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Synthesis and Cytotoxic Profile of 3,4-Methylenedioxymethamphetamine (“Ecstasy”) and Its Metabolites on Undifferentiated PC12 Cells: A Putative Structure−Toxicity Relationship

机译:3,4-亚甲基二氧基甲基苯丙胺(“摇头丸”)及其代谢产物在未分化PC12细胞上的合成和细胞毒性特征:推定的结构-毒性关系

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摘要

The toxicological and redox profiles of MDMA and its major metabolites (MDA, α-methyldopamine, N-methyl-α-methyldopamine, 6-hydroxy-α-methyldopamine, 3-methoxy-α-methyldopamine) were studied to establish a structure-toxicity relationship and determine their individual contribution to cell death induction by apoptosis and/or necrosis. The results of the comparative toxicity study, using undifferentiated PC12 cells, strongly suggest that the metabolites possessing a catecholic group are more toxic to the cells than MDMA and metabolites with at least one protected phenolic group. Redox studies reveal that an oxidative mechanism seems to play an important role in metabolite cytotoxicity. Nuclear features of apoptosis and/or necrosis show that most of the metabolites, particularly N-methyl-α-methyldopamine, induce cell death by apoptosis, largely accompanied by necrotic features. No significant differences were found between MDMA and the metabolites, concerning overall characteristics of cell death. These results may be useful to ascertain the contribution of metabolism in MDMA neurotoxicity molecular mechanisms
机译:研究了MDMA及其主要代谢产物(MDA,α-甲基多巴胺,N-甲基-α-甲基多巴胺,6-羟基-α-甲基多巴胺,3-甲氧基-α-甲基多巴胺)的毒理学和氧化还原谱,以建立结构毒性并确定它们对细胞凋亡和/或坏死诱导细胞死亡的贡献。使用未分化的PC12细胞进行的比较毒性研究的结果有力地表明,具有儿茶酚基团的代谢产物比MDMA和具有至少一个受保护的酚基的代谢产物对细胞的毒性更高。氧化还原研究表明,氧化机制似乎在代谢物细胞毒性中起重要作用。细胞凋亡和/或坏死的核特征表明,大多数代谢物,特别是N-甲基-α-甲基多巴胺,通过细胞凋亡诱导细胞死亡,主要伴随着坏死特征。关于细胞死亡的总体特征,MDMA和代谢物之间未发现显着差异。这些结果可能有助于确定代谢在MDMA神经毒性分子机制中的作用

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