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首页> 外文期刊>Journal of the American Society for Mass Spectrometry >Mass Accuracy Check Using Common Background Peaks for Improving Metabolome Data Quality in Chemical Isotope Labeling LC-MS
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Mass Accuracy Check Using Common Background Peaks for Improving Metabolome Data Quality in Chemical Isotope Labeling LC-MS

机译:使用常见的背景峰来检查化学同位素标记LC-MS中的代谢数据质量的常见背景峰值检查

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摘要

Chemical isotope labeling (CIL) LC-MS is a highly sensitive and quantitative method for metabolome analysis. Because of a large number of peaks detectable in a sample and the need of running many samples in a metabolomics project, any significant change in mass measurement accuracy during the whole period of running samples can adversely affect the downstream peak alignment and quantitative analysis. Herein, we report a rapid method to check the mass accuracy of individual spectra in each CIL LC-MS run in order to flag up any run containing spectra with accuracy drift that falls outside the expected error. The flagged run may be re-run or discarded before merging with other runs for peak alignment and analysis. This method is based on the observation that some background signals are commonly detected in almost all spectra collected in CIL LC-MS runs. A mass accuracy check (MAC) software program has been developed to first find the common background mass peaks and then use them as mass references to calculate any mass shifts over the course of multiple sample runs. Using a metabolome dataset of 324 human cerebrospinal fluid (CSF) samples and 35 quality control (QC) samples produced by CIL LC-MS, we show that this accuracy check method can streamline the initial raw data processing for downstream analysis in metabolomics.
机译:化学同位素标记(CIL)LC-MS是一种高敏感和定量的代谢物分析方法。由于样本中可检测到大量峰值,并且需要在代谢组织项目中运行许多样品,因此在运行样本的整个时期的质量测量精度的任何显着变化都可能对下游峰值取向和定量分析产生不利影响。这里,我们报告了一种快速方法来检查每个CIL LC-MS运行中单个光谱的质量准确性,以便以落在预期误差之外的精度漂移的任何运行频谱。在与其他运行中合并以进行峰对齐和分析之前,可以重新运行或丢弃标记的运行。该方法基于观察结果,即在CIL LC-MS运行中的几乎所有频谱中通常检测到一些背景信号。已经开发了一种质量准确性检查(MAC)软件程序首先找到常见的背景质量峰,然后使用它们作为质量参考来计算多个样本运行过程中的任何质量移位。使用324人脑脊液(CSF)样本的代谢物数据集和由CIL LC-MS产生的35质量控制(QC)样本,我们表明这种精度检查方法可以简化代谢组中下游分析的初始原始数据处理。

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