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Exploration advantages of data combination and partition: First chemometric analysis of liquid chromatography-mass spectrometry data in full scan mode with quadruple fragmentor voltages

机译:探讨数据组合和分区的优点:用四倍碎片仪电压全扫描模式中液相色谱 - 质谱数据的首先化学计量分析

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A novel soft strategy for combination and partition of mass spectra data recorded at different fragmentor voltages in full scan mode of a mass spectrometer was developed to generate abundant multi-way data. It is the first time that non-linear four-way and combined three-way LC-MS data have been obtained simultaneously in a single chromatographic run. This strategy ensures that each analyte can be ionized and detected at the most appropriate MS conditions (ionization modes, fragmentor voltages) and avoids a hard chromatographic segmentation in subsequent chemometric analysis. Two different experimental datasets were analyzed to validate the feasibility and applicability of this strategy. Some simple pretreatments were carried out before LC-MS analysis to prevent potential matrix effects. Proper chemometric tools were used to resolve three-way (partitioned data) and enhanced three-way LC-MS (combined data) data, respectively. The method was assessed by comparing the analytical results obtained from the same chemometric algorithm with both combined and partitioned datasets: (1) the combined data provided the best global overall resolution, higher sensitivity and more reliable results, (2) the partitioned data provided higher selectivity for some specific analytes. The results showed that the developed method could be a soft and ingenious tool to handle the unordered but information-rich raw LC-MS data. Moreover, the proposed strategy could take extra analytical advantages in terms of higher sensitivity and more reliable quantitative results when compared with LC-MS (with single fragmentor voltage) strategy and showed nearly the same capability in analytical quality as classic LC- MS/MS method. (C) 2020 Elsevier B.V. All rights reserved.
机译:开发了一种新的软策略,用于组合和分配质谱仪的不同扫描模式下的不同碎片电压的质谱数据,以产生丰富的多向数据。这是第一次在单个色谱运行中同时获得非线性四路和组合的三路LC-MS数据。该策略确保在最合适的MS条件(电离模式,碎片仪电压)下可以电离和检测到每个分析物,并避免随后的化学计量分析中的硬质色谱分段。分析了两个不同的实验数据集以验证该策略的可行性和适用性。在LC-MS分析之前进行了一些简单的预处理以防止潜在的基质效应。适用的化学计量工具用于解决三通(分区数据)和增强三通LC-MS(组合数据)数据。通过将从相同的化学计量算法与组合和分区数据集获得的分析结果进行评估来评估方法:(1)组合数据提供了最佳的全局总体分辨率,更高的灵敏度和更可靠的结果,(2)提供更高的分区数据某些特定分析物的选择性。结果表明,开发的方法可以是一种柔软而巧妙的工具,用于处理无序但信息丰富的原始LC-MS数据。此外,与LC-MS(单次碎片电压)策略相比,拟议的策略可以在更高的灵敏度和更可靠的定量结果方面采取额外的分析优势,并且在分析质量中显示出与经典LC-MS / MS方法几乎相同的能力。 (c)2020 Elsevier B.V.保留所有权利。

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