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Serotonergic Neurotoxic Thioether Metabolites of 34-Methylenedioxymethamphetamine (MDMA Ecstasy): Synthesis Isolation and Characterization of Diastereoisomers

机译:34-亚甲二氧基甲基苯丙胺(MDMA摇头丸)的血清素神经毒性硫醚代谢物:非对映异构体的合成分离和表征

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摘要

3,4-Methylenedioxymethamphetamine (MDMA, ecstasy) is a synthetic recreational drug of abuse that produces long-term toxicity associated with the degeneration of serotonergic nerve terminals. In various animal models direct administration of MDMA into the brain fails to reproduce the serotonergic neurotoxicity, implying a requirement for the systemic metabolism and bioactivation of MDMA. Catechol-thioether metabolites of MDMA, formed via oxidation of 3,4-dihydroxymetamphetamine and 3,4-dihydroxyamphetamine (HHMA and HHA) and subsequent conjugation with glutathione (GSH), are selective serotonergic neurotoxicants when administered directly into brain. Moreover, following systemic administration of MDMA, the thioether adducts are present in rat brain dialysate. MDMA contains a stereogenic center, and is consumed as a racemate. Interestingly, different pharmacological properties have been attributed to the two enantiomers, (S)-MDMA being the most active in the central nervous system and responsible for the entactogenic effects, and most likely also for the neurodegeneration. The present study focused on the synthesis and stereochemical analysis of the neurotoxic MDMA thioether metabolites, 5-(glutathion-S-yl)-HHMA, 5-(N-acetylcysteine-S-yl)-HHMA, 2,5-bis-(glutathion-S-yl)-HHMA and 2,5-bis-(N-acetylcysteine-S-yl)-HHMA. Both enzymatic and electrochemical syntheses were explored, and methodologies for analytical and semi-preparative diastereoisomeric separation of MDMA thioether conjugates by HPLC-CEAS and HPLC-UV respectively were developed. Synthesis, diastereoisomeric separation, and unequivocal identification of the thioether conjugates of MDMA provide the chemical tools necessary for appropriate toxicological and metabolic studies on MDMA metabolites contributing to its neurotoxicity.
机译:3,4-亚甲基二氧基甲基苯丙胺(摇头丸)是一种滥用的合成休闲药物,产生与血清素能神经末梢退化相关的长期毒性。在各种动物模型中,直接将MDMA注射入大脑均无法重现血清素能神经毒性,这意味着需要对MDMA进行全身代谢和生物激活。通过直接将3,4-二羟基安非他命和3,4-二羟基安非他命(HHMA和HHA)氧化并与谷胱甘肽(GSH)结合而形成的MDMA邻苯二酚-硫醚代谢物是选择性的血清素能神经毒剂。而且,在MDMA全身性给药后,硫代醚加合物存在于大鼠脑透析液中。 MDMA包含一个立体异构中心,并作为外消旋体被消耗。有趣的是,不同的药理特性已归因于两种对映异构体,(S)-MDMA在中枢神经系统中最活跃,并负责促触觉作用,最有可能也是神经退行性变。本研究集中于神经毒性MDMA硫醚代谢物5-(谷胱甘肽-S-基)-HHMA,5-(N-乙酰半胱氨酸-S-基)-HHMA,2,5-双-(谷胱甘肽-S-基)-HHMA和2,5-双-(N-乙酰基半胱氨酸-S-基)-HHMA。探索了酶促合成和电化学合成,并开发了分别通过HPLC-CEAS和HPLC-UV对MDMA硫醚共轭物进行分析和半制备非对映异构体分离的方法。 MDMA硫醚缀合物的合成,非对映异构体分离和明确鉴定为对MDMA代谢物造成神经毒性的适当毒理学和代谢研究提供了必要的化学工具。

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