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疫苗驱动的苯丙胺精神活性的药效学剖析与减轻

Vaccine-driven pharmacodynamic dissection and mitigation of fenethylline psychoactivity.

作者信息

Wenthur Cody J, Zhou Bin, Janda Kim D

机构信息

Department of Chemistry, The Skaggs Institute for Chemical Biology, The Scripps Research Institute, La Jolla, California 92037, USA.

Department of Immunology, WIRM Institute for Research and Medicine, The Scripps Research Institute, La Jolla, California 92037, USA.

出版信息

Nature. 2017 Aug 24;548(7668):476-479. doi: 10.1038/nature23464. Epub 2017 Aug 16.

Abstract

Fenethylline, also known by the trade name Captagon, is a synthetic psychoactive stimulant that has recently been linked to a substance-use disorder and 'pharmacoterrorism' in the Middle East. Although fenethylline shares a common phenethylamine core with other amphetamine-type stimulants, it also incorporates a covalently linked xanthine moiety into its parent structure. These independently active pharmacophores are liberated during metabolism, resulting in the release of a structurally diverse chemical mixture into the central nervous system. Although the psychoactive properties of fenethylline have been reported to differ from those of other synthetic stimulants, the in vivo chemical complexity it manifests upon ingestion has impeded efforts to unambiguously identify the specific species responsible for these effects. Here we develop a 'dissection through vaccination' approach, called DISSECTIV, to mitigate the psychoactive effects of fenethylline and show that its rapid-onset and distinct psychoactive properties are facilitated by functional synergy between theophylline and amphetamine. Our results demonstrate that incremental vaccination against a single chemical species within a multi-component mixture can be used to uncover emergent properties arising from polypharmacological activity. We anticipate that DISSECTIV will be used to expose unidentified active chemical species and resolve pharmacodynamic interactions within other chemically complex systems, such as those found in counterfeit or illegal drug preparations, post-metabolic tissue samples and natural product extracts.

摘要

芬乙茶碱,商品名为“卡他命”,是一种合成精神活性兴奋剂,最近在中东地区与物质使用障碍及“药物恐怖主义”相关联。尽管芬乙茶碱与其他苯丙胺类兴奋剂有着共同的苯乙胺核心结构,但它还在母体结构中融入了一个共价连接的黄嘌呤部分。这些具有独立活性的药效基团在代谢过程中被释放出来,导致向中枢神经系统释放出一种结构多样的化学混合物。尽管据报道芬乙茶碱的精神活性特性与其他合成兴奋剂不同,但其摄入后所表现出的体内化学复杂性阻碍了明确鉴定造成这些效应的具体化学物质的努力。在此,我们开发了一种名为“通过疫苗接种进行剖析”(DISSECTIV)的方法,以减轻芬乙茶碱的精神活性效应,并表明茶碱和苯丙胺之间的功能协同作用促成了其快速起效且独特的精神活性特性。我们的结果表明,针对多组分混合物中的单一化学物质进行递增式疫苗接种,可用于揭示多药理学活性产生的新特性。我们预计,“通过疫苗接种进行剖析”(DISSECTIV)方法将用于揭示未鉴定的活性化学物质,并解析其他化学复杂系统中的药效学相互作用,例如在假冒或非法药物制剂、代谢后组织样本和天然产物提取物中发现的系统。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d442/5957549/ceaf5b310979/nihms890367f5.jpg

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