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首页> 外文期刊>Metabolomics >Metabolite profiling of small cerebrospinal fluid sample volumes with gas chromatography–mass spectrometry: application to a rat model of multiple sclerosis
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Metabolite profiling of small cerebrospinal fluid sample volumes with gas chromatography–mass spectrometry: application to a rat model of multiple sclerosis

机译:气相色谱-质谱法测定小量脑脊液样品的代谢物谱:在多发性硬化大鼠模型中的应用

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Analysis of metabolites in biofluids by gas chromatography–mass spectrometry (GC–MS) after oximation and silylation is a key method in metabolomics. The GC–MS method was modified by a modified vial design and sample work-up procedure in order to make the method applicable to small volumes of cerebrospinal fluid (CSF), i.e. 10 μL, with similar coverage compared to the standard procedure using ≥100 μL of CSF. The data quality of the modified GC–MS method was assessed by analyzing a study sample set in an animal model for multiple sclerosis, including repetitively analysed quality control rat CSF samples. Automated normalization and intra- and inter-batch correction significantly improved the data quality with the majority of metabolites showing a relative standard deviation <20 %. The modified GC–MS method was successfully applied in rat model of multiple sclerosis where statistical analysis of 93 metabolites, of which 73 were (tentatively) identified, in 10 μL of rat CSF showed statistically significant differences in metabolite profiles of rats at the onset and peak of experimental autoimmune encephalomyelitis compared to rats in the control group. The modified GC–MS method presented proved to be a valid and valuable metabolomics method when only limited sample volumes are available.
机译:肟化和甲硅烷基化后,通过气相色谱-质谱(GC-MS)分析生物流体中的代谢物是代谢组学中的关键方法。 GC-MS方法通过改进的样品瓶设计和样品处理程序进行了修改,以使该方法适用于小体积的脑脊液(CSF),即10μL,与≥100的标准程序相比具有相似的覆盖率CSF的微升。通过分析动物模型中多发性硬化症的研究样本集(包括重复分析的质控大鼠CSF样本),评估了改良的GC-MS方法的数据质量。自动归一化以及批内和批间校正显着改善了数据质量,大多数代谢物显示相对标准偏差<20%。改良的GC-MS方法成功地应用于多发性硬化的大鼠模型中,其中对93种代谢物进行了统计分析,其中10种动物脑脊液中有73种代谢物(初步)被鉴定,在发病和发作时均具有统计学上的显着差异。实验性自身免疫性脑脊髓炎的峰值与对照组的大鼠相比。当只能提供有限的样品量时,提出的改进的GC-MS方法被证明是一种有效且有价值的代谢组学方法。

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