首页> 美国卫生研究院文献>The Journal of Neuroscience >Mu-Opioid Stimulation in Rat Prefrontal Cortex Engages Hypothalamic Orexin/Hypocretin-Containing Neurons and Reveals Dissociable Roles of Nucleus Accumbens and Hypothalamus in Cortically Driven Feeding
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Mu-Opioid Stimulation in Rat Prefrontal Cortex Engages Hypothalamic Orexin/Hypocretin-Containing Neurons and Reveals Dissociable Roles of Nucleus Accumbens and Hypothalamus in Cortically Driven Feeding

机译:大鼠前额叶皮层中的阿片类药物刺激参与下丘脑食欲素/含有降血钙素的神经元并揭示皮质核和下丘脑在皮质驱动喂养中的分离作用。

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摘要

Mu-opioid receptor (μOR) stimulation within ventral medial prefrontal cortex (vmPFC) induces feeding and hyperactivity, resulting possibly from recruitment of glutamate signaling in multiple vmPFC projection targets. We tested this hypothesis by analyzing Fos expression in vmPFC terminal fields after intra-vmPFC μOR stimulation, and by examining of the impact of glutamate receptor blockade in two feeding-related targets of vmPFC, the lateral-perifornical hypothalamic area (LH-PeF) and nucleus accumbens shell (Acb shell), upon behavioral effects elicited by intra-vmPFC μOR stimulation in rats. Intra-vmPFC infusion of the μOR agonist, DAMGO, provoked Fos expression in the dorsomedial sector of tuberal hypothalamus (including the perifornical area) and increased the percentage of Fos-expressing hypocretin/orexin-immunoreactive neurons in these zones. NMDA receptor blockade in the LH-PeF nearly eliminated intra-vmPFC DAMGO-induced food intake without altering DAMGO-induced hyperactivity. In contrast, blocking AMPA-type glutamate receptors within the Acb shell (the feeding-relevant subtype in this structure) antagonized intra-vmPFC DAMGO-induced hyperlocomotion but enhanced food intake. Intra-vmPFC DAMGO also elevated the breakpoint for sucrose-reinforced progressive-ratio responding; this effect was significantly enhanced by concomitant AMPA blockade in the Acb shell. Conversely, intra-Acb shell AMPA stimulation reduced breakpoint and increased nonspecific responding on the inactive lever. These data indicate intra-vmPFC μOR signaling jointly modulates appetitive motivation and generalized motoric activation through functionally dissociable vmPFC projection targets. These findings may shed light on the circuitry underlying disorganized appetitive responses in psychopathology; e.g., binge eating and opiate or alcohol abuse, disorders in which μORs and aberrant cortical activation have been implicated.
机译:腹内侧前额叶皮层(vmPFC)内的Mu阿片受体(μOR)刺激诱导进食和活动亢进,可能是由于在多个vmPFC投影目标中募集了谷氨酸信号。我们通过分析vmPFC内μOR刺激后vmPFC末端区域中的Fos表达,并检查谷氨酸受体阻滞对vmPFC的两个进食相关靶标,外侧腹膜下丘脑区(LH-PeF)和在大鼠内vmPFCμOR刺激引起的行为效应后,伏伏核壳(Acb壳)形成。 μOR激动剂DAMGO的vmPFC内输注引起了在下丘脑(包括肾小管周围区)的背部上皮部分Fos的表达,并增加了这些区域中表达Fos的降钙素/尿素免疫反应性神经元的百分比。 LH-PeF中的NMDA受体阻滞几乎消除了vmPFC内DAMGO诱导的食物摄入,而没有改变DAMGO诱导的过度活跃。相反,在Acb壳(此结构中与进食相关的亚型)内阻断AMPA型谷氨酸受体可对抗vmPFC DAMGO诱导的运动过度,但可增加食物摄入。 Intra-vmPFC DAMGO还提高了蔗糖增强的渐进比率响应的断点;通过在Acb外壳中同时进行AMPA阻断,可以显着增强该效果。相反,Acb内壳AMPA刺激减少了断点,并增加了非活动杠杆的非特异性反应。这些数据表明,vmPFC内的μOR信号通过功能上可分离的vmPFC投影目标共同调节食欲和广义运动激活。这些发现可能阐明精神病理学中无规律的食欲反应的潜在回路。例如暴饮暴食和鸦片或酒精滥用,其中牵涉到μOR和异常皮质激活的疾病。

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