脑刺激奖励
伏隔核
内侧前脑束
被盖腹侧区
神经科学
刺激
上瘾
奖励制度
心理学
多巴胺
脑刺激
前额叶皮质
脑电刺激
外侧下丘脑
扁桃形结构
渴求
谷氨酸受体
纹状体
医学
受体
内科学
认知
多巴胺能
作者
Dino J. Levy,Maytal Shabat-Simon,Uri Shalev,Noam Barnea‐Ygael,Ayelet Cooper,Abraham Zangen
标识
DOI:10.1523/jneurosci.4477-07.2007
摘要
Drug addiction is associated with long-lasting neuronal adaptations including alterations in dopamine and glutamate receptors in the brain reward system. Treatment strategies for cocaine addiction and especially the prevention of craving and relapse are limited, and their effectiveness is still questionable. We hypothesized that repeated stimulation of the brain reward system can induce localized neuronal adaptations that may either potentiate or reduce addictive behaviors. The present study was designed to test how repeated interference with the brain reward system using localized electrical stimulation of the medial forebrain bundle at the lateral hypothalamus (LH) or the prefrontal cortex (PFC) affects cocaine addiction-associated behaviors and some of the neuronal adaptations induced by repeated exposure to cocaine. Repeated high-frequency stimulation in either site influenced cocaine, but not sucrose reward-related behaviors. Stimulation of the LH reduced cue-induced seeking behavior, whereas stimulation of the PFC reduced both cocaine-seeking behavior and the motivation for its consumption. The behavioral findings were accompanied by glutamate receptor subtype alterations in the nucleus accumbens and the ventral tegmental area, both key structures of the reward system. It is therefore suggested that repeated electrical stimulation of the PFC can become a novel strategy for treating addiction.
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