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一种具有治疗潜力的非致幻性迷幻剂类似物。

A non-hallucinogenic psychedelic analogue with therapeutic potential.

机构信息

Neuroscience Graduate Program, University of California, Davis, Davis, CA, USA.

Department of Chemistry, University of California, Davis, Davis, CA, USA.

出版信息

Nature. 2021 Jan;589(7842):474-479. doi: 10.1038/s41586-020-3008-z. Epub 2020 Dec 9.

Abstract

The psychedelic alkaloid ibogaine has anti-addictive properties in both humans and animals. Unlike most medications for the treatment of substance use disorders, anecdotal reports suggest that ibogaine has the potential to treat addiction to various substances, including opiates, alcohol and psychostimulants. The effects of ibogaine-like those of other psychedelic compounds-are long-lasting, which has been attributed to its ability to modify addiction-related neural circuitry through the activation of neurotrophic factor signalling. However, several safety concerns have hindered the clinical development of ibogaine, including its toxicity, hallucinogenic potential and tendency to induce cardiac arrhythmias. Here we apply the principles of function-oriented synthesis to identify the key structural elements of the potential therapeutic pharmacophore of ibogaine, and we use this information to engineer tabernanthalog-a water-soluble, non-hallucinogenic, non-toxic analogue of ibogaine that can be prepared in a single step. In rodents, tabernanthalog was found to promote structural neural plasticity, reduce alcohol- and heroin-seeking behaviour, and produce antidepressant-like effects. This work demonstrates that, through careful chemical design, it is possible to modify a psychedelic compound to produce a safer, non-hallucinogenic variant that has therapeutic potential.

摘要

致幻生物碱伊博加因在人类和动物中均具有抗成瘾特性。与大多数用于治疗物质使用障碍的药物不同,传闻报告表明,伊博加因有可能治疗各种物质的成瘾,包括阿片类药物、酒精和精神兴奋剂。伊博加因的作用——与其他致幻化合物的作用相似——是持久的,这归因于其通过激活神经营养因子信号来改变与成瘾相关的神经回路的能力。然而,一些安全问题阻碍了伊博加因的临床开发,包括其毒性、致幻潜力和诱发心律失常的倾向。在这里,我们应用面向功能的合成原理来确定伊博加因潜在治疗药效团的关键结构元素,并利用这些信息来设计能够一步制备的水溶性、非致幻、无毒的伊博加因类似物——tabernanthalog。在啮齿动物中,发现 tabernanthalog 可促进结构神经可塑性、减少酒精和海洛因寻求行为,并产生抗抑郁样作用。这项工作表明,通过仔细的化学设计,可以对致幻化合物进行修饰,产生具有治疗潜力的更安全、非致幻的变体。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0ab7/7874389/c76c6eded0f5/nihms-1642869-f0005.jpg

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