首页> 外文期刊>Therapeutic Drug Monitoring >Chemistry, pharmacology, toxicology, and hepatic metabolism of designer drugs of the amphetamine (ecstasy), piperazine, and pyrrolidinophenone types: a synopsis.
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Chemistry, pharmacology, toxicology, and hepatic metabolism of designer drugs of the amphetamine (ecstasy), piperazine, and pyrrolidinophenone types: a synopsis.

机译:苯丙胺(摇头丸),哌嗪和吡咯烷酮类型的设计药物的化学,药理学,毒理学和肝代谢:概述。

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摘要

Designer drugs of the amphetamine type (eg, MDMA, MDEA, MDA), of the new benzyl or phenyl piperazine type (eg, BZP, MDBP, mCPP, TFMPP, MeOPP), or of the pyrrolidinophenone type (eg, PPP, MOPPP, MDPPP, MPPP, MPHP) have gained popularity and notoriety as rave drugs. These drugs produce feelings of euphoria and energy and a desire to socialize. Although in the corresponding drug scene designer drugs have the reputation of being safe, studies in rats and primates in combination with human epidemiologic investigations indicate potential risks to humans. Thus, a variety of adverse effects have been associated with the use/abuse of this class of drugs in humans, including a life-threatening serotonin syndrome, hepatotoxicity, neurotoxicity, and psychopathology. Metabolites were suspected to contribute to some of the toxic effects. Therefore, knowledge of the metabolism is a prerequisite for toxicologic risk assessment. The metabolic pathways, the involvement of cytochrome P450 isoenzymes in the main pathways,and their roles in hepatic clearance are described for designer drugs of different groups. In summary, polymorphically expressed CYP2D6 was the major enzyme catalyzing the major metabolic steps of the studied piperazine- and pyrrolidinophenone-derived designer drugs. However, it cannot be concluded at the moment whether this genetic polymorphism is of clinical relevance.
机译:苯丙胺类(例如MDMA,MDEA,MDA),新苄基或苯基哌嗪类(例如BZP,MDBP,mCPP,TFMPP,MeOPP)或吡咯烷酮类(例如PPP,MOPPP, (MDPPP,MPPP,MPHP)作为狂野药已广受欢迎并声名狼藉。这些药物会产生欣快感和活力,并渴望社交。尽管在相应的药物场景中,设计药物具有安全性的美誉,但是在大鼠和灵长类动物中进行的研究与人类流行病学研究相结合,表明对人类有潜在的风险。因此,与这类药物在人类中的使用/滥用相关的各种不良反应包括威胁生命的血清素综合症,肝毒性,神经毒性和精神病理学。怀疑代谢产物会导致某些毒性作用。因此,了解新陈代谢是进行毒理学风险评估的先决条件。描述了不同组别的设计药物的代谢途径,细胞色素P450同工酶在主要途径中的参与及其在肝清除中的作用。总之,多态性表达的CYP2D6是催化研究的哌嗪和吡咯烷二酮衍生设计药物的主要代谢步骤的主要酶。但是,目前尚不能断定这种遗传多态性是否具有临床意义。

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