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首页> 外文期刊>Electrophoresis: The Official Journal of the International Electrophoresis Society >Enhancing detection coverage in untargeted metabolomics analysis by solid-phase extraction on-line coupled to LC-MS/MS
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Enhancing detection coverage in untargeted metabolomics analysis by solid-phase extraction on-line coupled to LC-MS/MS

机译:通过固相萃取在线联用LC-MS / MS来提高非目标代谢组学分析的检测覆盖率

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摘要

One of the main limitations of untargeted metabolomics analysis is the low detection coverage of analytical techniques such as NMR, LC-MS, or GC-MS. In this research, the detection coverage of an automated approach configured by the on-line coupling of SPE to LC-MS/MS was evaluated by combination of sorbents based on different retention mechanisms. The approach was applied to the analysis of human serum using three types of sorbents: alkyl bonded silica, polymeric resins, and mixed-mode ionic resins. The combination of four sorbents (C18, a modified polystyrene-divinylbenzene resin and two mixed-mode ionic resins) led to the best extraction results and, therefore, the best detection coverage, which is explained by their complementary retention mechanisms. However, some of the sorbents provide a high detection coverage by themselves, as is the case with C18, which can afford to retain almost 83% of all detected entities. Taking into account the complementarity between pairs of these sorbents (C18 and the polystyrene-divinylbenzene resin with the mixed-mode ionic resins), dual cartridge SPE-LC-MS/MS configurations were designed for serum analysis. These configurations allowed increasing the detection coverage up to 91% of the total number of molecular features detected with all sorbents tested. An additional benefit of the SPE-LC-MS/MS strategy was the improvement of sensitivity as compared to protein precipitation and fractionation with methanol and chloroform. Thus, an average preconcentration factor of 10-75 was obtained in the SPE-based approach versus the two-phase protocol for metabolites extraction.
机译:非靶向代谢组学分析的主要限制之一是分析技术(例如NMR,LC-MS或GC-MS)的检测范围低。在这项研究中,通过基于不同保留机制的吸附剂组合评估了SPE与LC-MS / MS在线偶联配置的自动化方法的检测覆盖率。该方法适用于使用三种类型的吸附剂对人体血清进行分析:烷基键合二氧化硅,聚合树脂和混合模式离子树脂。四种吸附剂(C18,改性聚苯乙烯-二乙烯基苯树脂和两种混合模式离子树脂)的组合可获得最佳的萃取结果,因此,具有最佳的检测覆盖率,这可通过其互补的保留机制来解释。但是,某些吸附剂本身就具有很高的检测覆盖率,就像C18一样,它可以保留几乎83%的所有检测到的实体。考虑到这些吸附剂对之间的互补性(C18和带有混合模式离子型树脂的聚苯乙烯-二乙烯基苯树脂),设计了双柱SPE-LC-MS / MS配置用于血清分析。这些配置允许将检测覆盖率提高到使用所有测试吸附剂检测到的分子特征总数的91%。 SPE-LC-MS / MS策略的另一个好处是,与蛋白质沉淀以及用甲醇和氯仿进行分馏相比,灵敏度得到了提高。因此,在基于SPE的方法中,相对于代谢物提取的两阶段方案,平均预浓系数为10-75。

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