Department of Experimental and Clinical Toxicology, Institute of Experimental and Clinical Pharmacology and Toxicology, Saarland University, Center for Molecular Signaling (PZMS), Homburg, Saarland, Germany.
Applied Pharmacy, University of Applied Sciences Kaiserslautern, Pirmasens, Germany.
Drug Test Anal. 2024 Mar;16(3):309-313. doi: 10.1002/dta.3546. Epub 2023 Jul 18.
New synthetic opioids are an increasing challenge for clinical and forensic toxicologists that developed over the recent years. Desmethylmoramide (DMM), a structural analogue of methadone, is one of the most recent appearances on the drug market. This study investigated its metabolic fate in rat and pooled human liver S9 fraction (pHLS9) to allow the identification of suitable urinary screening targets beyond the parent compound. The analysis of rat urine after the administration of DMM revealed five metabolites, which were the result of pyrrolidine ring or morpholine ring hydroxylation and combinations of them. Additionally, an N',N-bisdesalkyl metabolite was formed. Incubations of DMM using pHLS9 revealed a pyrrolidine hydroxy metabolite, as well as an N-oxide. No Phase II metabolites were detected in either rat urine or incubations using pHLS9. The metabolism of DMM did in part comply with that of its archetype dextromoramide (DXM). Although morpholine ring hydroxylation and N-oxidation were described for DXM and detected for DMM, phenyl ring hydroxylation was not found for DMM but described for DXM. An analysis of 24 h pooled rat urine samples after DMM administration identified the hydroxy and dihydroxy metabolite as the most abundant excretion products, and they may, thus, serve as screening targets, as the parent compound was barely detectable.
新合成阿片类药物是近年来临床和法医毒理学家面临的一个日益严峻的挑战。去甲美沙酮(DMM)是一种美沙酮的结构类似物,是最近出现在毒品市场上的一种。本研究旨在探讨 DMM 在大鼠和人肝 S9 混合液(pHLS9)中的代谢途径,以确定除母体化合物以外的合适的尿液筛查靶标。DMM 给药后大鼠尿液的分析显示了五种代谢物,这些代谢物是吡咯烷环或吗啉环羟化及其组合的结果。此外,还形成了 N',N-双去烷基代谢物。使用 pHLS9 孵育 DMM 揭示了一种吡咯烷羟基代谢物以及 N-氧化物。无论是在大鼠尿液还是在 pHLS9 孵育中,均未检测到任何 II 期代谢物。DMM 的代谢在一定程度上符合其原型右美沙芬(DXM)的代谢。尽管 DXM 被描述并检测到了吗啉环羟化和 N-氧化,但是 DMM 中未检测到苯环羟化,而 DXM 中则有描述。对 DMM 给药后 24 小时大鼠尿液混合样本的分析表明,羟基和二羟基代谢物是最主要的排泄产物,因此它们可能作为筛查靶标,因为母体化合物几乎检测不到。