Maruyama Ami, Kami Kenjiro, Sasaki Kazunori, Sato Hajime, Sato Yuzo, Tsuchihara Katsuya, Makinoshima Hideki
Shonai Regional Industry Promotion Center; Tsuruoka Metabolomics Laboratory, National Cancer Center.
Human Metabolome Technologies, Inc.
J Vis Exp. 2019 Jun 9(148). doi: 10.3791/59551.
Metabolomic analysis is a promising omics approach to not only understand the specific metabolic regulation in cancer cells compared to normal cells but also to identify biomarkers for early-stage cancer detection and prediction of chemotherapy response in cancer patients. Preparation of uniform samples for metabolomic analysis is a critical issue that remains to be addressed. Here, we present an easy and reliable protocol for extracting aqueous metabolites from cultured adherent cells for metabolomic analysis using capillary electrophoresis-mass spectrometry (CE-MS). Aqueous metabolites from cultured cells are analyzed by culturing and washing cells, treating cells with methanol, extracting metabolites, and removing proteins and macromolecules with spin columns for CE-MS analysis. Representative results using lung cancer cell lines treated with diamide, an oxidative reagent, illustrate the clearly observable metabolic shift of cells under oxidative stress. This article would be especially valuable to students and investigators involved in metabolomics research, who are new to harvesting metabolites from cell lines for analysis by CE-MS.
代谢组学分析是一种很有前景的组学方法,不仅可以了解癌细胞与正常细胞相比的特定代谢调控,还可以识别用于早期癌症检测的生物标志物以及预测癌症患者的化疗反应。制备用于代谢组学分析的均匀样本是一个仍有待解决的关键问题。在此,我们提出了一种简单可靠的方案,用于从培养的贴壁细胞中提取水溶性代谢物,以便使用毛细管电泳-质谱联用(CE-MS)进行代谢组学分析。通过培养和洗涤细胞、用甲醇处理细胞、提取代谢物以及使用离心柱去除蛋白质和大分子来分析培养细胞中的水溶性代谢物,以用于CE-MS分析。使用氧化试剂二酰胺处理肺癌细胞系的代表性结果表明,在氧化应激下细胞的代谢变化清晰可见。本文对于参与代谢组学研究、刚开始从细胞系中收获代谢物以通过CE-MS进行分析的学生和研究人员尤其有价值。