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25CN-NBOMe Metabolites in Rat Urine Human Liver Microsomes and C. elegans—Structure Determination and Synthesis of the Most Abundant Metabolites

机译:大鼠尿液人肝微粒体和C.秀丽杆菌结构测定和合成最丰富的代谢物的25cn-nbome代谢物

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摘要

N-Benzylphenethylamines are novel psychedelic substances increasingly used for research, diagnostic, or recreational purposes. To date, only a few metabolism studies have been conducted for N-2-methoxybenzylated compounds (NBOMes). Thus, the available 2,5-dimethoxy-4-(2-((2-methoxybenzyl)amino)ethyl)benzonitrile (25CN-NBOMe) metabolism data are limited. Herein, we investigated the metabolic profile of 25CN-NBOMe in vivo in rats and in vitro in Cunninghamella elegans (C. elegans) mycelium and human liver microsomes. Phase I and phase II metabolites were first detected in an untargeted screening, followed by liquid chromatography-tandem mass spectrometry (LC-MS/MS) identification of the most abundant metabolites by comparison with in-house synthesized reference materials. The major metabolic pathways described within this study (mono- and bis-O-demethylation, hydroxylation at different positions, and combinations thereof, followed by the glucuronidation, sulfation, and/or N-acetylation of primary metabolites) generally correspond to the results of previously reported metabolism of several other NBOMes. The cyano functional group was either hydrolyzed to the respective amide or carboxylic acid or remained untouched. Differences between species should be taken into account in studies of the metabolism of novel substances.
机译:N-苄基乙胺是新型荧光物质,越来越多地用于研究,诊断或娱乐目的。迄今为止,只有少数代谢研究已经针对N-2- methoxybenzylated化合物(NBOMes)进行。因此,可用的2,5-二甲氧基-4-(2 - ((2-甲氧基苄基)氨基)乙基)苄腈(25cn-nbome)代谢数据受到限制。在此,我们研究了在大鼠和体外体内体内的25cn-nbome的代谢特征,在Cunninghamella elegans(C. elegans)菌丝体和人肝微粒体。首先在未标准化的筛选中检测I和II代代谢物,然后通过与内部合成的参考材料进行比较,在未确定的筛选中检测到液相色谱 - 串联质谱(LC-MS / MS)鉴定最丰富的代谢物。本研究中描述的主要代谢途径(单 - 和双-O-脱甲基化,不同位置的羟基化,其组合,其次是初级代谢物的葡萄糖醛化,硫化和/或正乙酰化)通常对应于结果以前报道了其他几个Nbomes的代谢。氰基官能团被水解为相应的酰胺或羧酸或保持不受影响。物种之间的差异应考虑到新型物质代谢的研究中。

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