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参照 Kendrick 质量缺陷标注和基于分类的成像 MS 脂质组学实验过滤。

Referenced Kendrick Mass Defect Annotation and Class-Based Filtering of Imaging MS Lipidomics Experiments.

机构信息

Department of Chemistry and Biochemistry, Baylor University, 101 Bagby Avenue, Waco, Texas 76706, United States.

Department of Biochemistry, Vanderbilt University, 607 Light Hall, Nashville, Tennessee 37205, United States.

出版信息

Anal Chem. 2022 Apr 12;94(14):5504-5513. doi: 10.1021/acs.analchem.1c03715. Epub 2022 Mar 28.

Abstract

Because of their diverse functionalities in cells, lipids are of primary importance when characterizing molecular profiles of physiological and disease states. Imaging mass spectrometry (IMS) provides the spatial distributions of lipid populations in tissues. Referenced Kendrick mass defect (RKMD) analysis is an effective mass spectrometry (MS) data analysis tool for classification and annotation of lipids. Herein, we extend the capabilities of RKMD analysis and demonstrate an integrated method for lipid annotation and chemical structure-based filtering for IMS datasets. Annotation of lipid features with lipid molecular class, radyl carbon chain length, and degree of unsaturation allows image reconstruction and visualization based on each structural characteristic. We show a proof-of-concept application of the method to a computationally generated IMS dataset and validate that the RKMD method is highly specific for lipid components in the presence of confounding background ions. Moreover, we demonstrate an application of the RKMD-based annotation and filtering to matrix-assisted laser desorption/ionization (MALDI) IMS lipidomic data from human kidney tissue analysis.

摘要

由于脂质在细胞中具有多种功能,因此在描述生理和疾病状态的分子特征时,脂质至关重要。成像质谱(IMS)提供了组织中脂质群体的空间分布。参考肯德里克质量缺陷(RKMD)分析是一种有效的质谱(MS)数据分析工具,可用于脂质的分类和注释。在此,我们扩展了 RKMD 分析的功能,并展示了一种用于 IMS 数据集的脂质注释和基于化学结构过滤的集成方法。根据脂质分子类别、自由基碳链长度和不饱和度对脂质特征进行注释,允许基于每个结构特征进行图像重建和可视化。我们通过计算生成的 IMS 数据集证明了该方法的概念验证应用,并验证了在存在混杂背景离子的情况下,RKMD 方法对脂质成分具有高度特异性。此外,我们还展示了基于 RKMD 的注释和过滤在人肾组织分析的基质辅助激光解吸/电离(MALDI)IMS 脂质组学数据中的应用。

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