Analysis types and quantification methods applied in UHPLC-MS metabolomics research: a tutorial.

IF 3.5 3区 医学 Q2 ENDOCRINOLOGY & METABOLISM Metabolomics Pub Date : 2024-08-07 DOI:10.1007/s11306-024-02155-6
Richard D Beger, Royston Goodacre, Christina M Jones, Katrice A Lippa, Oleg A Mayboroda, Donna O'Neill, Lukas Najdekr, Ioanna Ntai, Ian D Wilson, Warwick B Dunn
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Abstract

Background: Different types of analytical methods, with different characteristics, are applied in metabolomics and lipidomics research and include untargeted, targeted and semi-targeted methods. Ultra High Performance Liquid Chromatography-Mass Spectrometry is one of the most frequently applied measurement instruments in metabolomics because of its ability to detect a large number of water-soluble and lipid metabolites over a wide range of concentrations in short analysis times. Methods applied for the detection and quantification of metabolites differ and can either report a (normalised) peak area or an absolute concentration.

Aim of review: In this tutorial we aim to (1) define similarities and differences between different analytical approaches applied in metabolomics and (2) define how amounts or absolute concentrations of endogenous metabolites can be determined together with the advantages and limitations of each approach in relation to the accuracy and precision when concentrations are reported.

Key scientific concepts of review: The pre-analysis knowledge of metabolites to be targeted, the requirement for (normalised) peak responses or absolute concentrations to be reported and the number of metabolites to be reported define whether an untargeted, targeted or semi-targeted method is applied. Fully untargeted methods can only provide (normalised) peak responses and fold changes which can be reported even when the structural identity of the metabolite is not known. Targeted methods, where the analytes are known prior to the analysis, can also report fold changes. Semi-targeted methods apply a mix of characteristics of both untargeted and targeted assays. For the reporting of absolute concentrations of metabolites, the analytes are not only predefined but optimized analytical methods should be developed and validated for each analyte so that the accuracy and precision of concentration data collected for biological samples can be reported as fit for purpose and be reviewed by the scientific community.

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超高效液相色谱-质谱代谢组学研究中应用的分析类型和定量方法:教程。
背景:在代谢组学和脂质组学研究中,应用了不同类型、不同特点的分析方法,包括非靶向、靶向和半靶向方法。超高效液相色谱-质谱联用技术是代谢组学中最常用的测量仪器之一,因为它能在较短的分析时间内检测出大量浓度范围广泛的水溶性代谢物和脂质代谢物。用于检测和定量代谢物的方法各不相同,既可以报告(归一化)峰面积,也可以报告绝对浓度:在本教程中,我们的目标是:(1) 界定应用于代谢组学的不同分析方法之间的异同;(2) 界定如何确定内源性代谢物的数量或绝对浓度,以及每种方法在报告浓度的准确性和精确性方面的优势和局限性:分析前对目标代谢物的了解、对报告(归一化)峰值反应或绝对浓度的要求以及要报告的代谢物数量决定了是采用非目标方法、目标方法还是半目标方法。完全非靶向方法只能提供(归一化)峰值响应和折叠变化,即使代谢物的结构特征不明也可报告。在分析前已知分析物的定向方法也能报告折叠变化。半靶向方法综合了非靶向和靶向检测的特点。要报告代谢物的绝对浓度,不仅要预先确定被分析物,还要针对每种被分析物开发和验证优化的分析方法,这样收集到的生物样本浓度数据的准确度和精密度才能符合目的要求并接受科学界的审查。
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来源期刊
Metabolomics
Metabolomics 医学-内分泌学与代谢
CiteScore
6.60
自引率
2.80%
发文量
84
审稿时长
2 months
期刊介绍: Metabolomics publishes current research regarding the development of technology platforms for metabolomics. This includes, but is not limited to: metabolomic applications within man, including pre-clinical and clinical pharmacometabolomics for precision medicine metabolic profiling and fingerprinting metabolite target analysis metabolomic applications within animals, plants and microbes transcriptomics and proteomics in systems biology Metabolomics is an indispensable platform for researchers using new post-genomics approaches, to discover networks and interactions between metabolites, pharmaceuticals, SNPs, proteins and more. Its articles go beyond the genome and metabolome, by including original clinical study material together with big data from new emerging technologies.
期刊最新文献
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