Department of Structural and Functional Biology and Center of Neuroscience, University of Insubria, Busto Arsizio (VA), Italy.
Curr Drug Targets. 2010 Apr;11(4):393-405. doi: 10.2174/138945010790980367.
Recently, the presence of functional interaction between the opioid and cannabinoid system has been shown in various pharmacological responses. Although there is an increasing interest for the feasible therapeutic application of a co-administration of cannabinoids and opioids in some disorders (i.e. to manage pain, to modulate immune system and emotions) and the combined use of the two drugs by drug abusers is becoming largely diffuse, only few papers focused on cellular and molecular mechanisms underlying this interaction. This review updates the biochemical and molecular underpinnings of opioid and cannabinoid interaction, both within the central nervous system and periphery. The most convincing theory for the explanation of this reciprocal interaction involves (i) the release of opioid peptides by cannabinoids or endocannabinoids by opioids, (ii) the existence of a direct receptor-receptor interaction when the receptors are co-expressed in the same cells, and (iii) the interaction of their intracellular pathways. Finally, the cannabinoid/opioid interaction might be different in the brain rewarding networks and in those accounting for other pharmacological effects (antinociception, modulation of emotionality and cognitive behavior), as well as between the central nervous system and periphery. Further insights about the cannabinoid/opioid interaction could pave the way for new and promising therapeutic approaches.
最近,在各种药理学反应中已经显示出阿片类药物和大麻素系统之间存在功能相互作用。尽管在某些疾病中联合使用大麻素和阿片类药物(例如,管理疼痛、调节免疫系统和情绪)具有可行的治疗应用的兴趣越来越大,并且药物滥用者同时使用这两种药物的情况也越来越普遍,但只有少数几篇论文关注这种相互作用的细胞和分子机制。本文综述了阿片类药物和大麻素相互作用的生化和分子基础,包括中枢神经系统和外周组织。最令人信服的解释这种相互作用的理论包括:(i)大麻素释放阿片肽或内源性大麻素释放阿片肽,(ii)当受体在同一细胞中共表达时存在直接的受体-受体相互作用,以及(iii)它们的细胞内途径相互作用。最后,大麻素/阿片类药物的相互作用可能在大脑奖励网络和其他药理学作用(镇痛、调节情绪和认知行为)中以及在中枢神经系统和外周组织中有所不同。对大麻素/阿片类药物相互作用的进一步了解可能为新的、有前途的治疗方法铺平道路。