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首页> 外文期刊>Neuropsychopharmacology >Endocannabinoid Hedonic Hotspot for Sensory Pleasure: Anandamide in Nucleus Accumbens Shell Enhances |[lsquo]|Liking|[rsquo]| of a Sweet Reward
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Endocannabinoid Hedonic Hotspot for Sensory Pleasure: Anandamide in Nucleus Accumbens Shell Enhances |[lsquo]|Liking|[rsquo]| of a Sweet Reward

机译:感官愉悦的内源性享乐主义热点:伏隔核壳中的花生四烯酸酰胺增强| [lsquo] |喜欢| [rsquo] |甜蜜奖励的

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Cannabinoid drugs such as 9-THC are euphoric and rewarding, and also stimulate food intake in humans and animals. Little is known about how naturally occurring endogenous brain cannabinoids mediate pleasure from food or other natural sensory rewards. The taste reactivity paradigm measures effects of brain manipulations on affective orofacial reactions to intraorally administered pleasant and unpleasant tastes. Here we tested if anandamide microinjection into medial nucleus accumbens shell enhances these affective reactions to sweet and bitter tastes in rats. Anandamide doubled the number of positive 'liking' reactions elicited by intraoral sucrose, without altering negative 'disliking' reactions to bitter quinine. Anandamide microinjections produced Fos plumes of approximately 0.02–1mm3 volume. Plume-based maps, integrated with behavioral data, identified the medial shell of accumbens as the anatomical hotspot responsible for hedonic amplification. Anandamide produced especially intense hedonic enhancement in a roughly 1.6mm3 'hedonic hotspot' in dorsal medial shell, where anandamide also stimulated eating behavior. These results demonstrate that endocannabinoid signals within medial accumbens shell specifically amplify the positive hedonic impact of a natural reward (though identification of the receptor specificity of this effect will require future studies). Identification of an endocannabinoid hotspot for sensory pleasure gives insight into brain mechanisms of natural reward, and may be relevant to understanding the neural effects of cannabinoid drugs of abuse and therapeutic agents.
机译:大麻素药物(例如9-THC)令人欣喜和有益,也可以刺激人类和动物的食物摄入。关于天然产生的内源性大麻素如何通过食物或其他自然的感官奖励来介导愉悦感,人们所知甚少。味觉反应性范例测量大脑操纵对口内给予的令人愉悦和令人不快的味道的情感性口腔反应的影响。在这里,我们测试了向伏隔内侧壳中显微注射anandamide是否增强了这些对大鼠的甜味和苦味的情感反应。 Anandamide将口内蔗糖引起的阳性“喜欢”反应的数量增加了一倍,而不会改变对苦奎宁的阴性“讨厌”反应。 Anandamide显微注射产生的Fos羽约为0.02-1mm3。基于羽状图,结合行为数据,将伏隔肌的内侧壳识别为负责享乐放大的解剖学热点。 Anandamide在背内侧壳中约1.6mm3的“享乐热点”产生特别强烈的享乐性增强,其中anandamide也刺激进食行为。这些结果表明内侧伏隔壳内的内源性大麻素信号可特异性放大自然奖励的正享乐影响(尽管鉴定这种作用的受体特异性尚需进一步研究)。内源性大麻素热点的识别有助于感觉愉悦,从而洞悉自然奖励的大脑机制,并且可能与了解大麻素滥用药物和治疗药物的神经作用有关。

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