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In vitro toxicokinetics and analytical toxicology of three novel NBOMe derivatives: phase I and II metabolism, plasma protein binding, and detectability in standard urine screening approaches studied by means of hyphenated mass spectrometry

机译:三种新型Nbome衍生物的体外毒性和分析毒理学:II和II代谢,血浆蛋白结合和通过连字质谱法研究的标准尿液筛选方法中的可检测性

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摘要

Purpose Toxicokinetic studies are essential in clinical and forensic toxicology to understand drug-drug interactions, influence of individual polymorphisms, and elimination routes, as well as to evaluate targets for toxicological screening procedures. N-(2-Methoxybenzyl)-substituted phenethylamines (NBOMe analogues) intake has been associated with severe adverse reactions including deaths. 1-(1-Benzofuran-5-yl)-N-[(2-methoxyphenyl)methyl]propan-2-amine (5-APB-NBOMe), 2-(8-bromo-2,3,6,7-tetrahydrobenzo[1,2-b:4,5-b ']difuran-4-yl)-N-[(5-chloro-2-ethoxyphenyl)methyl]ethan-1-amine (2C-B-FLY-NB2EtO5Cl), and 2-(8-bromo-2,3,6,7-tetrahydrobenzo[1,2-b:4,5-b ']difuran-4-yl)-N-[(2-methoxyphenyl)methyl]ethan-1-amine (2C-B-FLY-NBOMe) are three emerging NBOMe analogues, which have encountered on the drugs of abuse market. So far, their toxicokinetic data are completely unexplored. Methods The study included mass spectrometry-based identification of phase I and II metabolites following exposure to the terminally differentiated human hepatocellular carcinoma cells (HepaRG). The determination of enzymes involved in the major phase I/II metabolic steps and determination of plasma protein binding (PPB) were done. Finally, the evaluation of the toxicological detectability by different hyphenated mass spectrometry techniques in standard urine screening approaches (SUSAs) was investigated. Results The compounds were extensively metabolized in HepaRG cells mainly via O-dealkylation, hydroxylation, glucuronidation, and combinations thereof. CYP1A2, 2D6, 2C8, 2C19, and 3A4, were involved in the initial reactions of all investigated compounds. Glucuronidation of the phase I metabolites-when observed-was mainly catalyzed by UGT1A9. The PPB of all compounds was determined to be > 85%. Only the high-resolution mass spectrometry-based SUSA allowed detection of all compounds in rat urine, but only via metabolites. Conclusions The toxicokinetic data provided by this study will help forensic and clinical toxicologists to reliably identify these substances in case of abuse and/or intoxication and will allow them a thorough risk assessment.
机译:目的有毒研究对于临床和法医学毒理学是必不可少的,以了解药物 - 药物相互作用,个体多态性的影响和消除途径,以及评估毒理学筛查程序的靶标。 N-(2-甲氧基苄基) - 取出的苯乙胺(NBOME类似物)摄入与含有死亡的严重不良反应有关。 1-(1-苯并呋喃-5-基)-N - [(2-甲氧基苯基)甲基]丙烷-2-胺(5-APB-NBOME),2-(8-溴-2,3,6,7-四氢苯并[1,2-B:4,5-B'] Difuran-4-Y1)-N - [(5-氯-2-乙氧基苯基)甲基] Ethan-1-胺(2C-B-Fly-Nb2etO5Cl)和2-(8-溴-2,3,6,7-四氢苯并[1,2-B:4,5-B'] Difuran-4-Y1)-N - [(2-甲氧基苯基)甲基] Ethan -1-胺(2C-B-Fly-Nbome)是三种新兴Nbome类似物,遭到滥用市场的药物。到目前为止,他们的毒制数据是完全未开发的。方法该研究包括在暴露于终末分化的人肝细胞癌细胞(Heparg)后,基于质谱的基于相位I和II代谢物的鉴定。完成了主要I / II代谢步骤中涉及的酶的测定和血浆蛋白结合(PPB)的测定。最后,研究了在标准尿液筛选方法(Susas)中不同连字质谱技术的毒理学检测性评价。结果主要通过O-脱康,羟基化,葡糖醛橡胶及其组合在肝细胞中广泛地代谢化合物。 CYP1A2,2D6,2C8,2C19和3A4涉及所有研究化合物的初始反应。 I相代谢物的葡糖醛酸化 - 当观察到的 - 主要由UGT1A9催化。确定所有化合物的PPB为> 85%。只有基于高分辨率质谱的Susa允许检测大鼠尿液中的所有化合物,而是仅通过代谢物。结论本研究提供的毒制数据将有助于法医和临床毒理学家可靠地识别这些物质,以便在滥用和/或中毒,并允许他们进行彻底的风险评估。

著录项

  • 来源
    《Ecological restoration》 |2020年第1期|共19页
  • 作者单位

    Saarland Univ Ctr Mol Signaling PZMS Inst Expt &

    Clin Pharmacol &

    Toxicol Dept Expt &

    Clin Toxicol D-66421 Homburg Germany;

    Saarland Univ Ctr Mol Signaling PZMS Inst Expt &

    Clin Pharmacol &

    Toxicol Dept Expt &

    Clin Toxicol D-66421 Homburg Germany;

    Saarland Univ Ctr Mol Signaling PZMS Inst Expt &

    Clin Pharmacol &

    Toxicol Dept Expt &

    Clin Toxicol D-66421 Homburg Germany;

    Liverpool John Moores Univ Sch Pharm &

    Biomol Sci Byrom St Liverpool L3 3AF Merseyside England;

    Synex Synthet BV NL-6222 NH Maastricht Netherlands;

    State Bur Criminal Invest Schleswig Holstein Sect Narcot Toxicol D-24116 Kiel Germany;

    Saarland Univ Dept Expt &

    Clin Pharmacol Inst Expt &

    Clin Pharmacol &

    Toxicol Ctr Mol Signaling PZMS D-66421 Homburg Germany;

    Saarland Univ Ctr Mol Signaling PZMS Inst Expt &

    Clin Pharmacol &

    Toxicol Dept Expt &

    Clin Toxicol D-66421 Homburg Germany;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生态学(生物生态学);
  • 关键词

    NBOMe derivatives; HepaRG; Metabolism; New psychoactive substances; LC-HRMS; MS;

    机译:nbome衍生物;肝脏;新陈代谢;新的精神活性物质;lc-hrms;ms;

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