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Evaluation of Sampling and Extraction Methodologies for the Global Metabolic Profiling of Saccharophagus degradans

机译:降解糖酵母整体代谢谱的采样和提取方法的评价

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Metabolomics is based on the unbiased and global analysis of metabolites of organisms at specific time points. Therefore, the nonselective and reproducible recovery of all existing metabolites while preventing their transformation is the ideal criterion for metabolome sample preparation. We evaluated currently used sampling methods and extraction solvents for global metabolic profiling of a Gram-negative bacterium, Saccharophagus degradans, using gas chromatography-time-of-flight mass spectrometry (GC-TOF MS) with an emphasis on three steps: the sampling method, which consisted of cold methanol quenching or fast filtration; the subsequent washing step; and the extraction solvents. After cold methanol quenching with 70percent (v/v) methanol at -70 deg C, washing with 2.3percent NaCl produced a serious loss of intracellular metabolites. In addition, when cold methanol quenching and fast filtration were compared, severe cell leakage caused by cold methanol quenching resulted in a significant loss of intracellular metabolites, which was confirmed by spectrometric analysis at 260 and 280 nm. Upon evaluation of extraction solvents such as pure methanol (MeOH), acetonitrile/water (50ACN; 1:1, v/v), acetonitrile/methanol/water mixture (AMW; 2:2:1), and water/isopropanol/ methanol (WiPM; 2:2:5). AMW and WiPM were found to be superior extraction solvents for S. degradans based on the total peak intensities of the metabolites, the total number of metabolite peaks, and the reproducibility of recovered metabolite quantities; however, the metabolite profiles differed significantly between AMW and WiPM. This is the first evaluation of each step of sample preparation involved in global scale metabolic analysis by GC-TOF MS, which can be used as a model in the preparation of organism-specific samples for metabolome analysis.
机译:代谢组学基于特定时间点对生物的代谢物进行的无偏性和全局分析。因此,所有现有代谢物的非选择性和可再现性回收,同时防止其转化是代谢组样品制备的理想标准。我们使用气相色谱-飞行时间质谱(GC-TOF MS)评估了当前使用的采样方法和提取溶剂对革兰氏阴性细菌降解酵母的整体代谢谱分析,重点是三个步骤:采样方法,包括冷甲醇淬灭或快速过滤;随后的洗涤步骤;和萃取溶剂。冷甲醇在-70℃下用70%(v / v)甲醇淬灭后,用2.3%NaCl洗涤会严重损失细胞内代谢产物。此外,当比较冷甲醇淬灭和快速过滤时,冷甲醇淬灭引起的严重细胞渗漏导致细胞内代谢产物的大量损失,这在260和280 nm处的光谱分析证实了这一点。评估萃取溶剂后,例如纯甲醇(MeOH),乙腈/水(50ACN; 1:1,v / v),乙腈/甲醇/水混合物(AMW; 2:2:1)和水/异丙醇/甲醇(WiPM; 2:2:5)。基于代谢物的总峰强度,代谢物峰的总数以及回收的代谢物量的可重复性,发现AMW和WiPM是降解桑德酵母的优良提取溶剂。但是,AMW和WiPM之间的代谢物谱差异很大。这是对通过GC-TOF MS进行的全球规模代谢分析所涉及的样品制备各步骤的首次评估,该步骤可作为制备代谢物分析专用的生物特异性样品的模型。

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