使用三种不同的体外模型对合成大麻素PX-1和PX-2进行i期代谢研究。

IF 2.8 4区 医学 Q2 TOXICOLOGY Forensic Toxicology Pub Date : 2022-07-01 DOI:10.1007/s11419-021-00606-6
Patrick Dahm, Andreas Thomas, Markus A Rothschild, Mario Thevis, Katja Mercer-Chalmers-Bender
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引用次数: 4

摘要

目的:合成大麻素(SCs)是一种高度代谢的物质,很少在尿液样本中发现未经修饰的物质。尿液筛查依赖于SC代谢物检测,需要代谢知识。代谢数据可以通过体外实验获得,例如,人肝细胞、混合人肝微粒体(pHLM)、细胞色素P450异构体和真菌模型;或者在体内通过筛选,例如,真实的人类样本或大鼠尿液。这项工作描述了三种体外模型对PX-1和PX-2体外代谢的综合研究。5F-APP-PICA (PX-1)和5F-APP-PINACA (PX-2)与AM-2201、THJ-2201和5F-AB-PINACA具有结构相似性,其代谢已在文献中描述。方法:用pHLM、细胞色素P450同工酶和秀丽隐杆线虫(C. elegans)真菌模型进行SC培养。采用液相色谱-高分辨率质谱法全面分析了PX-1和PX-2的体外代谢产物。结果:共检出px1代谢物30个,px2代谢物15个。PX-1和PX-2的主要代谢物是酰胺水解代谢物,以及吲哚单羟基化代谢物(PX-1)和去氟化戊基单羟基化代谢物(PX-2)。结论:真菌孵育结果与pHLM孵育结果一致。CYP2E1负责许多代谢途径;特别是对于PX-1。本研究表明,这三种体外检测方法都适用于预测合成大麻素的代谢途径。为了确定PX-1和PX-2代谢途径的完整性,不仅建议而且有必要使用不同的检测方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Phase I-metabolism studies of the synthetic cannabinoids PX-1 and PX-2 using three different in vitro models.

Purpose: Synthetic cannabinoids (SCs), highly metabolized substances, are rarely found unmodified in urine samples. Urine screening relies on SC metabolite detection, requiring metabolism knowledge. Metabolism data can be acquired via in vitro assays, e.g., human hepatocytes, pooled human liver microsomes (pHLM), cytochrome P450 isoforms and a fungal model; or in vivo by screening, e.g., authentic human samples or rat urine. This work describes the comprehensive study of PX-1 and PX-2 in vitro metabolism using three in vitro models. 5F-APP-PICA (PX-1) and 5F-APP-PINACA (PX-2) were studied as they share structural similarity with AM-2201, THJ-2201 and 5F-AB-PINACA, the metabolism of which was described in the literature.

Methods: For SC incubation, pHLM, cytochrome P450 isoenzymes and the fungal model Cunninghamella elegans LENDNER (C. elegans) were used. PX-1 and PX-2 in vitro metabolites were revealed comprehensively by liquid chromatography-high-resolution mass spectrometry measurements.

Results: In total, 30 metabolites for PX 1 and 15 for PX-2 were detected. The main metabolites for PX-1 and PX-2 were the amide hydrolyzed metabolites, along with an indole monohydroxylated (for PX-1) and a defluorinated pentyl-monohydroxylated metabolite (for PX-2).

Conclusions: CYP isoforms along with fungal incubation results were in good agreement to those obtained with pHLM incubation. CYP2E1 was responsible for many of the metabolic pathways; particularly for PX-1. This study shows that all three in vitro assays are suitable for predicting metabolic pathways of synthetic cannabinoids. To establish completeness of the PX-1 and PX-2 metabolic pathways, it is not only recommended but also necessary to use different assays.

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来源期刊
Forensic Toxicology
Forensic Toxicology TOXICOLOGY-
CiteScore
5.80
自引率
9.10%
发文量
40
审稿时长
3 months
期刊介绍: The journal Forensic Toxicology provides an international forum for publication of studies on toxic substances, drugs of abuse, doping agents, chemical warfare agents, and their metabolisms and analyses, which are related to laws and ethics. It includes original articles, reviews, mini-reviews, short communications, and case reports. Although a major focus of the journal is on the development or improvement of analytical methods for the above-mentioned chemicals in human matrices, appropriate studies with animal experiments are also published. Forensic Toxicology is the official publication of the Japanese Association of Forensic Toxicology (JAFT) and is the continuation of the Japanese Journal of Forensic Toxicology (ISSN 0915-9606).
期刊最新文献
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