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Updated: Nov 28, 2025

Large Scale Non-targeted Metabolomic Profiling of Serum by Ultra Performance Liquid Chromatography-Mass Spectrometry UPLC-MS
Published on: March 14, 2013
Probabilistic framework for integration of mass spectrum and retention time information in small molecule
Eric Bach1, Simon Rogers2, John Williamson2
1Department of Computer Science, School of Science, Aalto University, Espoo, Finland.
Motivation:
Identification of small molecules in a biological sample remains a major bottleneck in molecular biology, despite a decade of rapid development of computational approaches for predicting molecular structures using mass spectrometry (MS) data. Recently, there has been increasing interest in utilizing other information sources, such as liquid chromatography (LC) retention time (RT), to improve identifications solely based on MS information, such as precursor mass-per-charge and tandem mass spectrometry (MS2).
Results:
We put forward a probabilistic modelling framework to integrate MS and RT data of multiple features in an LC-MS experiment. We model the MS measurements and all pairwise retention order information as a Markov random field and use efficient approximate inference for scoring and ranking potential molecular structures. Our experiments show improved identification accuracy by combining MS2 data and retention orders using our approach, thereby outperforming state-of-the-art methods. Furthermore, we demonstrate the benefit of our model when only a subset of LC-MS features has MS2 measurements available besides MS1.
Availability And Implementation:
Software and data are freely available at https://github.com/aalto-ics-kepaco/msms_rt_score_integration.
Supplementary Information:
Supplementary data are available at Bioinformatics online.
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