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一种用于在单个生物样本上同时准确分析极性代谢物和脂质的优化双提取方法。

An Optimized Dual Extraction Method for the Simultaneous and Accurate Analysis of Polar Metabolites and Lipids Carried out on Single Biological Samples.

作者信息

Villaret-Cazadamont Joran, Poupin Nathalie, Tournadre Anthony, Batut Aurélie, Gales Lara, Zalko Daniel, Cabaton Nicolas J, Bellvert Floriant, Bertrand-Michel Justine

机构信息

Toxalim (Research Centre in Food Toxicology), Université de Toulouse, INRAE, ENVT, INP-Purpan, UPS, 31027 Toulouse, France.

MetaboHUB-MetaToul-Lipidomics Core Facility, Inserm U1048, 31432 Toulouse, France.

出版信息

Metabolites. 2020 Aug 19;10(9):338. doi: 10.3390/metabo10090338.

Abstract

The functional understanding of metabolic changes requires both a significant investigation into metabolic pathways, as enabled by global metabolomics and lipidomics approaches, and the comprehensive and accurate exploration of specific key pathways. To answer this pivotal challenge, we propose an optimized approach, which combines an efficient sample preparation, aiming to reduce the variability, with a biphasic extraction method, where both the aqueous and organic phases of the same sample are used for mass spectrometry analyses. We demonstrated that this double extraction protocol allows working with one single sample without decreasing the metabolome and lipidome coverage. It enables the targeted analysis of 40 polar metabolites and 82 lipids, together with the absolute quantification of 32 polar metabolites, providing comprehensive coverage and quantitative measurement of the metabolites involved in central carbon energy pathways. With this method, we evidenced modulations of several lipids, amino acids, and energy metabolites in HepaRG cells exposed to fenofibrate, a model hepatic toxicant, and metabolic modulator. This new protocol is particularly relevant for experiments involving limited amounts of biological material and for functional metabolic explorations and is thus of particular interest for studies aiming to decipher the effects and modes of action of metabolic disrupting compounds.

摘要

对代谢变化的功能理解既需要通过全局代谢组学和脂质组学方法对代谢途径进行深入研究,也需要对特定关键途径进行全面而准确的探索。为应对这一关键挑战,我们提出了一种优化方法,该方法将旨在降低变异性的高效样品制备与双相提取方法相结合,即同一样品的水相和有机相均用于质谱分析。我们证明,这种双重提取方案能够在不降低代谢组和脂质组覆盖范围的情况下,仅使用单个样品开展工作。它能够对40种极性代谢物和82种脂质进行靶向分析,同时对32种极性代谢物进行绝对定量,全面覆盖并定量测量参与中心碳能量途径的代谢物。通过这种方法,我们证实了在暴露于非诺贝特(一种典型的肝毒性物质和代谢调节剂)的HepaRG细胞中,几种脂质、氨基酸和能量代谢物发生了调节变化。这种新方案对于涉及少量生物材料的实验以及功能代谢探索尤为重要,因此对于旨在解读代谢干扰化合物的作用效果和作用模式的研究具有特别的意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8286/7570216/1da2fb59f207/metabolites-10-00338-g001.jpg

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