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Cannabinoid Conditioned Reward and Aversion: Behavioral and Neural Processes

机译:大麻有条件的奖励和厌恶行为和神经过程

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摘要

The discovery that delta-9-tetrahydrocannabinol (Δ9-THC) is the primary psychoactive ingredient in marijuana prompted research that helped elucidate the endogenous cannabinoid system of the brain. Δ9-THC and other cannabinoid ligands with agonist action (CP 55,940, HU210, and WIN 55,212-2) increase firing of dopamine neurons and increase synaptic dopamine in brain regions associated with reward and drug addiction. Such changes in cellular processes have prompted investigators to examine the conditioned rewarding effects of the cannabinoid ligands using the place conditioning task with rats and mice. As reviewed here, these cannabinoid ligands can condition place preferences (evidence for rewarding effects) and place aversions (evidence for aversive qualities). Notably, the procedural details used in these place conditioning studies have varied across laboratories. Such variation includes differences in apparatus type, existence of procedural biases, dose, number of conditioning trials, injection-to-placement intervals, and pretraining drug exposure. Some differences in outcome across studies can be explained by these procedural variables. For example, low doses of Δ9-THC appear to have conditioned rewarding effects, whereas higher doses have aversive effects that either mask these rewarding effects or condition a place aversion. Throughout this review, we highlight key areas that need further research.
机译:delta-9-tetrahydrocannabinol(Δ 9 -THC)是大麻中主要的精神活性成分的发现促使人们进行了有助于阐明大脑内源性大麻素系统的研究。 Δ 9 -THC和其他具有激动作用的大麻素配体(CP 55,940,HU210和WIN 55,212-2)会增加与奖励和药物成瘾相关的大脑区域多巴胺神经元的放电并增加突触多巴胺。细胞过程中的此类变化已促使研究人员使用对大鼠和老鼠的位置调节任务来检查大麻素配体的条件性奖励作用。如此处所述,这些大麻素配体可以调节位置偏好(奖励效果的证据)和位置厌恶(厌恶品质的证据)。值得注意的是,这些场所条件研究中使用的程序细节在不同实验室之间有所不同。这样的变化包括仪器类型,程序偏差的存在,剂量,条件试验的次数,注射到放置的间隔以及训练前药物暴露的差异。这些程序变量可以解释研究结果之间的某些差异。例如,低剂量的Δ 9 -THC似乎具有条件的奖励作用,而高剂量的厌恶作用则掩盖了这些奖励作用或限制了位置厌恶。在整个审查过程中,我们重点介绍了需要进一步研究的关键领域。

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