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内侧前额叶皮质对于一个诱发食欲的情境性条件刺激在饱腹大鼠中促进进食是必要的。

Medial prefrontal cortex is necessary for an appetitive contextual conditioned stimulus to promote eating in sated rats.

作者信息

Petrovich Gorica D, Ross Cali A, Holland Peter C, Gallagher Michela

机构信息

Department of Psychological and Brain Sciences, Johns Hopkins University, Baltimore, Maryland 21218, USA.

出版信息

J Neurosci. 2007 Jun 13;27(24):6436-41. doi: 10.1523/JNEUROSCI.5001-06.2007.

Abstract

Motivation plays an important role in the control of food intake. A cue that acquires motivational properties through pairings with food consumption when an animal is hungry can override satiety and promote eating in sated rats. This phenomenon of conditioned potentiation of feeding is mediated by connections between the forebrain and the lateral hypothalamic area (LHA). In a recent study using markers for cellular activation, neurons in the ventral medial prefrontal cortex (vmPFC) that project directly to the LHA were strongly engaged after exposure to a conditioned cue that stimulates eating in sated rats. Here, we examined whether those vmPFC neurons are necessary for conditioned potentiation of eating. We trained rats in a paradigm in which the context provided conditioning cues. Rats with bilateral neurotoxic lesions of vmPFC were impaired in context-enhanced food consumption in tests when the rats were sated. At the same time, vmPFC lesions did not produce changes in food consumption in the home cage or changes in body weight during training. Thus, vmPFC neurotoxic lesions produced impairment in food consumption specifically driven by conditioned motivational cues. The current findings suggest a critical role for vmPFC in the brain network that mediates control of conditioned motivation to eat perhaps by a mechanism akin to appetite or craving.

摘要

动机在食物摄入的控制中起着重要作用。当动物饥饿时,一个通过与食物消耗配对而获得动机属性的线索可以超越饱腹感,并促使饱腹的大鼠进食。这种条件性进食增强现象是由前脑与下丘脑外侧区(LHA)之间的连接介导的。在最近一项使用细胞激活标记物的研究中,直接投射到LHA的腹内侧前额叶皮层(vmPFC)中的神经元在暴露于刺激饱腹大鼠进食的条件性线索后被强烈激活。在这里,我们研究了这些vmPFC神经元对于条件性进食增强是否必要。我们在一种范式中训练大鼠,其中环境提供条件性线索。当大鼠饱腹时,vmPFC双侧神经毒性损伤的大鼠在测试中因环境增强的食物消耗受到损害。同时,vmPFC损伤在训练期间并未导致笼内食物消耗的变化或体重的变化。因此,vmPFC神经毒性损伤特别在由条件性动机线索驱动的食物消耗中产生损害。目前的研究结果表明,vmPFC在介导对条件性进食动机控制的脑网络中起着关键作用,可能是通过一种类似于食欲或渴望的机制。

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