Metabolomics using anion-exchange chromatography mass spectrometry for the analysis of cells, tissues and biofluids.

IF 16 1区 生物学 Q1 BIOCHEMICAL RESEARCH METHODS
Rachel Williams, John Walsby-Tickle, Ingvild Comfort Hvinden, Isabelle Legge, Tereza Kacerova, KyoungEun Vicky Lee, Mariya Misheva, David Hauton, Judith B Ngere, John D Sidda, Elisabete Pires, Tom Cadoux-Hudson, James S O McCullagh
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引用次数: 0

Abstract

The direct coupling of ion-exchange chromatography with mass spectrometry using electrochemical ion suppression creates a hyphenated technique with selectivity and specificity for the analysis of highly polar and ionic compounds. The technique has enabled new applications in environmental chemistry, food chemistry, forensics, cell biology and, more recently, metabolomics. Robust, reproducible and quantitative methods for the analysis of highly polar and ionic metabolites help meet a longstanding analytical need in metabolomics. Here, we provide step-by-step instructions for both untargeted and semi-targeted metabolite analysis from cell, tissue or biofluid samples by using anion-exchange chromatography-high-resolution tandem mass spectrometry (AEC-MS/MS). The method requires minimal sample preparation and is robust, sensitive and selective. It provides comprehensive coverage of hundreds of metabolites found in primary and secondary metabolic pathways, including glycolysis, the pentose phosphate pathway, the tricarboxylic acid cycle, purine and pyrimidine metabolism, amino acid degradation and redox metabolism. An inline electrolytic ion suppressor is used to quantitatively neutralize OH- ions in the eluent stream, after chromatographic separation, enabling AEC to be directly coupled with MS. Counter ions are also removed during this process, creating a neutral pH, aqueous eluent with a simplified matrix optimal for negative ion MS analysis. Sample preparation through to data analysis and interpretation is described in the protocol, including a guide to which metabolites and metabolic pathways are suitable for analysis by using AEC-MS/MS.

代谢组学使用阴离子交换色谱质谱法分析细胞、组织和生物体液。
离子交换色谱与质谱的直接耦合使用电化学离子抑制创造了一种具有选择性和特异性的联用技术,用于分析高极性和离子化合物。这项技术在环境化学、食品化学、法医学、细胞生物学以及最近的代谢组学等领域都有新的应用。高极性和离子代谢物分析的稳健、可重复性和定量方法有助于满足代谢组学长期以来的分析需求。在这里,我们通过使用阴离子交换色谱-高分辨率串联质谱(AEC-MS/MS),为细胞,组织或生物流体样品的非靶向和半靶向代谢物分析提供一步一步的说明。该方法需要最少的样品制备,具有鲁棒性、灵敏度和选择性。它提供了在初级和次级代谢途径中发现的数百种代谢物的全面覆盖,包括糖酵解、戊糖磷酸途径、三羧酸循环、嘌呤和嘧啶代谢、氨基酸降解和氧化还原代谢。色谱分离后,使用在线电解离子抑制器定量中和淋洗液流中的OH-离子,使AEC与MS直接耦合,在此过程中也去除反离子,形成中性pH,具有简化基质的水溶液淋洗液,最适合负离子质谱分析。方案中描述了从样品制备到数据分析和解释的过程,包括使用AEC-MS/MS分析代谢物和代谢途径的指南。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Nature Protocols
Nature Protocols 生物-生化研究方法
CiteScore
29.10
自引率
0.70%
发文量
128
审稿时长
4 months
期刊介绍: Nature Protocols focuses on publishing protocols used to address significant biological and biomedical science research questions, including methods grounded in physics and chemistry with practical applications to biological problems. The journal caters to a primary audience of research scientists and, as such, exclusively publishes protocols with research applications. Protocols primarily aimed at influencing patient management and treatment decisions are not featured. The specific techniques covered encompass a wide range, including but not limited to: Biochemistry, Cell biology, Cell culture, Chemical modification, Computational biology, Developmental biology, Epigenomics, Genetic analysis, Genetic modification, Genomics, Imaging, Immunology, Isolation, purification, and separation, Lipidomics, Metabolomics, Microbiology, Model organisms, Nanotechnology, Neuroscience, Nucleic-acid-based molecular biology, Pharmacology, Plant biology, Protein analysis, Proteomics, Spectroscopy, Structural biology, Synthetic chemistry, Tissue culture, Toxicology, and Virology.
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