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Solvent-free parallel artificial liquid membrane extraction for drugs of abuse in plasma samples using LC-MS/MS.

André Luis Fabris, Stig Pedersen-Bjergaard, Elisabeth Leere Øiestad, Giordano Novak Rossi, Jaime E Cecílio Hallak, Rafael Guimarães Dos Santos, José Luiz Costa, Mauricio Yonamine

Analytica chimica acta May 1, 2024 DOI: 10.1016/j.aca.2024.342387 via PubMed

Summary

AI-generated from the abstract

A 96-well plate extraction method called parallel artificial liquid membrane extraction (PALME) can be made greener by replacing organic solvents with an essential oil. Fourteen essential oils were tested; the blend smart & sassy gave the best recovery for multiple drugs of abuse in plasma, including amphetamines, synthetic cathinones, and designer benzodiazepines. After optimization, the method achieved a linear range of 1-100 ng/mL, accuracy within ±16.4%, and limits of detection between 0.1 and 0.75 ng/mL. The technique eliminated hazardous organic solvents, provided effective sample clean-up, and met international validation guidelines, offering a sustainable tool for toxicological analysis.

Study at a glance

Characteristics Method development and validation Peer reviewed
Population Human plasma samples
Keywords Drugs of abuse Lc-ms/ms New psychoactive substances Palme Drug testing
Citations 9
Key finding An essential oil (smart & sassy) can serve as a green, solvent-free supported liquid membrane in PALME for extracting multiple classes of drugs of abuse from plasma, achieving acceptable validation parameters and reproducibility across production batches.

Abstract

Parallel artificial liquid membrane extraction (PALME) is a 96-well plate setup variant of liquid-phase microextraction. Basic or acidic analytes are extracted in neutral form from the sample, through a supported liquid membrane (SLM), and into aqueous acceptor. PALME is already considered a green extraction technique, but in the current conceptual work, we sought to make it even greener by replacing the use of organic solvents with essential oils (EO). PALME was combined with LC-MS/MS for analysis of plasma samples and multiple drugs of abuse with toxicological relevance (amphetamines, phenethylamines, synthetic cathinones, designer benzodiazepines, ayahuasca alkaloids, lysergic acid diethylamide, and ketamine). Fourteen EO were compared to organic solvents frequently used in PALME. The EO termed smart & sassy yielded the best analyte recovery for all drugs studied and was thus selected as SLM. Then, factorial screening and Box-Behnken were employed to optimize the technique. The extraction time, concentration of base, sample volume, and percentage of trioctylamine significantly impacted analyte recovery. The optimum values were defined as 120 min, 10 mmol/L of NaOH, 150 μL, and 0%, respectively. Once optimized, validation parameters were 1-100 ng mL-1 as linear range, accuracy ±16.4%, precision >83%, 1 ng mL-1 as limit of quantitation, 0.1-0.75 ng mL-1 as limit of detection, matrix effect <20%, and recovery 20-106%. Additionally, EO purchased from different production batches were tested and achieved acceptable reproducibility. Data were in compliance with requirements set by internationally accepted validation guidelines and the applicability of the technique was proven using authentic samples. In this study, the use of an EO provided a solvent-free sample preparation technique suited to extract different classes of drugs of abuse from plasma samples, dismissing the use of hazardous organic solvents. The method also provided excellent sample clean-up, thus being a simple and efficient tool for toxicological applications that is in agreement with the principles of sustainable chemistry.

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