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MT-45代谢物的鉴定:计算机模拟预测、大鼠肝细胞体外孵育及体内验证

Identification of MT-45 Metabolites: In Silico Prediction, In Vitro Incubation with Rat Hepatocytes and In Vivo Confirmation.

作者信息

Montesano Camilla, Vannutelli Gabriele, Fanti Federico, Vincenti Flaminia, Gregori Adolfo, Rita Togna Anna, Canazza Isabella, Marti Matteo, Sergi Manuel

机构信息

Department of Chemistry, Sapienza University of Rome, Piazzale Aldo Moro 5, 00185 Rome, Italy.

Department of Scientific Investigation (RIS), Carabinieri, Viale di Tor di Quinto, 151, 00191 Rome, Italy.

出版信息

J Anal Toxicol. 2017 Oct 1;41(8):688-697. doi: 10.1093/jat/bkx058.

Abstract

MT-45 is a synthetic opioid with a pharmacological activity comparable to morphine and it has been involved in intoxications and fatalities reported in Europe and in USA. It was recently subject to control measures, but to date the metabolic pathways of the substance are still unknown. Using rat hepatocytes and LC-HRMS, 14 novel Phase I and II MT-45 metabolites were identified, products of monohydroxylation, dihydroxylation and N-dealkylation; glucuronide conjugation of mono- and dihydroxylated metabolites also occurred. The detected metabolites were firstly predicted in silico, then incubation of the drug with rat hepatocytes was carried out and the obtained metabolites were identified by LC-HRMS, with retention times, mass shift between theoretical mass and observed mass (<5 ppm), peak abundance and fragmentation pattern. Hydroxylated MT-45 was found to be the major metabolite of MT-45 in vitro experiments. The presence of all metabolites was confirmed by in vivo experiments in urine samples of CD-1 male mice; in these samples hydroxy-MT-45-glucuronide and di-hydroxy-MT-45-glucuronide are the most abundant metabolites, while the parent drug is found at concentration <10 ng mL-1 after 300 min. The knowledge of Phase I and II MT-45 metabolite structure is then crucial to develop analytical methods to identify MT-45 consumption in clinical and forensic testing.

摘要

MT-45是一种合成阿片类药物,其药理活性与吗啡相当,在欧洲和美国均有与之相关的中毒和死亡报告。该物质最近受到了管控措施的约束,但迄今为止其代谢途径仍不明确。利用大鼠肝细胞和液相色谱-高分辨质谱联用技术,鉴定出了14种新的I期和II期MT-45代谢产物,包括单羟基化、二羟基化和N-脱烷基化产物;单羟基化和二羟基化代谢产物也会发生葡萄糖醛酸结合反应。首先通过计算机模拟预测了检测到的代谢产物,然后将该药物与大鼠肝细胞进行孵育,并通过液相色谱-高分辨质谱联用技术鉴定得到的代谢产物,依据保留时间、理论质量与实测质量之间的质量偏移(<5 ppm)、峰丰度和碎片模式进行鉴定。在体外实验中发现羟基化MT-45是MT-45的主要代谢产物。通过对CD-1雄性小鼠尿液样本进行体内实验,证实了这些代谢产物的存在;在这些样本中,羟基-MT-45-葡萄糖醛酸和二羟基-MT-45-葡萄糖醛酸是含量最丰富的代谢产物,而在300分钟后母体药物的浓度<10 ng/mL。因此,了解MT-45的I期和II期代谢产物结构对于开发用于临床和法医检测中鉴定MT-物质消耗的分析方法至关重要。

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