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首页> 外文期刊>Ecological restoration >Metabolism of the benzodiazepines norflurazepam, flurazepam, fludiazepam and cinolazepam by human hepatocytes using high-resolution mass spectrometry and distinguishing their intake in authentic urine samples
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Metabolism of the benzodiazepines norflurazepam, flurazepam, fludiazepam and cinolazepam by human hepatocytes using high-resolution mass spectrometry and distinguishing their intake in authentic urine samples

机译:苯二氮卓卓卓的新陈代谢由人类肝细胞使用高分辨率质谱并将其摄入在正宗的尿液样本中

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摘要

Purpose Norflurazepam, also a metabolite of other prescription benzodiazepines, appeared on the new psychoactive substances (NPS) drug market recently, complicating the interpretation of NPS findings. The aims of the study were to tentatively identify potential metabolites of norflurazepam and structural analogues (flurazepam, fludiazepam and cinolazepam) produced by hepatocytes and in authentic human samples and to discuss the possibility to differentiate drug consumption. Methods Each drug (5 mu mol/L) was incubated with pooled human hepatocytes, and metabolites were identified using liquid chromatography-high-resolution mass spectrometry (LC-HRMS). Similarly, urine with/without hydrolysis and blood/serum from three flurazepam and seven presumptive norflurazepam cases were analysed by LC-HRMS. Results No metabolites were detected for norflurazepam in hepatocytes, but six metabolites for flurazepam, two for fludiazepam and three for cinolazepam were found. In human specimens collected after flurazepam ingestion, a total of eight metabolites, in good agreement with hepatocyte metabolites, were detected. In specimens of presumptive norflurazepam intake, norflurazepam and its metabolites (four hydroxy metabolites and one glucuronide of a hydroxy metabolite) were found. Conclusions Based on the results, hydroxy metabolites for norflurazepam, N-(hydroxyethyl), desethyl and didesethyl for flurazepam, hydroxy for fludiazepam and glucuronides and N-(hydroxyethyl) for cinolazepam are recommended for monitoring. While flurazepam, fludiazepam and cinolazepam were metabolised by hepatocytes at side chain, norflurazepam was not, which seems to indicate that hepatocytes have difficulty in modifying the benzene/diazepine rings of some 1,4-benzodiazepines. As for confirming the intake of norflurazepam, the urine ratio of 3-hydroxy-norflurazepam/norflurazepam might be the key; a high ratio might be correlated to norflurazepam intake, thereby enabling the differentiation.
机译:目的目的是Norflurazepam,也是其他处方苯并二氮卓类药物最近出现在新的精神活性物质(NPS)药物市场上,使NPS发现的解释复杂化。该研究的目的是暂时识别肝细胞和正宗人类样品生产的Norflurazepam和结构性类似物(Flurazepam,Fludiazepam和Cinolazepam)的潜在代谢产物,并讨论了区分药物消耗的可能性。方法将各种药物(5μmol/ L)与合并的人肝细胞一起温育,并使用液相色谱 - 高分辨率质谱(LC-HRMS)鉴定代谢物。同样,通过LC-HRMS分析了来自三种Flurazepam和七种推测Notflurazepam病例的尿液和血液/血清的尿液。结果未对肝细胞的Norflurazepam检测到代谢物,但Flurazepam的六种代谢物,两种用于氟哌嗪和三种鳞片泮。在Flurazepam摄入后收集的人类标本中,检测到肝细胞代谢物良好的八种代谢物。发现,在推定的诺福利泮摄入量,发现,Norflurazepam及其代谢物(四种羟基代谢物和羟基代谢物的一个葡萄糖醛酸盐)。基于结果的结论,建议对氟哌拉哌普(Norflurazepam,N-(羟乙基),脱硫和羟基乙基和羟基乙酯和葡糖醛酸乙酯的羟基和N-(羟乙基)进行监测来进行监测。虽然Flurazepam,Fludiazezepam和CinoLazepam由侧链的肝细胞代谢,但诺布鲁西泮似乎没有表明肝细胞难以改变一些1,4-苯并二氮杂卓的苯/直脂环。至于确认Norflurazepam的摄入量,3-Hydroxy-Norflurazepam / Norflurazepam的尿液比可能是关键;高比率可能与Norflurazepam摄入量相关,从而能够差异化。

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