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基于靶向亲水相互作用液相色谱-串联质谱的脂质组学平台的开发及其在冠状病毒疾病严重程度研究中的应用。

Development of a targeted hydrophilic interaction liquid chromatography-tandem mass spectrometry based lipidomics platform applied to a coronavirus disease severity study.

机构信息

Metabolomics and Analytics Centre, Leiden Academic Centre for Drug Research, Leiden University, Einsteinweg 55, 2333 CC Leiden, the Netherlands.

SCIEX, Concord, Ontario L4K 4V8 Canada.

出版信息

J Chromatogr A. 2023 Oct 11;1708:464342. doi: 10.1016/j.chroma.2023.464342. Epub 2023 Aug 31.

Abstract

The importance of lipids seen in studies of metabolism, cancer, the recent COVID-19 pandemic and other diseases has brought the field of lipidomics to the forefront of clinical research. Quantitative and comprehensive analysis is required to understand biological interactions among lipid species. However, lipidomic analysis is often challenging due to the various compositional structures, diverse physicochemical properties, and wide dynamic range of concentrations of lipids in biological systems. To study the comprehensive lipidome, a hydrophilic interaction liquid chromatography-tandem mass spectrometry (HILIC-MS/MS)-based screening method with 1200 lipid features across 19 (sub)classes, including both nonpolar and polar lipids, has been developed. HILIC-MS/MS was selected due to its class separation property and fatty acyl chain level information. 3D models of class chromatographic retention behavior were established and evaluations of cross-class and within-class interferences were performed to avoid over-reporting these features. This targeted HILIC-MS/MS method was fully validated, with acceptable analytical parameters in terms of linearity, precision, reproducibility, and recovery. The accurate quantitation of 608 lipid species in the SRM 1950 NIST plasma was achieved using multi-internal standards per class and post-hoc correction, extending current databases by providing lipid concentrations resolved at fatty acyl chain level. The overall correlation coefficients (R) of measured concentrations with values from literature range from 0.64 to 0.84. The applicability of the developed targeted lipidomics method was demonstrated by discovering 520 differential lipid features related to COVID-19 severity. This high coverage and targeted approach will aid in future investigations of the lipidome in various disease contexts.

摘要

脂质在代谢、癌症、最近的 COVID-19 大流行和其他疾病研究中的重要性使得脂质组学成为临床研究的前沿领域。为了了解脂质物种之间的生物相互作用,需要进行定量和全面的分析。然而,由于生物系统中脂质的各种组成结构、多样的物理化学性质和广泛的浓度动态范围,脂质组学分析通常具有挑战性。为了研究全面的脂质组,已经开发了一种基于亲水作用色谱-串联质谱(HILIC-MS/MS)的筛选方法,该方法具有 19 个(亚)类别的 1200 个脂质特征,包括非极性和极性脂质。选择 HILIC-MS/MS 是因为它具有类分离特性和脂肪酸链水平信息。建立了类色谱保留行为的 3D 模型,并对跨类和类内干扰进行了评估,以避免过度报告这些特征。该靶向 HILIC-MS/MS 方法经过全面验证,在线性、精密度、重现性和回收率方面具有可接受的分析参数。使用每类多内标物和事后校正,实现了对 SRM 1950 NIST 血浆中 608 种脂质物质的准确定量,通过提供脂肪酸链水平解析的脂质浓度,扩展了当前的数据库。与文献值的测量浓度的总体相关系数(R)范围从 0.64 到 0.84。通过发现与 COVID-19 严重程度相关的 520 种差异脂质特征,证明了所开发的靶向脂质组学方法的适用性。这种高覆盖率和靶向方法将有助于未来在各种疾病背景下对脂质组进行研究。

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