Improved LC-MS detection of opioids, amphetamines, and psychedelics using TrEnDi

18 September 2024, Version 1
This content is a preprint and has not undergone peer review at the time of posting.

Abstract

Substances of misuse are becoming increasingly difficult to analyze as unique methods of smuggling are adopted and due to the rapid emergence of new psychoactive substances, increasing the pool of compounds to characterize and identify. Technologies such as gas chromatography and liquid chromatography coupled to mass spectrometry (MS) represent the gold standard for accurate and robust analysis, with on-site ambient- and portable-MS systems providing rapid methods of drug screening and testing. For many samples containing residual analyte quantities, methods to improve sensitivity through chemical derivatization are critical for accurate determination. Herein, we demonstrate for the first time the use of trimethylation enhancement using diazomethane (TrEnDi) to improve the MS-based sensitivity of 13 different drugs of misuse. All analytes were successfully permethylated, with 11 demonstrating improved analytical characteristics from TrEnDi with MS sensitivity enhancements of 1.2–24.2-fold and increases in reversed-phase chromatographic retention. Derivatization using 13C-isotopically labelled TrEnDi reagents were used to successfully resolve isobaric interference issues between three pairs of controlled substances. The sensitivity of a TrEnDi-modified analyte was increased several orders of magnitude using an unconventional aprotic solvent system for electrospray ionization. Finally, TrEnDi was employed to boost the sensitivity of morphine in a real urine matrix. Our results demonstrate a percent recovery of 103.1% and a sensitivity enhancement of 2.4-fold, demonstrating versatility and applicability of TrEnDi to pre-existing analytical workflows for trace analysis.

Keywords

opioids
amphetamines
psychedelics
TrEnDi
diazomethane
mass spectrometry
HPLC

Supplementary materials

Title
Description
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Title
Supporting information for improved LC-MS detection of opioids, amphetamines, and psychedelics using TrEnDi
Description
Supporting information file for main manuscript containing additional figures, as well as an additional table and scheme.
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