Lipidomics: Current state of the art in a fast moving field

V. O’Donnell, K. Ekroos, G. Liebisch, M. Wakelam
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引用次数: 61

Abstract

Lipids are essential for all facets of life. They play three major roles: energy metabolism, structural, and signaling. They are dynamic molecules strongly influenced by endogenous and exogenous factors including genetics, diet, age, lifestyle, drugs, disease and inflammation. As precision medicine starts to become mainstream, there is a huge burgeoning interest in lipids and their potential to act as unique biomarkers or prognostic indicators. Lipids comprise a large component of all metabolites (around one‐third), and our expanding knowledge about their dynamic behavior is fueling the hope that mapping their regulatory biochemical pathways on a systems level will revolutionize our ability to prevent, diagnose, and stratify major human diseases. Up to now, clinical lipid measurements have consisted primarily of total cholesterol or triglycerides, as a measure for cardiovascular risk and response to lipid lowering drugs. Nowadays, we are able to measure thousands of individual lipids that make up the lipidome. nuclear magnetic resonance spectrometry (NMR) metabolomics is also being increasingly used in large cohort studies where it can report on total levels of selected lipid classes, and relative levels of fatty acid saturation. To support the application of lipidomics research, LIPID MAPS was established in 2003, and since then has gone on to become the go‐to resource for several lipid databases, lipid drawing tools, data deposition, and more recently lipidomics informatics tools, and a lipid biochemistry encyclopedia, LipidWeb. Alongside this, the recently established Lipidomics Standards Initiative plays a key role in standardization of lipidomics methodologies.
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脂质组学:快速发展领域的最新技术
脂质对生活的各个方面都是必不可少的。它们起着三个主要作用:能量代谢、结构和信号传导。它们是动态分子,受遗传、饮食、年龄、生活方式、药物、疾病和炎症等内源性和外源性因素的强烈影响。随着精准医疗开始成为主流,人们对脂质及其作为独特生物标志物或预后指标的潜力产生了巨大的兴趣。脂质是所有代谢物的重要组成部分(约占三分之一),我们对其动态行为的不断扩展的知识为在系统水平上绘制其调节生化途径带来了希望,这将彻底改变我们预防、诊断和分层主要人类疾病的能力。到目前为止,临床脂质测量主要包括总胆固醇或甘油三酯,作为衡量心血管风险和对降脂药物反应的指标。如今,我们能够测量组成脂质组的数千种单个脂质。核磁共振谱(NMR)代谢组学也越来越多地用于大型队列研究,它可以报告选定脂类的总水平和脂肪酸饱和度的相对水平。为了支持脂质组学研究的应用,脂质地图成立于2003年,从那时起,它已经成为几个脂质数据库的首选资源,脂质绘图工具,数据沉积,以及最近的脂质组学信息学工具,以及脂质生物化学百科全书LipidWeb。除此之外,最近建立的脂质组学标准倡议在脂质组学方法的标准化中起着关键作用。
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CiteScore
18.40
自引率
0.00%
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0
审稿时长
>12 weeks
期刊介绍: Journal Name:Wiley Interdisciplinary Reviews-Systems Biology and Medicine Focus: Strong interdisciplinary focus Serves as an encyclopedic reference for systems biology research Conceptual Framework: Systems biology asserts the study of organisms as hierarchical systems or networks Individual biological components interact in complex ways within these systems Article Coverage: Discusses biology, methods, and models Spans systems from a few molecules to whole species Topical Coverage: Developmental Biology Physiology Biological Mechanisms Models of Systems, Properties, and Processes Laboratory Methods and Technologies Translational, Genomic, and Systems Medicine
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