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阿片类药物作用后多巴胺神经元的广泛性线索反应性

Generalized cue reactivity in dopamine neurons after opioids.

作者信息

Lehmann Collin M, Miller Nora E, Nair Varun S, Costa Kauê M, Schoenbaum Geoffrey, Moussawi Khaled

机构信息

Department of Psychiatry, University of Pittsburgh; Pittsburgh, 15219, USA.

Department of Psychology, University of Alabama at Birmingham; Birmingham, 35233, USA.

出版信息

bioRxiv. 2024 Jun 2:2024.06.02.597025. doi: 10.1101/2024.06.02.597025.

Abstract

Cue reactivity is the maladaptive neurobiological and behavioral response upon exposure to drug cues and is a major driver of relapse. The leading hypothesis is that dopamine release by addictive drugs represents a persistently positive reward prediction error that causes runaway enhancement of dopamine responses to drug cues, leading to their pathological overvaluation compared to non-drug reward alternatives. However, this hypothesis has not been directly tested. Here we developed Pavlovian and operant procedures to measure firing responses, within the same dopamine neurons, to drug versus natural reward cues, which we found to be similarly enhanced compared to cues predicting natural rewards in drug-naïve controls. This enhancement was associated with increased behavioral reactivity to the drug cue, suggesting that dopamine release is still critical to cue reactivity, albeit not as previously hypothesized. These results challenge the prevailing hypothesis of cue reactivity, warranting new models of dopaminergic function in drug addiction, and provide critical insights into the neurobiology of cue reactivity with potential implications for relapse prevention.

摘要

线索反应性是指个体在接触毒品线索时产生的适应不良的神经生物学和行为反应,是导致复吸的主要因素。目前的主要假说是,成瘾性药物释放的多巴胺代表了一种持续的正向奖励预测误差,这种误差会导致多巴胺对毒品线索的反应失控增强,与非毒品奖励选择相比,导致对毒品线索的病理性高估。然而,这一假说尚未得到直接验证。在此,我们开发了经典条件反射和操作性条件反射程序,以测量同一多巴胺神经元对毒品线索与自然奖励线索的放电反应,我们发现,与预测天真对照组自然奖励的线索相比,毒品线索的放电反应同样增强。这种增强与对毒品线索的行为反应性增加有关,表明多巴胺释放对线索反应性仍然至关重要,尽管并非如先前假设的那样。这些结果挑战了关于线索反应性的主流假说,为药物成瘾中多巴胺能功能的新模型提供了依据,并为线索反应性的神经生物学提供了关键见解,对预防复吸具有潜在意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/321b/11160774/efbe71c27eab/nihpp-2024.06.02.597025v1-f0001.jpg

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