首页> 外文期刊>Talanta: The International Journal of Pure and Applied Analytical Chemistry >Sample preparation methodology for mouse heart metabolomics using comprehensive two-dimensional gas chromatography coupled with time-of-flight mass spectrometry
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Sample preparation methodology for mouse heart metabolomics using comprehensive two-dimensional gas chromatography coupled with time-of-flight mass spectrometry

机译:使用全面的二维气相色谱和飞行时间质谱技术进行小鼠心脏代谢组学的样品制备方法

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摘要

The investigation of naturally volatile and derivatized metabolites in mammalian tissues by comprehensive two-dimensional (2D) gas chromatography coupled with time-of-flight mass spectrometry (GC×GC - TOFMS) can provide the data for a comprehensive analysis of the pathophysiology of disease processes. When relative quantification is needed for hypothesis testing, the preparation of sample tissue must provide clear evidence that a quantitative relationship exists between the final detected signal and the amount of metabolite in the tissue. Herein, we report the optimization of a metabolite extraction method for mouse heart tissue for GC×GC - TOFMS analysis. A recursive extraction experiment was initially performed to measure the extraction efficiency of representative target metabolites (sugars, tricarboxylic acid cycle metabolites, amino acids, lipid and signaling molecules) in the aqueous fraction of a three-phase extraction system involving tissue, methanol:water, and chloroform. Some metabolites suffered from incomplete extraction with a single extraction of ~40 mg in 600 μl organic and 400 μl aqueous phases, possibly caused by saturation effects. Subsequent experiments, calibrating resulting metabolite signal to the mass of heart tissue extracted, demonstrated that doubling the solvent volumes and a lower tissue mass was needed to provide accurate relative quantification of the derivatized mouse heart metabolome. We demonstrate quantitative extraction of metabolites from ~20 mg of heart tissue using 1200 μl organic phase (chloroform) and 800 μl aqueous phase (methanol:water in equal parts by volume).
机译:通过全面的二维(2D)气相色谱结合飞行时间质谱(GC×GC-TOFMS)研究哺乳动物组织中的天然挥发性和衍生化代谢产物,可为疾病的病理生理学综合分析提供数据流程。当假设检验需要相对定量时,样品组织的制备必须提供明确的证据,即最终检测到的信号与组织中代谢物的量之间存在定量关系。在此,我们报告了用于小鼠心脏组织的代谢物提取方法的优化,用于GC×GC-TOFMS分析。最初进行了递归提取实验,以测量涉及组织,甲醇:水,和氯仿。有些代谢物在600μl有机相和400μl水相中一次提取约40 mg时提取不完全,这可能是由于饱和效应引起的。随后的实验将所产生的代谢物信号校准为所提取的心脏组织的质量,表明需要两倍的溶剂体积和较低的组织质量才能对衍生的小鼠心脏代谢组提供准确的相对定量。我们证明了使用1200μl有机相(氯仿)和800μl水相(相等体积份数的甲醇:水)从约20 mg心脏组织中定量提取代谢物。

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