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High-Resolution Mass Spectrometry Quantification: Impact of Differences in Data Processing of Centroid and Continuum Data

机译:高分辨率质谱定量:质心和连续数据数据处理差异的影响

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摘要

High-resolution mass spectrometry (HRMS) in full scan mode acquires all ions present in the sample of interest offering a lot of qualitative information. This, in combination with the improved performance of the new generation HRMS systems, triggers more (bio) analysts to switch from triple quad MS systems to HRMS for quantitative analysis. Quantitative processing of HRMS data is performed based on narrow mass extraction windows rather than on nominal mass product ion chromatograms (SRM or MRM). Optimal processing of HRMS data requires different considerations and software tools and can have an impact on data processing and final results. The selection of centroid versus continuum/profile data for processing, selection of the optimal narrow mass extraction window, using theoretical versus measured accurate mass for the extraction of the ion chromatograms as well as differences in calculations and data handling residing in the different vendor software packages are tackled in the presented manuscript. These differences are illustrated on HRMS data acquired for the same plasma samples on three different platforms, i.e., a Sciex QToF, a Waters QToF, and a Thermo Orbitrap system, and processed in four different software packages, i.e., Sciex Analyst (R) TF, Waters Masslynx, Waters Unifi, and Thermo Xcalibur. The impact of these differences on quantitative HRMS performance was evaluated on calibration curves of eight small molecule compounds in plasma using four different ways of processing. Simple guidelines are provided for the selection of an optimal mass extraction window for continuum and centroided data.
机译:全扫描模式中的高分辨率质谱(HRMS)获取出现的所有离子,提供提供许多定性信息的兴趣样本。这与新一代HRMS系统的改进性能相结合,触发更多(BIO)分析师将从三Quad MS系统切换到HRM以进行定量分析。基于窄的质量萃取窗而不是标称大量产品离子色谱(SRM或MRM)进行HRMS数据的定量处理。 HRMS数据的最佳处理需要不同的考虑因素和软件工具,并且可能对数据处理和最终结果产生影响。质心的选择与加工,选择最佳窄块萃取窗口,使用理论值与测量的离子色谱图提取的精确质量以及居中驻留在不同供应商软件包中的计算和数据处理的差异在呈现的稿件中解决。这些差异在三个不同平台上的相同等离子体样本中获取的HRMS数据,即SCIEX QTOF,Waters QTOF和Thermo Orbitrap系统中获得的HRMS数据,并在四种不同的软件包中处理,即Sciex分析师(R)TF ,Waters Masslynx,Waters Unifi和Thermo Xcalibur。这些差异对定量HRMS性能的影响是在使用四种不同的加工方式的血浆中八个小分子化合物的校准曲线进行评估。提供简单的指导方针,用于选择用于连续核和以中心数据的最佳质量提取窗口。

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