Development of a Robust Platform for Infrared Ion Spectroscopy: A New Addition to the Analytical Toolkit for Enhanced Metabolite Structure Elucidation
Teun van Wieringen, Arnaud Lubin, Rianne van Outersterp, Jonathan Martens, Eric van Beelen, Jos Oomens, Filip Cuyckens, Giel Berden

TL;DR
This paper introduces a new infrared ion spectroscopy platform that improves metabolite structure analysis in drug development.
Contribution
A robust, compact IRIS platform is developed for reliable and efficient metabolite structure elucidation without recalibration.
Findings
The IRIS platform produced highly reproducible spectra over one year without recalibration.
IRIS successfully identified glucuronidation and oxidation sites in drug molecules.
The platform's high laser power and repetition rate enabled resolution of all spectral features.
Abstract
Metabolite identification is essential in drug metabolism and pharmacokinetics (DMPK) studies and plays a pivotal role throughout the drug development process, from informing drug design to evaluating safety and efficacy. Mass spectrometry (MS) is the analytical technique of choice for characterizing metabolites due to its selectivity and sensitivity, particularly when paired with chromatographic methods. However, MS encounters challenges in structural characterization. This study employs infrared ion spectroscopy (IRIS) to differentiate isomeric compounds and demonstrates the robustness of a newly developed IRIS platform. We showcase applications in metabolite identification by determining the site of glucuronidation and phase I oxidation in selected drug molecules. Employing density functional theory for spectral prediction, IRIS decreases reliance on reference standards and…
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Taxonomy
TopicsMass Spectrometry Techniques and Applications · Analytical Chemistry and Chromatography · Metabolomics and Mass Spectrometry Studies
