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Evaluation of mobile phase characteristics on three zwitterionic columns in hydrophilic interaction liquid chromatography mode for liquid chromatography-high resolution mass spectrometry based untargeted metabolite profiling of Leishmania parasites

机译:基于亲水色谱-高分辨率质谱的利什曼原虫寄生虫非靶向代谢物谱分析,在亲水相互作用液相色谱模式下评估三个两性离子柱上的流动相特性

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摘要

It has been reported that HILIC column chemistry has a great effect on the number of detected metabolites in LC-HRMS-based untargeted metabolite profiling studies. However, no systematic investigation has been carried out with regard to the optimisation of mobile phase characteristics. In this study using 223 metabolite standards, we explored the retention mechanisms on three zwitterionic columns with varied mobile phase composition, demonstrated the interference from poor chromatographic peak shapes on the output of data extraction, and assessed the quality of chromatographic signals and the separation of isomers under each LC condition. As expected, on the ZIC-cHILIC column the acidic metabolites showed improved chromatographic performance at low pH which can be attributed to the opposite arrangement of the permanently charged groups on this column in comparison with the ZIC-HILIC column. Using extracts from the protozoan parasite Leishmania, we compared the numbers of repeatedly detected LC-HRMS features under different LC conditions with putative identification of metabolites not amongst the standards being based on accurate mass (±3ppm). Besides column chemistry, the pH of the mobile phase plays a key role in not only determining the retention mechanisms of solutes but also the output of the LC-HRMS data processing. Fast evaporation of ammonium carbonate produced less ion suppression in ESI source and consequently improved the detectability of the metabolites in low abundance in comparison with other ammonium salts. Our results show that the combination of a ZIC-pHILIC column with an ammonium carbonate mobile phase, pH 9.2, at 20mM in the aqueous phase or 10mM in both aqueous and organic mobile phase components, provided the most suitable LC conditions for LC-HRMS-based untargeted metabolite profiling of Leishmania parasite extracts. The signal reliability of the mass spectrometer used in this study (Exactive Orbitrap) was also investigated.
机译:据报道,在基于LC-HRMS的非靶向代谢物谱分析研究中,HILIC色谱柱化学性质对检测到的代谢物数量有很大影响。但是,尚未对流动相特性的优化进行系统的研究。在这项使用223种代谢物标准品的研究中,我们探索了三种具有不同流动相组成的两性离子色谱柱的保留机理,展示了不良色谱峰形状对数据提取输出的干扰,并评估了色谱信号的质量和异构体的分离在每个LC条件下。正如预期的那样,在ZIC-cHILIC色谱柱上,酸性代谢物在低pH下显示出改善的色谱性能,这可归因于与ZIC-HILIC色谱柱相比,该色谱柱上的永久带电基团排列相反。使用原生动物寄生虫利什曼原虫的提取物,我们比较了在不同LC条件下重复检测到的LC-HRMS特征的数量与假定的代谢产物鉴定,但该标准并非基于准确质量(±3ppm)。除色谱柱化学外,流动相的pH不仅在确定溶质的保留机理方面,而且在LC-HRMS数据处理的输出方面都起着关键作用。与其他铵盐相比,碳酸铵的快速蒸发在ESI源中产生较少的离子抑制,因此提高了代谢物在低丰度下的可检测性。我们的结果表明,ZIC-pHILIC色谱柱与碳酸铵流动相(pH 9.2)在水相中浓度为20mM或在水相和有机流动相成分中均为10mM的组合提供了最适合LC-HRMS-LC的液相色谱条件利什曼原虫寄生虫提取物的非靶向代谢产物分析。还研究了本研究中使用的质谱仪(Exactive Orbitrap)的信号可靠性。

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