Department of Chemistry, University of North Carolina at Chapel Hill, Chapel Hill, NC 27599-3290, USA.
Eur J Neurosci. 2009 Nov;30(10):1889-99. doi: 10.1111/j.1460-9568.2009.07027.x. Epub 2009 Nov 11.
Drug seeking is significantly regulated by drug-associated cues and associative learning between environmental cues and cocaine reward is mediated by dopamine transmission within the nucleus accumbens (NAc). However, dopamine transmission during early acquisition of a cue-cocaine association has never been assessed because of the technical difficulties associated with resolving cue-evoked and cocaine-evoked dopamine release within the same conditioning trial. Here, we used fast-scan cyclic voltammetry to measure sub-second fluctuations in dopamine concentration within the NAc core and shell during the initial acquisition of a cue-cocaine Pavlovian association. Within the NAc core, cue-evoked dopamine release developed during conditioning. However, within the NAc shell, the predictive cue appeared to cause an unconditioned decrease in dopamine concentration. The pharmacological effects of cocaine also differed between sub-regions, as cocaine increased phasic dopamine release events within the NAc shell but not the core. Thus, real-time measurements not only revealed the initial development of a conditioned neurochemical response but also demonstrated differential phasic dopamine transmission patterns across NAc sub-regions during the acquisition of a cue-cocaine association.
药物寻求受到与药物相关的线索的显著调节,环境线索与可卡因奖赏之间的联想学习是由伏隔核(NAc)内的多巴胺传递介导的。然而,由于在同一条件反射试验中解析线索诱发和可卡因诱发的多巴胺释放相关的技术困难,从未评估过可卡因关联的早期获得过程中的多巴胺传递。在这里,我们使用快速扫描循环伏安法测量了在条件性关联的初始获得过程中,NAc 核心和壳内多巴胺浓度的亚秒级波动。在 NAc 核心内,条件刺激引起的多巴胺释放在调节过程中发展。然而,在 NAc 壳内,预测性线索似乎导致多巴胺浓度的非条件性降低。可卡因的药理作用也在不同的子区域之间存在差异,因为可卡因增加了 NAc 壳内的相位性多巴胺释放事件,但对核心区域没有影响。因此,实时测量不仅揭示了条件性神经化学反应的初始发展,还证明了在获得线索-可卡因关联过程中,NAc 不同亚区之间的相位性多巴胺传递模式存在差异。