Forensic Tracing of Unknown Compounds at the Human-Environment Interface: An All-in-One LC-HRMS Strategy Guided by a
Alix Munoz1,2, Jeanne Brotier2, Laetitia Barthe2
1Spectrométrie de Masse Biologique et Protéomique SMBP, ESPCI Paris, PSL University, CNRS UAR 2051, 10 Rue Vauquelin, 75231 Paris, France.
Abstract:
The detection and identification of unknown organic pollutants in complex environmental and forensic samples remain major analytical challenges. While numerous finely tuned liquid chromatography-mass spectrometry (LC-MS) methods exist for specific compound classes, no transversal strategy has been proposed to date. Here we propose an "all-in-one" LC-MS strategy that is robust enough to handle the unknown and broad enough to encompass multiple chemical families within a single analytical framework. Our approach combines a structured, literature-derived analysis of LC-based methods with experimental validation on model mixtures and real forensic samples. From a systematic review of hundreds of reported conditions, we established a structured database of key LC parameters for selected pesticides, household products, and dyes. This enabled the design of a cross-family LC-MS method validated on representative compounds and successfully applied to authentic casework, including suspicious delivery packages and household cleaning agents in forensic investigations. Rather than relying on novel instrumentation, this work provides the first literature-driven, experimentally validated workflow for broad-spectrum, nontargeted LC-MS detection. This strategy, widely applicable across environmental and forensic applications, is a valuable resource for harmonization, spectral library growth, and automated annotation. Moreover, the compiled reference database of chromatographic conditions serves as a unique tool for method development in the community.
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