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阴离子交换色谱-高分辨质谱联用:靶向代谢组学和非靶向代谢组学融合的有力工具。

Anion-Exchange Chromatography Coupled to High-Resolution Mass Spectrometry: A Powerful Tool for Merging Targeted and Non-targeted Metabolomics.

机构信息

Department of Analytical Chemistry, Faculty of Chemistry, University of Vienna , Waehringer Strasse 38, 1090 Vienna, Austria.

ISOtopic Solutions , Waehringerstrasse 38, 1090 Vienna, Austria.

出版信息

Anal Chem. 2017 Jul 18;89(14):7667-7674. doi: 10.1021/acs.analchem.7b01624. Epub 2017 Jun 27.

Abstract

In this work, simultaneous targeted metabolic profiling by isotope dilution and non-targeted fingerprinting is proposed for cancer cell studies. The novel streamlined metabolomics workflow was established using anion-exchange chromatography (IC) coupled to high-resolution mass spectrometry (MS). The separation time of strong anion-exchange (2 mm column, flow rate 380 μL min, injection volume 5 μL) could be decreased to 25 min for a target list comprising organic acids, sugars, sugar phosphates, and nucleotides. Internal standardization by fully C labeled Pichia pastoris extracts enabled absolute quantification of the primary metabolites in adherent cancer cell models. Limits of detection (LODs) in the low nanomolar range and excellent intermediate precisions of the isotopologue ratios (on average <5%, N = 5, over 40 h) were observed. As a result of internal standardization, linear dynamic ranges over 4 orders of magnitude (5 nM-50 μM, R > 0.99) were obtained. Experiments on drug-sensitive versus resistant SW480 cancer cells showed the feasibility of merging analytical tasks into one analytical run. Comparing fingerprinting with and without internal standard proved that the presence of the C labeled yeast extract required for absolute quantification was not detrimental to non-targeted data evaluation. Several interesting metabolites were discovered by accurate mass and comparing MS2 spectra (acquired in ddMS2 mode) with spectral libraries. Significant differences revealed distinct metabolic phenotypes of drug-sensitive and resistant SW480 cells.

摘要

在这项工作中,提出了一种通过同位素稀释和非靶向指纹分析同时进行靶向代谢组学分析的方法,用于癌细胞研究。使用阴离子交换色谱(IC)与高分辨率质谱(MS)相结合,建立了新颖的简化代谢组学工作流程。强阴离子交换(2 毫米柱,流速 380 μL min,进样量 5 μL)的分离时间可以缩短到 25 分钟,用于包含有机酸、糖、糖磷酸和核苷酸的目标列表。通过完全 C 标记毕赤酵母提取物进行内部标准化,能够对贴壁癌细胞模型中的主要代谢物进行绝对定量。在低纳摩尔范围内观察到检测限(LOD)和同位素比值的中间精密度(平均 <5%,N = 5,超过 40 小时)非常好。由于进行了内部标准化,获得了超过 4 个数量级的线性动态范围(5 nM-50 μM,R > 0.99)。对药物敏感与耐药 SW480 癌细胞的实验表明,将分析任务合并到一个分析运行中是可行的。将带有和不带有内部标准的指纹图谱进行比较证明,用于绝对定量的 C 标记酵母提取物的存在不会对非靶向数据评估产生不利影响。通过精确质量和比较 MS2 谱(在 ddMS2 模式下采集)与光谱库,发现了一些有趣的代谢物。药物敏感和耐药 SW480 细胞的显著差异揭示了不同的代谢表型。

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