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Systematic optimization and evaluation of sample pretreatment methods for LC-MS-based metabolomics analysis of adherent mammalian cancer cells

机译:基于LC-MS的代谢组分分析的系统优化和评价粘附哺乳动物癌细胞的研究

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摘要

Cell metabolomics is a valuable tool in oncology. To obtain a valid description of the intracellular metabolome, sample pretreatment is critical to the metabolomics workflow, as this step might influence the reliability of research outcomes. Here we report a systematic investigation to optimize each step of the sample preparation. We explored four quenching protocols, three disruption protocols and seven extraction protocols, and assessed them for effectiveness and robustness by profiling different kinds of representative metabolites by the LC-MS technique using the human glioma cell line U87MG as a model. The optimized pretreatment method for global metabolomics was as follows: after the cells were washed with PBS, cell metabolism quenching was completed within five minutes with 60% methanol (buffered with 0.85% (w/v) AMBIC) at -40 degrees C. Then, 80% methanol was added and three freeze-thaw cycles were completed to extract metabolites, which could eliminate environmental stress and allow broad coverage of the authentic intracellular metabolome. We also highlighted the advantages and disadvantages of some preanalytical processes for specific metabolites. In addition, the influences of different cell collection batches and liquid nitrogen storage durations were noted. The results suggested the risk of non-physiological or misleading results when using cell samples cultured in different batches or subjected to long-term storage.
机译:细胞代谢组学是肿瘤学中的宝贵工具。为了获得细胞内代谢物的有效描述,样品预处理对代谢组学工作流程至关重要,因为该步骤可能会影响研究结果的可靠性。在这里,我们报告了系统的调查,以优化样品制备的每一步。我们探讨了四种淬火协议,三种破坏方案和七种提取方案,并通过使用人胶质瘤细胞系U87mg作为模型,通过LC-MS技术分析不同类型的代谢物,评估它们的有效性和鲁棒性。全球性代谢物的优化预处理方法如下:用PBS洗涤细胞后,在50%甲醇(用0.85%(w / v)Ambic)的5分钟内完成细胞代谢猝灭在-40℃下。然后,加入80%甲醇,完成三个冻融循环以提取代谢物,这可以消除环境胁迫并允许广泛的植物细胞内代谢物覆盖。我们还强调了特异性代谢物的某些预审工艺的优缺点。此外,还注意到不同细胞收集批次和液氮储存持续时间的影响。结果表明使用在不同批次培养的细胞样品或经受长期储存的细胞样品时产生非生理或误导性结果的风险。

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  • 来源
    《Analytical methods》 |2019年第23期|共9页
  • 作者单位

    Chinese Acad Med Sci Inst Materia Med State Key Lab Bioact Substance &

    Funct Nat Med Beijing 100050 Peoples R China;

    Chinese Acad Med Sci Inst Materia Med State Key Lab Bioact Substance &

    Funct Nat Med Beijing 100050 Peoples R China;

    Chinese Acad Med Sci Inst Materia Med State Key Lab Bioact Substance &

    Funct Nat Med Beijing 100050 Peoples R China;

    Chinese Acad Med Sci Inst Materia Med State Key Lab Bioact Substance &

    Funct Nat Med Beijing 100050 Peoples R China;

    Chinese Acad Med Sci Inst Materia Med State Key Lab Bioact Substance &

    Funct Nat Med Beijing 100050 Peoples R China;

    Chinese Acad Med Sci Inst Materia Med State Key Lab Bioact Substance &

    Funct Nat Med Beijing 100050 Peoples R China;

    Chinese Acad Med Sci Inst Materia Med State Key Lab Bioact Substance &

    Funct Nat Med Beijing 100050 Peoples R China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 分析化学;
  • 关键词

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