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Workflow methodology for rat brain metabolome exploration using NMR, LC-MS and GC-MS analytical platforms

机译:使用NMR,LC-MS和GC-MS分析平台进行大鼠脑代谢勘探的工作流方法

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摘要

We developed a multi-platform approach for the metabolome exploration of rat brain tissue, using liquid chromatography coupled with mass spectrometry (LC-MS), nuclear magnetic resonance spectroscopy (NMR) and gas-chromatography coupled with mass spectrometry (GC-MS). The critical steps for metabolite exploration of cerebral tissues are tissue lysis and metabolites extraction. We first evaluated the impact of freeze-drying compared to wet tissue metabolites extraction using NMR and LC-MS with a reversed phase liquid chromatography. Then, we compared four metabolite extraction methods Based on the number of metabolites extracted, their intensity and their coefficient of variation (%CV), the most reproducible protocol (one-step extraction with acetonitrile on lyophilized material) was chosen to further evaluate the impact of sample mass on method performance (3, 6, and 9 mg were essayed). GC-MS analysis was also investigated by analyzing four different methoximation/silylation derivatization combinations. The optimal analytical protocols were proposed to establish the reliability required to realize untargeted brain tissue metabolomics exploration. The most reliable workflow was then exemplified by analyzing three rat brain regions (cerebellum, frontal and parietal cortices, n = 12) by H-1 NMR, LC-MS and GC-MS, allowing their clustering based on their metabolic profiles. We present here an example of development of methodology that should be done before running analysis campaigns. (C) 2017 Elsevier B.V. All rights reserved.
机译:我们开发了一种多平台方法,用于大鼠脑组织代谢勘探,使用与质谱(LC-MS),核磁共振光谱(NMR)和与质谱(GC-MS)偶联的气相色谱法偶联的液相色谱法。脑组织代谢物探索的关键步骤是组织裂解和代谢物提取。我们首先评估使用NMR和LC-MS与反相液相色谱法的湿组织代谢物提取相比冻干的影响。然后,选择基于所提取的代谢物的数量,它们的强度及其变异系数(%CV),最可重复的方案(乙腈萃取在冻干材料上的单步萃取)中的四种代谢物提取方法选择进一步评估冲击样品质量对方法性能(3,6和9mg进行了散文)。还通过分析四种不同的甲氧化/甲硅烷化衍生化组合来研究GC-MS分析。提出了最佳分析方案来确定实现未明确的脑组织代谢组科勘探所需的可靠性。然后通过通过H-1 NMR,LC-MS和GC-MS分析三个大鼠脑区(小脑,额叶和PIORITE,N = 12)来举例说明最可靠的工作流程,允许基于其代谢谱的聚类。我们在这里展示了在运行分析活动之前应该在运行分析活动之前进行的方法的一个例子。 (c)2017年Elsevier B.V.保留所有权利。

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