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芬太尼滥用和成瘾的独特药理学、大脑功能障碍和治疗进展。

Unique Pharmacology, Brain Dysfunction, and Therapeutic Advancements for Fentanyl Misuse and Abuse.

机构信息

National Institute on Drug Dependence and Beijing Key Laboratory of Drug Dependence, Peking University, Beijing, 100191, China.

Peking-Tsinghua Center for Life Sciences and PKU-IDG/McGovern Institute for Brain Research, Peking University, Beijing, 100871, China.

出版信息

Neurosci Bull. 2022 Nov;38(11):1365-1382. doi: 10.1007/s12264-022-00872-3. Epub 2022 May 15.

Abstract

Fentanyl is a fully synthetic opioid with analgesic and anesthetic properties. It has become a primary driver of the deadliest opioid crisis in the United States and elsewhere, consequently imposing devastating social, economic, and health burdens worldwide. However, the neural mechanisms that underlie the behavioral effects of fentanyl and its analogs are largely unknown, and approaches to prevent fentanyl abuse and fentanyl-related overdose deaths are scarce. This review presents the abuse potential and unique pharmacology of fentanyl and elucidates its potential mechanisms of action, including neural circuit dysfunction and neuroinflammation. We discuss recent progress in the development of pharmacological interventions, anti-fentanyl vaccines, anti-fentanyl/heroin conjugate vaccines, and monoclonal antibodies to attenuate fentanyl-seeking and prevent fentanyl-induced respiratory depression. However, translational studies and clinical trials are still lacking. Considering the present opioid crisis, the development of effective pharmacological and immunological strategies to prevent fentanyl abuse and overdose are urgently needed.

摘要

芬太尼是一种完全合成的阿片类药物,具有镇痛和麻醉作用。它已成为美国和其他地区最致命的阿片类药物危机的主要驱动因素,因此在全球范围内造成了毁灭性的社会、经济和健康负担。然而,芬太尼及其类似物的行为效应的神经机制在很大程度上尚不清楚,预防芬太尼滥用和芬太尼相关过量死亡的方法也很少。这篇综述介绍了芬太尼的滥用潜力和独特药理学,并阐明了其潜在的作用机制,包括神经回路功能障碍和神经炎症。我们讨论了在开发药理学干预措施、抗芬太尼疫苗、抗芬太尼/海洛因缀合物疫苗以及单克隆抗体以减轻芬太尼觅药和预防芬太尼引起的呼吸抑制方面的最新进展。然而,仍缺乏转化研究和临床试验。考虑到目前的阿片类药物危机,迫切需要开发有效的药理学和免疫学策略来预防芬太尼滥用和过量。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/06fe/9672176/04ca0393e1f7/12264_2022_872_Fig1_HTML.jpg

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