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提高/消除 shotgun 脂质组学局限性的策略。

Strategies to Improve/Eliminate the Limitations in Shotgun Lipidomics.

机构信息

College of Basic Medical Sciences, Zhejiang Chinese Medical University, 548 Bingwen Road, Hangzhou, Zhejiang, 310053, China.

Barshop Institute for Longevity and Aging Studies, University of Texas Health Science Center at San Antonio, San Antonio, TX, 78229, USA.

出版信息

Proteomics. 2020 Jun;20(11):e1900070. doi: 10.1002/pmic.201900070. Epub 2019 Aug 8.

Abstract

Direct infusion-based shotgun lipidomics is one of the most powerful and useful tools in comprehensive analysis of lipid species from lipid extracts of various biological samples with high accuracy/precision. However, despite many advantages, the classical shotgun lipidomics suffers some general dogmas of limitations, such as ion suppression, ambiguous identification of isobaric/isomeric lipid species, and ion source-generated artifacts, restraining the applications in analysis of low-abundance lipid species, particularly those less ionizable or isomers that yield almost identical fragmentation patterns. This article reviews the strategies (such as modifier addition, prefractionation, chemical derivatization, charge feature utilization) that have been employed to improve/eliminate these limitations in modern shotgun lipidomics approaches (e.g., high mass resolution mass spectrometry-based and multidimensional mass spectrometry-based shotgun lipidomics). Therefore, with the enhancement of these strategies for shotgun lipidomics, comprehensive analysis of lipid species including isomeric/isobaric species is achieved in a more accurate and effective manner, greatly substantiating the aberrant lipid metabolism, signaling trafficking, and homeostasis under pathological conditions.

摘要

基于直接进样的 shotgun 脂质组学是一种强有力且实用的工具,可用于对各种生物样本脂质提取物中的脂质种类进行全面分析,具有很高的准确性/精密度。然而,尽管 shotgun 脂质组学有许多优点,但它仍存在一些普遍的局限性,例如离子抑制、同重异位体/同型异构体脂质种类的鉴定不明确以及离子源产生的假象,这些限制了其在低丰度脂质种类分析中的应用,尤其是那些离子化程度较低或异构体具有几乎相同的碎裂模式的脂质种类。本文综述了为改进/消除现代 shotgun 脂质组学方法(如基于高分辨质谱的和多维质谱的 shotgun 脂质组学)中这些局限性而采用的策略(如添加修饰剂、预分级、化学衍生化、电荷特征利用)。因此,随着 shotgun 脂质组学策略的增强,能够以更准确有效的方式对包括同重异位体/同型异构体在内的脂质种类进行全面分析,极大地证实了病理条件下异常的脂质代谢、信号转导和动态平衡。

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