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一种保留时间校准的迭代块移位方法,可保留气相色谱-质谱峰的形状和面积。

An iterative block-shifting approach to retention time alignment that preserves the shape and area of gas chromatography-mass spectrometry peaks.

作者信息

Chae Minho, Shmookler Reis Robert J, Thaden John J

机构信息

UALR/UAMS Joint Graduate Program in Bioinformatics, University of Arkansas at Little Rock, Little Rock, AR 72204, USA.

出版信息

BMC Bioinformatics. 2008 Aug 12;9 Suppl 9(Suppl 9):S15. doi: 10.1186/1471-2105-9-S9-S15.

Abstract

BACKGROUND

Metabolomics, petroleum and biodiesel chemistry, biomarker discovery, and other fields which rely on high-resolution profiling of complex chemical mixtures generate datasets which contain millions of detector intensity readings, each uniquely addressed along dimensions of time (e.g., retention time of chemicals on a chromatographic column), a spectral value (e.g., mass-to-charge ratio of ions derived from chemicals), and the analytical run number. They also must rely on data preprocessing techniques. In particular, inter-run variance in the retention time of chemical species poses a significant hurdle that must be cleared before feature extraction, data reduction, and knowledge discovery can ensue. Alignment methods, for calibrating retention reportedly (and in our experience) can misalign matching chemicals, falsely align distinct ones, be unduly sensitive to chosen values of input parameters, and result in distortions of peak shape and area.

RESULTS

We present an iterative block-shifting approach for retention-time calibration that detects chromatographic features and qualifies them by retention time, spectrum, and the effect of their inclusion on the quality of alignment itself. Mass chromatograms are aligned pairwise to one selected as a reference. In tests using a 45-run GC-MS experiment, block-shifting reduced the absolute deviation of retention by greater than 30-fold. It compared favourably to COW and XCMS with respect to alignment, and was markedly superior in preservation of peak area.

CONCLUSION

Iterative block-shifting is an attractive method to align GC-MS mass chromatograms that is also generalizable to other two-dimensional techniques such as HPLC-MS.

摘要

背景

代谢组学、石油与生物柴油化学、生物标志物发现以及其他依赖复杂化学混合物高分辨率分析的领域会生成包含数百万个检测器强度读数的数据集,每个读数都沿着时间维度(例如,化学物质在色谱柱上的保留时间)、光谱值(例如,化学物质衍生离子的质荷比)以及分析运行次数进行唯一标识。它们还必须依赖数据预处理技术。特别是,化学物质保留时间的运行间差异构成了一个重大障碍,在进行特征提取、数据缩减和知识发现之前必须加以克服。据报道(且根据我们的经验),用于校准保留时间的对齐方法可能会使匹配的化学物质未对齐、错误地对齐不同的化学物质、对输入参数的选定值过度敏感,并导致峰形和峰面积的扭曲。

结果

我们提出了一种用于保留时间校准的迭代块移位方法,该方法可检测色谱特征,并通过保留时间、光谱以及它们的纳入对对齐质量本身的影响来对其进行鉴定。质量色谱图两两对齐到一个选定为参考的色谱图。在使用45次运行的气相色谱 - 质谱实验进行的测试中,块移位将保留时间的绝对偏差降低了30倍以上。在对齐方面,它与COW和XCMS相比具有优势,并且在峰面积保留方面明显更优。

结论

迭代块移位是一种用于对齐气相色谱 - 质谱质量色谱图的有吸引力的方法,也可推广到其他二维技术,如高效液相色谱 - 质谱。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7635/2537566/ee16b83a41ce/1471-2105-9-S9-S15-1.jpg

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