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Isotope Labeling-assisted Evaluation of Hydrophilic and Hydrophobic Liquid Chromatograph-Mass Spectrometry for Metabolomics Profiling

机译:同位素标记辅助评估的亲水和疏水液相色谱-质谱法用于代谢组学分析

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摘要

High throughput untargeted metabolomics usually relies on complementary liquid chromatography-mass spectrometry (LC-MS) methods to expand the coverage of diverse metabolites, but the integration of those methods is not fully characterized. We systematically investigated the performance of hydrophilic interaction liquid chromatography (HILIC)-MS and nano-flow reverse phase liquid chromatography (nRPLC)-MS under 8 LC-MS settings, varying stationary phases (HILIC and C18), mobile phases (acidic and basic pH), and MS ionization modes (positive and negative). Whereas nRPLC-MS optimization was previously reported, we found in HILIC-MS (2.1 mm × 150 mm) that the optimal performance was achieved in a 60 min gradient with 100 μl/min flow rate by loading metabolite extracts from 2 mg of cell/tissue samples. Since peak features were highly compromised by contaminants, we used stable isotope labeled yeast to enhance formula identification for comparing different LC-MS conditions. The 8 LC-MS settings enabled the detection of a total of 1,050 formulas, among which 78%, 73%, and 62% formulas were recovered by the best combination of 4, 3, and 2 LC-MS settings, respectively. Moreover, these yeast samples were harvested in the presence or absence of nitrogen starvation, enabling quantitative comparisons of altered formulas and metabolite structures, followed by validation with selected synthetic metabolites. The results revealed that nitrogen starvation downregulated amino acid components but upregulated uridine-related metabolism. In summary, this study introduces a thorough evaluation of hydrophilicity and hydrophobicity-based LC-MS, and provides information for selecting complementary settings to balance throughput and efficiency during metabolomics experiments.
机译:高通量非靶向代谢组学通常依赖于互补液相色谱-质谱(LC-MS)方法来扩展各种代谢物的覆盖范围,但这些方法的集成尚未得到充分表征。我们系统地研究了8种LC-MS设置,不同固定相(HILIC和C18),流动相(酸性和碱性)在8种LC-MS设置下的亲水相互作用液相色谱(HILIC)-MS和纳米流反相液相色谱(nRPLC)-MS的性能pH)和MS电离模式(正负)。之前曾报道过nRPLC-MS的优化,但我们在HILIC-MS(2.1 mm×150 mm)中发现,通过负载2 mg / ml的代谢物提取物在60 min梯度内以100μl/ min的流速实现了最佳性能。组织样本。由于峰特征受到污染物的高度损害,因此我们使用稳定同位素标记的酵母来增强配方鉴定,以比较不同的LC-MS条件。 8种LC-MS设置可以检测总共1,050个配方,其中最佳组合分别为4种,3种和2种LC-MS可以回收78%,73%和62%的配方。此外,在存在或不存在氮饥饿的情况下收集这些酵母样品,从而能够对比较的配方和代谢物结构进行定量比较,然后使用选定的合成代谢物进行验证。结果表明,氮饥饿会下调氨基酸成分,但会上调与尿苷相关的代谢。总而言之,本研究对基于亲水性和疏水性的LC-MS进行了全面评估,并提供了有关选择代谢组学实验中平衡通量和效率的补充设置的信息。

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