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用于改善癌细胞代谢组液相色谱/质谱检测的小分子代谢物提取策略

Small molecule metabolite extraction strategy for improving LC/MS detection of cancer cell metabolome.

作者信息

Sheikh Kathryn D, Khanna Shefali, Byers Stephen W, Fornace Albert, Cheema Amrita K

机构信息

Department of Oncology, Lombardi Comprehensive Cancer Center, Georgetown University Medical Center, Washington, DC 20007, USA.

出版信息

J Biomol Tech. 2011 Apr;22(1):1-4.

Abstract

Metabolomics is the comprehensive assessment of endogenous metabolites of a biological system. "Oncometabolomics" is a rapidly emerging field with potential for developing specific biomarkers for early detection, diagnosis, and disease prognosis. Given the power of this technology, the availability of standardized sample preparation methods for immortalized human cancer cell lines is critical toward augmenting research in this direction. Using MCF-7 cells as a model system, we describe an approach for intracellular metabolite extraction from cell cultures for reproducible and comprehensive metabolite extraction. The samples, when injected onto a reverse-phase 50 × 2.1 mm Acquity 1.7-μm C18 column, using an ultra performance liquid chromatography system (UPLC) coupled with electrospray ionization-quadrupole-time-of-flight-mass spectrometry (ESI-Q-TOF-MS) in positive and negative modes, yielded a data matrix with a total of 2600 features. This method, when compared with a water-extraction procedure described earlier, was found to yield significantly higher coverage and detection of molecular features. Finally, we successfully tested the performance of this method for an array of human cancer cell lines used widely in the cancer research field.

摘要

代谢组学是对生物系统内源性代谢物的全面评估。“肿瘤代谢组学”是一个迅速兴起的领域,具有开发用于早期检测、诊断和疾病预后的特定生物标志物的潜力。鉴于这项技术的强大功能,为永生化人类癌细胞系提供标准化的样品制备方法对于加强这方面的研究至关重要。我们以MCF-7细胞作为模型系统,描述了一种从细胞培养物中提取细胞内代谢物的方法,以实现可重复和全面的代谢物提取。将样品注入到一根50×2.1 mm Acquity 1.7-μm C18反相柱上,使用超高效液相色谱系统(UPLC)与电喷雾电离-四极杆-飞行时间质谱(ESI-Q-TOF-MS)联用,分别在正离子和负离子模式下运行,得到了一个总共包含2600个特征的数据矩阵。与之前描述的水提取方法相比,该方法在分子特征的覆盖范围和检测方面有显著提高。最后,我们成功地测试了该方法在癌症研究领域广泛使用的一系列人类癌细胞系中的性能。

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