样品载体,可最大限度地减少在尾端部件切割后的内脏脂肪移层化。使用脂肪小鼠肾脏和其他组织,我们在最小化三酰基甘油酯,脂肪的初级成分中的临时化方面证明了其功效,以及对磷脂MALDI IMS产生的有益作用。

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