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Trapped ion mobility mass spectrometry of new psychoactive substances: Isomer-specific identification of ring-substituted cathinones

Research output: Contribution to JournalArticleAcademicpeer-review

Abstract

New psychoactive substances (NPS) are synthetic derivatives of illicit drugs designed to mimic their psychoactive effects. NPS are typically not controlled under drug acts or their legal status depends on their molecular structure. Discriminating isomeric forms of NPS is therefore crucial for forensic laboratories. In this study, a trapped ion mobility spectrometry time-of-flight mass spectrometry (TIMS-TOFMS) approach was developed for the identification of ring-positional isomers of synthetic cathinones, a class of compounds representing two-third of all NPS seized in Europe in 2020. The optimized workflow features narrow ion-trapping regions, mobility calibration by internal reference, and a dedicated data-analysis tool, allowing for accurate relative ion-mobility assessment and high-confidence isomer identification. Ortho-, meta- and para-isomers of methylmethcathinone (MMC) and bicyclic ring isomers of methylone were assigned based on their specific ion mobilities within 5 min, including sample preparation and data analysis. The resolution of two distinct protomers per cathinone isomer added to the confidence in identification. The developed approach was successfully applied to the unambiguous assignment of MMC isomers in confiscated street samples. These findings demonstrate the potential of TIMS-TOFMS for forensic case work requiring fast and highly-confident assignment cathinone-drug isomers in confiscated samples.

Original languageEnglish
Article number341276
Pages (from-to)1-7
Number of pages7
JournalAnalytica Chimica Acta
Volume1264
Early online date26 Apr 2023
DOIs
Publication statusPublished - 11 Jul 2023

Bibliographical note

Funding Information:
Tijmen S. Bos acknowledges the UNMATCHED project, which is supported by BASF , DSM and Nouryon , and receives funding from the Dutch Research Council ( NWO ) in the framework of the Innovation Fund for Chemistry and from the Ministry of Economic Affairs in the framework of the “PPS-toeslagregeling”.

Publisher Copyright:
© 2023 The Authors

Funding

Tijmen S. Bos acknowledges the UNMATCHED project, which is supported by BASF , DSM and Nouryon , and receives funding from the Dutch Research Council ( NWO ) in the framework of the Innovation Fund for Chemistry and from the Ministry of Economic Affairs in the framework of the “PPS-toeslagregeling”.

UN SDGs

This output contributes to the following UN Sustainable Development Goals (SDGs)

  1. SDG 10 - Reduced Inequalities
    SDG 10 Reduced Inequalities
  2. SDG 16 - Peace, Justice and Strong Institutions
    SDG 16 Peace, Justice and Strong Institutions

Keywords

  • Ion mobility
  • Isomers
  • Methylmethcathinone
  • New psychoactive substances
  • TIMS-TOFMS

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