Validation of an analytical method for the simultaneous determination of 16 drugs and metabolites in hair in the context of driving license granting
FORENSIC SCIENCE INTERNATIONAL
Authors: Muller, Victoria Vendramini; Hahn, Roberta Zilles; Feltraco Lizot, Lilian de Lima; Schneider, Anelise; da Silva, Cristiane Pereira; Gerbase, Fernando Engel; Pereira, Danilo; Linden, Rafael; Antunes, Marina Venzon
Abstract
The use of psychoactive substances has been associated with increased risk for traffic accidents. Hair testing has become a routine practice in clinical and forensic toxicological laboratories, with a unique perspective in the investigation of drug consumption. The study aimed to develop and validate a UHPLCMS/MS method for the determination of multiple drugs in hair, to be used for toxicological examination in driving license granting. Sample preparation was a one-step liquid extraction of milled hair with methanol, which was incubated for 15 h at 50 degrees C. The chromatographic separation was performed in a reversed phase column, with a run time of 2.2 min. Measured compounds were cocaine, benzoylecgonine, norcocaine, anhydroecgonine methyl ester, cocaethylene, amphetamine, methamphetamine, methylenedioxyamphetamine, methylenedioxymethamphetamine, fenproporex, amfepramone, mazindol, codeine, morphine, 6-monoacetylmorphine, and tetrahydrocannabinol. The assay was linear for all substances (r>0.99), accurate (86.63-105.87 %), and precise, with a cv ranging from 1.9-13.5 % for intra-assay and 3.3-14.3 % for inter-assay. There was no significant carry over effect and the internal standard corrected matrix effect was minimal. The relative uncertainty percentages were below 9 % for all the substances at cut-off values. The method was successfully applied to 50 hair samples from injured drivers, with 12 % of positivity, including cocaine, MDMA and THC. (C) 2020 Elsevier B.V. All rights reserved.
High-Throughput Qualitative and Quantitative Drug Checking by MALDI HRMS
FRONTIERS IN CHEMISTRY
Authors: Joye, Timothee; Widmer, Christele; Morger Megevand, Roxane; Longere, Serge; Augsburger, Marc; Thomas, Aurelien
Abstract
Illicit drugs are a global health problem, since both their acute and chronic consumption have negative impacts on the drug user's health. Drug checking facilities are receiving growing interest as they allow drug users to chemically analyze their product prior to consumption to assess the presence of adulterants or other non-expected substances. Such harm reduction programs allow the reduction of the risks associated with drug consumption without encouraging it. In particular, the emergence of new psychoactive substances (NPS) emphasizes the risk for the population increasing the diversity and the lability of illicit drugs on the market. Analytical developments are required to catch up with this rapid evolution and reduce the potential harm caused by such consumption. In this study, we developed a matrix-assisted laser desorption/ionization (MALDI) high-resolution mass spectrometry (HRMS) strategy for the high-throughput qualitative and quantitative analysis of drug checking samples. The use of online-based m/z cloud library for untargeted compound search improved the ability to identify unknown compounds. Sixty-seven drug checking samples were analyzed using this analytical strategy, allowing the detection of 10 designer drugs and several classical drugs of abuse (mainly cocaine and MDMA) as well as adulterants and contaminants. The results were then compared with routine analyses of the same samples using conventional approaches showing similar performance while removing the use of chromatographic separation thus resulting in a significant reduction of the time required for sample preparation and analysis. This study enlightens the potential of MALDI-HRMS as a high-throughput approach allowing to speed-up up to six times the identification and quantification of substances enabling to catch the fast changes on the drug of abuse market. This strategy could be an interesting alternative analytical approach, allowing better prevention and harm reduction for drug users.