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Implementation of a community-based LC-UV drug checking service: promising preliminary findings on feasibility and validity.

Nicolas Fabresse, Eurydice Papias, Alma Heckenroth, Victor Martin, Daniel Allemann, Perrine Roux

Harm reduction journal October 18, 2024 DOI: 10.1186/s12954-024-01098-4 via PubMed

Summary

AI-generated from the abstract

Drug checking services use analytical methods to identify substances in samples from people who use drugs. A quantitative LC-UV method was cross-validated against a reference LC-HRMS method at the DrugLab in Marseille, France. Across 102 samples, differences between the two methods for each molecule were ≤20%, with significant correlations for cocaine, ketamine, MDMA, heroin, amphetamine, caffeine, acetaminophen, and levamisole. LC-HRMS gave lower concentrations for cocaine and acetaminophen but higher values for other substances. The results demonstrate that LC-UV is accurate and reliable for simple drug matrices in a harm reduction context, though ongoing proficiency testing is needed to monitor accuracy over time.

Study at a glance

Characteristics Cross-validation study Qualitative Peer reviewed
Sample size 102
Population Drug samples provided by people who use drugs to the DrugLab service in Marseille, France
Keywords Cross-validation Drug checking Harm reduction Lc-hrms Lc-uv
Citations 3
Key finding The LC-UV method at DrugLab produced results within 20% of the reference LC-HRMS method for all analyzed molecules, with significant correlations for most substances, indicating LC-UV is accurate and reliable for drug checking in a harm reduction context.

Abstract

The increasing diversity of psychoactive substances on the unregulated drug market poses significant health, psychological, and social risks to people who use drugs (PWUD). To address these risks, various harm reduction (HR) policies have been implemented, including drug checking services (DCS). Many analytical methods are used for DCS. While qualitative methods (e.g., thin layer chromatography, spectroscopy) are easier to implement, they are not as accurate as quantitative methods (e.g., LC-UV, LC-MS). Some HR programmes have implemented high-performance liquid chromatography coupled with UV detection (LC-UV). This article presents the cross-validation of this quantitative method with a reference liquid chromatography coupled with high resolution mass spectrometry (LC-HRMS) method. Drug samples were provided by PWUD to a DCS called DrugLab in Marseille, France. The samples were weighed and prepared through dissolution in methanol, followed by ultrasonic bathing. Samples were analysed onsite using LC-UV analysis. They were then subsequently analysed with the reference LC-HRMS method. The LC-UV instrument in DrugLab was calibrated after being purchased; analysis of standard solutions was routinely performed once a month and after maintenance operations. For the LC-HRMS instrument, calibration and quality control procedures followed European Medicines Agency (EMA) guidelines. Statistical analyses were conducted including Spearman correlation tests using IBM® SPSS® Statistics version 20. A total of 102 samples representing different product classes and cutting agents were cross-validated. Differences between both analyses methods for each molecule analysed were ≤ 20%, with significant correlations between both methods' results for most substances. Notably, LC-HRMS provided lower concentration values for cocaine and acetaminophen, whereas it provided higher values for other substances. Correlations were significant for cocaine, ketamine, MDMA, heroin, amphetamine, caffeine, acetaminophen, and levamisole. This study demonstrates that the results provided by DrugLab were accurate and reliable, making LC-UV an adaptable, stable, and suitable analytical method for simple matrices like drugs in a DCS context. However, this cross validation does not guarantee accuracy over time. A proficiency test project in HR laboratories across France is currently under development in order to address potential drifts in LC-UV accuracy.

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