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Evaluation of Accurate Mass and Relative Isotopic Abundance Measurements in the LTQ-Orbitrap Mass Spectrometer for Further Metabolomics Database Building

机译:LTQ-Orbitrap质谱仪中准确质量和相对同位素丰度测量的评估,用于进一步的代谢组学数据库构建

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Recently, high-resolution mass spectrometry has been largely employed for compound identification, thanks to accurate mass measurements. As additional information, relative isotope abundance (RIA) is often needed to reduce the number of candidates prior to tandem MS~n. Here, we report on the evaluation of the LTQ-Orbitrap, in terms of accurate mass and RIA measurements for building further metabolomics spectral databases. Accurate mass measurements were achieved in the ppm range, using external calibration within 24 h, and remained at <5 ppm over a one-week period. The experimental relative abundances of (M+1) isotopic ions were evaluated in different data sets. First of all, 137 solutions of commercial compounds were analyzed by flow injection analysis in both the positive and negative ion modes. It was found that the ion abundance was the main factor impacting the accuracy of RIA measurements. It was possible to define some intensity thresholds above which errors were systematically <20percent of their theoretical values. The same type of results were obtained with analyses from two biological media. Otherwise, no significant effect of ion transmission between the LTQ ion trap and the Orbitrap analyzer on RIA measurement errors was found, whereas the reliability of RIA measurements was dramatically improved by reducing the mass detection window. It was also observed that the signal integration method had a significant impact on RIA measurement errors, with the most-reliable results being obtained with peak height integrations. Finally, automatic integrations using the data preprocessing software XCMS and MZmine gave results similar to those obtained by manual integration, suggesting that it is relevant to use the RIA information in automatic elemental composition determination software from metabolomic peak tables.
机译:最近,由于精确的质量测量,高分辨率质谱已广泛用于化合物鉴定。作为附加信息,通常需要相对同位素丰度(RIA)来减少串联MS_n之前的候选物数量。在这里,我们报告了有关LTQ-Orbitrap的评估,以准确的质量和RIA测量为基础,以建立进一步的代谢组学光谱数据库。使用外部校准在24小时内在ppm范围内实现了精确的质量测量,并在一周内保持在<5 ppm的水平。在不同的数据集中评估了(M + 1)同位素离子的实验相对丰度。首先,通过流动注射分析在正离子和负离子模式下分析了137种商品化合物的溶液。已发现离子丰度是影响RIA测量准确性的主要因素。可以定义一些强度阈值,在这些阈值之上,误差系统地小于其理论值的20%。通过两种生物介质的分析获得了相同类型的结果。否则,没有发现LTQ离子阱和Orbitrap分析仪之间的离子传输对RIA测量误差有显着影响,而RIA测量的可靠性通过减小质量检测窗口而显着提高。还可以观察到,信号积分方法对RIA测量误差有重大影响,通过峰高积分可以获得最可靠的结果。最后,使用数据预处理软件XCMS和MZmine进行的自动积分得出的结果与通过手动积分获得的结果相似,这表明在代谢组学峰表的自动元素组成确定软件中使用RIA信息是相关的。

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