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内源性大麻素系统对 3,4-亚甲二氧基甲基苯丙胺作用的调制。

Modulation of 3,4-methylenedioxymethamphetamine effects by endocannabinoid system.

机构信息

Neurobiology of Behavior Research Group (GReNeC)., Department of Health and Experimental Sciences., University Pompeu Fabra., IMIM (Hospital del Mar Research Institute), Barcelona Biomedical Research Park (PRBB)., C/ Dr. Aiguader, 08003 Barcelona, Spain.

出版信息

Curr Pharm Des. 2013;19(40):7081-91. doi: 10.2174/138161281940131209144331.

Abstract

The amphetamine derivative 3, 4 Methylenedioxymethanphetamine (MDMA) is a powerful central nervous system stimulant that displays numerous pharmacological effects, including neurotoxicity. MDMA, or ecstasy, acts by inducing the release of different neurotransmitters depending on the animal species and, in particular, it produces the release of serotonin and dopamine. MDMA induces rewarding and reinforcing effects in rodents, primates and humans, and is currently consumed as an illicit psychostimulant among young people. One of the most reported side effects is the hyperthermic effect and the neurotoxicity on central serotonergic and dopaminergic neurons, depending on the species of animal. It seems that MDMA may also produce neurotoxic effects in humans. To date, the most consistent findings associated to MDMA consumption in humans relate to cognitive deficits in heavy users. MDMA when consumed as an illicit psychostimulant is commonly co-used with other abusers, being frequently associated with cannabinoids. The interaction between MDMA and cannabis effects is complex. Cannabis derivatives act on endocannabinoid system. Thus, at cellular levels, cannabinoids acting through CB1 cannabinoid receptors display opposite effects to those induced by MDMA, and they have been reported to develop neuroprotective actions, including the blockage of MDMA induced neurotoxicity, in laboratory animals. However, cannabis use is a recognized risk factor in the presentation and development of neuropsychiatric disorders, and also contributes to the development of psychological problems and cognitive failures observed in MDMA users. This paper represents a brief overview of the pharmacological interaction between MDMA and cannabis derivatives acting in the endocannabinoid system. We have evaluated recent findings in the literature of the most representative pharmacological effects displayed by both types of drugs. We analyze both, the synergic and opposite effects produced by these two compounds and we have found a gap regarding the negative consequences of long-term human consumption of MDMA alone or in combination with cannabis.

摘要

苯丙胺衍生物 3,4-亚甲二氧基甲基苯丙胺(MDMA)是一种强大的中枢神经系统兴奋剂,具有多种药理作用,包括神经毒性。MDMA,或摇头丸,通过诱导不同神经递质的释放来发挥作用,这取决于动物物种,特别是它会导致血清素和多巴胺的释放。MDMA 在啮齿动物、灵长类动物和人类中诱导奖励和强化作用,目前在年轻人中作为非法兴奋剂使用。最常见的副作用之一是体温升高效应和对中枢血清素能和多巴胺能神经元的神经毒性,这取决于动物的物种。似乎 MDMA 也可能在人类中产生神经毒性作用。迄今为止,与人类 MDMA 消费相关的最一致的发现与重度使用者的认知缺陷有关。当 MDMA 作为非法兴奋剂被消费时,通常与其他使用者一起使用,经常与大麻素一起使用。MDMA 和大麻素的相互作用很复杂。大麻素衍生物作用于内源性大麻素系统。因此,在细胞水平上,通过 CB1 大麻素受体起作用的大麻素显示出与 MDMA 诱导的相反作用,并且据报道它们具有神经保护作用,包括阻断 MDMA 诱导的神经毒性,在实验室动物中。然而,大麻素的使用是精神神经障碍表现和发展的公认风险因素,也导致 MDMA 使用者观察到的心理问题和认知失败的发展。本文简要概述了作用于内源性大麻素系统的 MDMA 和大麻素衍生物之间的药理学相互作用。我们评估了文献中这两种药物最具代表性的药理作用的最新发现。我们分析了这两种化合物产生的协同和相反作用,并且发现了一个空白,即长期单独或与大麻一起消费 MDMA 对人类的负面影响。

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