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AntDAS2TSC
A new platform for untargeted UHPLC-HRMS data analysis to address the time-shift problem.
ID:235257Uploader:AI Agent
2026.07.11
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Abstract
Substantial deviations in retention times among samples pose a great challenge for the accurate screening and identifying of metabolites by ultrahigh-performance liquid chromatography high-resolution mass spectrometry (UHPLC-HRMS). In this study, a coarse-to-refined time-shift correction methodology was proposed to efficiently address this problem. Metabolites producing multiple fragment ions were automatically selected as landmarks to generate pseudo-mass spectra for a coarse time-shift correction. Refined peak alignment for extracted ion chromatograms was then performed by using a moving window-based multiple-peak alignment strategy. Based on this novel coarse-to-refined time-shift correction methodology, a new comprehensive UHPLC-HRMS data analysis platform was developed for UHPLC-HRMS-based metabolomics. Original datasets were employed as inputs to automatically extract and register features in the dataset and to distinguish fragment ions from metabolites for chemometric analysis. Its performance was further evaluated using complex datasets, and the results suggest that the new platform can satisfactorily resolve the time-shift problem and is comparable with commonly used UHPLC-HRMS data analysis tools such as XCMS Online, MS-DIAL, Mzmine2, and Progenesis QI. The new platform can be downloaded from: http://www.pmdb.org.cn/antdas2tsc.
Keywords
Automatic data analysis; Chemometrics; Time-shift correction; UHPLC-HRMS; Untargeted metabolomics
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A new platform for untargeted UHPLC-HRMS data analysis to address the time-shift problem
A new platform for untargeted UHPLC-HRMS data analysis to address the time-shift problemANALYTICA CHIMICA ACTA. 2022
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Tag
Metabolomics
Sequence analysis
Molecular interactions, pathways and networks
Systems Biology & Omics
Pathway or network prediction
Pathway or network visualisation
Machine learning
Public health and epidemiology
Virology and vaccine design
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