Department of Excellence-Biomedical Sciences and Public Health, Università Politecnica delle Marche, 60121 Ancona, Italy.
Servei de Farmacologia Clínica, Hospital Universitari Germans Trias i Pujol (HUGTiP, IGTP)- Universitat Autònoma de Barcelona, Unitat Docent HUGTiP, Badalona, Spain.
J Chromatogr B Analyt Technol Biomed Life Sci. 2023 Aug 1;1228:123824. doi: 10.1016/j.jchromb.2023.123824. Epub 2023 Jul 7.
In the present study an enantioselective high-performance liquid chromatography-tandem mass spectrometry (LC-MS/MS) method was developed for the first time for quantitative determination of the recreational drug of abuse methylone and its major metabolites in oral fluid. The simultaneous chemo- and enantioseparation of methylone and its major metabolites was performed on a polysaccharide-based chiral column based on amylose tris(5-chloro-3-methylphenylcarbamate) as chiral selector (Lux i-Amylose-3) with methanol containing 0.4 % (v/v) aqueous ammonium hydroxide as mobile phase. The time required for enantioselective analysis of methylone and its 2 major metabolites was 15 min. This method was fully validated following the Organization of Scientific Area Committees (OSAC) for Forensic Science guidelines. This method was applied for the enantioselective determination of methylone and its metabolites in oral fluid and enantioselectivity in metabolism and pharmacokinetic of the parent compound and metabolites was observed. While the first enantiomer of methylone was found at higher concentration, both metabolites shown greater concentration for the second enantiomer. The results revealed that MET undergoes an enantioselective biotransformation to its metabolites HMMC and MDC, with S-(-)-MET more rapidly metabolized and eliminated from the body.
在本研究中,首次建立了一种用于检测口腔液中滥用药物甲卡西酮及其主要代谢物的对映选择性高效液相色谱-串联质谱(LC-MS/MS)方法。采用基于淀粉三(5-氯-3-甲基苯基氨基甲酸酯)的多糖手性柱(Lux i-Amylose-3)作为手性选择剂,甲醇中含有 0.4%(v/v)的水氨作为流动相,实现了甲卡西酮及其主要代谢物的化学和对映选择性同时分离。对映选择性分析甲卡西酮及其 2 种主要代谢物的时间为 15 分钟。该方法完全按照科学领域委员会(OSAC)法医科学指南进行了验证。该方法应用于口腔液中甲卡西酮及其代谢物的对映选择性测定,并观察到母体化合物和代谢物的代谢和药代动力学中的对映选择性。虽然甲卡西酮的第一个对映异构体的浓度较高,但两种代谢物的第二个对映异构体的浓度更高。结果表明,MET 对映选择性生物转化为其代谢物 HMMC 和 MDC,S-(-)-MET 更快地代谢并从体内消除。