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聚焦于 5F-MDMB-PICA、4F-MDMB-BICA 合成大麻素及其在分析和药理学方面的主要代谢物。

Focusing on the 5F-MDMB-PICA, 4F-MDMB-BICA synthetic cannabinoids and their primary metabolites in analytical and pharmacological aspects.

机构信息

Laboratory of Chemical Biology, Institute of Biochemistry, Biological Research Centre, Temesvári krt. 62, Szeged, Hungary; Department of Medical Chemistry, Albert Szent-Györgyi Medical School, University of Szeged, Dóm tér 8, Szeged, Hungary.

Institute of Pharmaceutical Analysis, Faculty of Pharmacy, University of Szeged Somogyi, utca 4., Szeged, Hungary.

出版信息

Toxicol Appl Pharmacol. 2023 Jul 1;470:116548. doi: 10.1016/j.taap.2023.116548. Epub 2023 May 12.

Abstract

Nowadays, more and more new synthetic cannabinoids (SCs) appearing on the illicit market present challenges to analytical, forensic, and toxicology experts. For a better understanding of the physiological effect of SCs, the key issue is studying their metabolomic and psychoactive properties. In this study, our validated targeted reversed phase UHPLC-MS/MS method was used for determination of urinary concentration of 5F-MDMB-PICA, 4F-MDMB-BICA, and their primary metabolites. The liquid-liquid extraction procedure was applied for the enrichment of SCs. The pharmacological characterization of investigated SCs were studied by radioligand competition binding and ligand stimulated [S]GTPγS binding assays. For 5F-MDMB-PICA and 4F-MDMB-BICA, the median urinary concentrations were 0.076 and 0.312 ng/mL. For primary metabolites, the concentration range was 0.029-881.02* ng/mL for 5F-MDMB-PICA-COOH, and 0.396-4579* ng/mL for 4F-MDMB-BICA-COOH. In the polydrug aspect, the 22 urine samples were verified to be abused with 6 illicit drugs. The affinity of the metabolites to CB1R significantly decreased compared to the parent ligands. In the GTPγS functional assay, both 5F-MDMB-PICA and 4F-MDMB-BICA were acting as full agonists, while the metabolites were found as weak inverse agonists. Additionally, the G-protein stimulatory effects of the full agonist 5F-MDMB-PICA and 4F-MDMB-BICA were reduced by metabolites. These results strongly indicate the dose-dependent CB1R-mediated weak inverse agonist effects of the two butanoic acid metabolites. The obtained high concentration of main urinary metabolites of 5F-MDMB-PICA and 4F-MDMB-BICA confirmed the relevance of their routine analysis in forensic and toxicological practices. Based on in vitro binding assays, the metabolites presumably might cause a lower psychoactive effect than parent compounds.

摘要

如今,越来越多的新型合成大麻素(SCs)出现在非法市场上,给分析、法医和毒理学专家带来了挑战。为了更好地了解 SCs 的生理效应,关键问题是研究它们的代谢组学和精神活性特性。在这项研究中,我们验证的靶向反相 UHPLC-MS/MS 方法用于测定尿液中 5F-MDMB-PICA、4F-MDMB-BICA 及其主要代谢物的浓度。采用液液萃取程序富集 SCs。通过放射性配体竞争结合和配体刺激 [S]GTPγS 结合试验研究了所研究的 SCs 的药理学特征。对于 5F-MDMB-PICA 和 4F-MDMB-BICA,尿液中浓度的中位数分别为 0.076 和 0.312ng/mL。对于主要代谢物,5F-MDMB-PICA-COOH 的浓度范围为 0.029-881.02ng/mL,4F-MDMB-BICA-COOH 的浓度范围为 0.396-4579ng/mL。在多药物滥用方面,22 个尿液样本被证实同时滥用了 6 种非法药物。与母体配体相比,代谢物对 CB1R 的亲和力显著降低。在 GTPγS 功能测定中,5F-MDMB-PICA 和 4F-MDMB-BICA 均作为完全激动剂,而代谢物则表现为弱反向激动剂。此外,完全激动剂 5F-MDMB-PICA 和 4F-MDMB-BICA 的 G 蛋白刺激作用被代谢物减弱。这些结果强烈表明,两种丁酸代谢物具有剂量依赖性的 CB1R 介导的弱反向激动剂作用。5F-MDMB-PICA 和 4F-MDMB-BICA 的主要尿液代谢物浓度高,证实了其在法医和毒理学实践中常规分析的相关性。基于体外结合试验,代谢物可能会导致比母体化合物更低的精神活性作用。

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