Chen Shanshan, Zhou Wenhua, Lai Miaojun
Zhejiang Provincial Key Laboratory of Addiction Research, The Affiliated Kangning Hospital of Ningbo University, Ningbo 315201, China.
Department of Psychiatry, Ningbo Kangning Hospital, Ningbo 315201, China.
Brain Sci. 2024 Mar 29;14(4):334. doi: 10.3390/brainsci14040334.
Synthetic cathinones, derived from cathinone found in the plant Catha edulis, represent the second largest and most frequently seized group of new psychoactive substances. They are considered as β-keto analogs of amphetamine, sharing pharmacological effects with amphetamine and cocaine. This review describes the neurotoxic properties of synthetic cathinones, encompassing their capacity to induce neuroinflammation, dysregulate neurotransmitter systems, and alter monoamine transporters and receptors. Additionally, it discusses the rewarding and abuse potential of synthetic cathinones drawing from findings obtained through various preclinical animal models, contextualized with other classical psychostimulants. The review also offers an overview of current abuse trends of synthetic cathinones on the illicit drug market, specifying the aspects covered, and underscores the risks they pose to public health. Finally, the review discusses public health initiatives and efforts to reduce the hazards of synthetic cathinones, including harm reduction methods, education, and current clinical management strategies.
合成卡西酮是从恰特草中发现的卡西酮衍生而来,是第二大且最常被查获的新型精神活性物质类别。它们被认为是苯丙胺的β-酮类似物,与苯丙胺和可卡因具有共同的药理作用。本综述描述了合成卡西酮的神经毒性特性,包括它们诱导神经炎症、失调神经递质系统以及改变单胺转运体和受体的能力。此外,本综述借鉴通过各种临床前动物模型获得的研究结果,讨论了合成卡西酮的奖赏和滥用潜力,并与其他经典精神兴奋剂进行了对比。本综述还概述了合成卡西酮在非法药物市场上的当前滥用趋势,明确了所涵盖的方面,并强调了它们对公众健康构成的风险。最后,本综述讨论了减少合成卡西酮危害的公共卫生举措和努力,包括减少伤害方法、教育和当前的临床管理策略。