首页> 美国卫生研究院文献>Frontiers in Behavioral Neuroscience >Norepinephrine in the Medial Pre-frontal Cortex Supports Accumbens Shell Responses to a Novel Palatable Food in Food-Restricted Mice Only
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Norepinephrine in the Medial Pre-frontal Cortex Supports Accumbens Shell Responses to a Novel Palatable Food in Food-Restricted Mice Only

机译:内侧前额叶皮层中的去甲肾上腺素仅在食物受限的小鼠中支持伏隔壳对新型美味食物的反应。

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摘要

Previous findings from this laboratory demonstrate: (1) that different classes of addictive drugs require intact norepinephrine (NE) transmission in the medial pre Frontal Cortex (mpFC) to promote conditioned place preference and to increase dopamine (DA) tone in the nucleus accumbens shell (NAc Shell); (2) that only food-restricted mice require intact NE transmission in the mpFC to develop conditioned preference for a context associated with milk chocolate; and (3) that food-restricted mice show a significantly larger increase of mpFC NE outflow then free fed mice when experiencing the palatable food for the first time. In the present study we tested the hypothesis that only the high levels of frontal cortical NE elicited by the natural reward in food restricted mice stimulate mesoaccumbens DA transmission. To this aim we investigated the ability of a first experience with milk chocolate to increase DA outflow in the accumbens Shell and c-fos expression in striatal and limbic areas of food–restricted and ad-libitum fed mice. Moreover, we tested the effects of a selective depletion of frontal cortical NE on both responses in either feeding group. Only in food-restricted mice milk chocolate induced an increase of DA outflow beyond baseline in the accumbens Shell and a c-fos expression larger than that promoted by a novel inedible object in the nucleus accumbens. Moreover, depletion of frontal cortical NE selectively prevented both the increase of DA outflow and the large expression of c-fos promoted by milk chocolate in the NAc Shell of food-restricted mice. These findings support the conclusion that in food-restricted mice a novel palatable food activates the motivational circuit engaged by addictive drugs and support the development of noradrenergic pharmacology of motivational disturbances.
机译:该实验室以前的发现表明:(1)不同种类的成瘾药物需要在额额叶前皮质(mpFC)内侧完整地传递去甲肾上腺素(NE),以促进条件性位置偏好并增加伏隔核壳中的多巴胺(DA)调(NAc Shell); (2)只有受食物限制的老鼠才需要mpFC中完整的NE传播,以针对与牛奶巧克力相关的环境发展条件性偏好; (3)首次接触可口食物时,食物受限的老鼠显示mpFC NE流出的增加明显大于免费进食的老鼠。在本研究中,我们测试了以下假说:受食物限制的小鼠中的自然奖赏仅引起高水平的额叶皮质NE刺激中隔累积量DA传播。为了达到这个目的,我们研究了牛奶巧克力初次体验的能力,以增加限制食物和随意喂养小鼠的纹状体和边缘区的伏隔壳中的DA流出和c-fos表达。此外,我们测试了任一饲喂组中选择性去除额叶皮质NE对两种反应的影响。仅在食物受限的小鼠中,牛奶巧克力诱导伏安壳中DA流出量增加超过基线,并且c-fos表达大于伏安核中新的不可食用物体所促进的表达。此外,额叶皮质NE的消耗选择性地阻止了食物限制型小鼠的NAc外壳中DA流出的增加和牛奶巧克力促进的c-fos的大量表达。这些发现支持这样的结论,即在食物受限的小鼠中,一种新的可口食物会激活成瘾药物参与的动机回路,并支持动机障碍的去甲肾上腺素药理学的发展。

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