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内源性大麻素依赖的相位多巴胺信号调制编码外部和内部奖励预测线索。

Endocannabinoid-dependent modulation of phasic dopamine signaling encodes external and internal reward-predictive cues.

机构信息

Department of Anatomy and Neurobiology, University of Maryland School of Medicine , Baltimore, MD , USA.

Department of Anatomy and Neurobiology, University of Maryland School of Medicine , Baltimore, MD , USA ; Department of Psychiatry, University of Maryland School of Medicine , Baltimore, MD , USA.

出版信息

Front Psychiatry. 2014 Sep 1;5:118. doi: 10.3389/fpsyt.2014.00118. eCollection 2014.

Abstract

The mesolimbic dopamine (DA) system plays an integral role in incentive motivation and reward seeking and a growing body of evidence identifies signal transduction at cannabinoid receptors as a critical modulator of this system. Indeed, administration of exogenous cannabinoids results in burst firing of DA neurons of the ventral tegmental area and increases extracellular DA in the nucleus accumbens (NAcc). Implementation of fast-scan cyclic voltammetry (FSCV) confirms the ability of cannabinoids to augment DA within the NAcc on a subsecond timescale. The use of FSCV along with newly developed highly selective pharmacological compounds advances our understanding of how cannabinoids influence DA transmission and highlights a role for endocannabinoid-modulated subsecond DAergic activation in the incentive motivational properties of not only external, but also internal reward-predictive cues. For example, our laboratory has recently demonstrated that in mice responding under a fixed-interval (FI) schedule for food reinforcement, fluctuations in NAcc DA signal the principal cue predictive of reinforcer availability - time. That is, as the interval progresses, NAcc DA levels decline leading to accelerated food seeking and the resulting characteristic FI scallop pattern of responding. Importantly, administration of WIN 55,212-2, a synthetic cannabinoid agonist, or JZL184, an indirect cannabinoid agonist, increases DA levels during the interval and disrupts this pattern of responding. Along with a wealth of other reports, these results illustrate the role of cannabinoid receptor activation in the regulation of DA transmission and the control of temporally guided reward seeking. The current review will explore the striatal beat frequency model of interval timing as it pertains to cannabinoid signaling and propose a neurocircuitry through which this system modulates interoceptive time cues.

摘要

中脑边缘多巴胺(DA)系统在激励动机和寻求奖励中起着重要作用,越来越多的证据表明,大麻素受体的信号转导是该系统的关键调节剂。事实上,外源性大麻素的给药会导致腹侧被盖区(VTA)DA 神经元爆发式放电,并增加伏隔核(NAcc)中的细胞外 DA。快速扫描循环伏安法(FSCV)的实施证实了大麻素能够在纳秒级时间尺度上增加 NAcc 中的 DA。FSCV 的使用以及新开发的高选择性药理学化合物的使用,提高了我们对大麻素如何影响 DA 传递的理解,并强调了内源性大麻素调制的纳秒级 DA 激活在外部和内部奖励预测线索的激励动机特性中的作用。例如,我们的实验室最近表明,在对食物强化的固定间隔(FI)方案做出反应的小鼠中,NAcc DA 信号的波动预测了增强剂可用性的主要线索 - 时间。也就是说,随着间隔的进展,NAcc DA 水平下降,导致加速觅食,并产生特征性的 FI 扇贝模式反应。重要的是,给予合成大麻素激动剂 WIN 55,212-2 或间接大麻素激动剂 JZL184,会在间隔期间增加 DA 水平并破坏这种反应模式。除了其他大量报告外,这些结果说明了大麻素受体激活在 DA 传递调节和时间引导奖励寻求控制中的作用。当前的综述将探讨间隔定时的纹状体节拍频率模型,以及它与大麻素信号之间的关系,并提出一个神经回路,通过该回路调节内感受时间线索。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3177/4150350/12ae61d5d365/fpsyt-05-00118-g001.jpg

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