FTMS Laboratory for Human Health Research, Department of Chemistry, North Carolina State University, Raleigh, North Carolina 27695, United States.
J Am Soc Mass Spectrom. 2023 Oct 4;34(10):2222-2231. doi: 10.1021/jasms.3c00178. Epub 2023 Aug 22.
Mass spectrometry imaging (MSI) is an analytical technique capable of measuring and visualizing the spatial distribution of thousands of ions across a sample. Measured ions can be putatively identified and annotated by comparing their mass-to-charge ratio (/) to a database of known compounds. For high-resolution, accurate mass (HRAM) imaging data sets, this is commonly performed by the annotation platform METASPACE. Annotations are reported with a metabolite-signal-match (MSM) score as a measure of the annotation's confidence level. However, the MSM scores reported by METASPACE often do not reflect a reasonable confidence level of an annotation and are not assigned consistently. The metabolite annotation confidence score (MACS) is an alternative scoring system based on fundamental mass spectrometry imaging metrics (mass measurement accuracy, spectral accuracy, and spatial distribution) to generate values that reflect the confidence of a specific annotation in HRAM-MSI data sets. Herein, the MACS system is characterized and compared to MSM scores from ions annotated by METASPACE.
质谱成像(MSI)是一种分析技术,能够测量和可视化样本中数千个离子的空间分布。通过将测量到的离子的质荷比(/)与已知化合物的数据库进行比较,可以对其进行推定识别和注释。对于高分辨率、精确质量(HRAM)成像数据集,通常通过注释平台 METASPACE 来完成注释。注释会报告代谢物信号匹配(MSM)分数作为注释置信度的度量。然而,METASPACE 报告的 MSM 分数通常不能反映注释的合理置信度,并且也没有一致地分配。代谢物注释置信度评分(MACS)是一种替代评分系统,基于基本的质谱成像指标(质量测量精度、光谱精度和空间分布)来生成反映 HRAM-MSI 数据集中特定注释置信度的值。本文中,对 MACS 系统进行了特征描述,并与 METASPACE 注释的离子的 MSM 分数进行了比较。