首页> 外文期刊>Brain research >Activation of feeding-related neural circuitry after unilateral injections of muscimol into the nucleus accumbens shell.
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Activation of feeding-related neural circuitry after unilateral injections of muscimol into the nucleus accumbens shell.

机译:单向向伏伏核壳注射麝香酚后,与进食相关的神经回路激活。

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Chemical inhibition of neurons in the nucleus accumbens shell (AcbSh) elicits intense, behaviorally specific, feeding in satiated rats. We have demonstrated previously that this treatment activates a number of brain regions, most significantly the lateral hypothalamus (LH). This activation could be elicited through a direct neural connection with the AcbSh or secondarily through changes in autonomic activity, stress, or circulating levels of orexigenic or satiety factors. In the present study, we used the immunohistochemical localization of Fos protein to map neuronal activation after unilateral muscimol injections into the AcbSh to determine whether AcbSh-mediated Fos expression remains lateralized in the circuit and whether secondary systemic changes in the rat can be excluded as primary factors in the activation of downstream component nuclei. Rats receiving only saline injections exhibited very little Fos immunoreactivity. In contrast, unilateral injections of muscimol into the AcbSh consistently increased Fos expression in several brain regions. Three distinct patterns of expression were observed. Fos synthesis in the LH was increased only on the side of the brain ipsilateral to the muscimol injection. Fos expression remained primarily ipsilateral to the injection site in the septohypothalamic, paraventricular hypothalamic (PVN), paratenial thalamic, and lateral habenular nuclei, and medial substantia nigra, but was increased bilaterally in the piriform cortex, supraoptic nucleus, central nucleus of the amygdala, and nucleus of the solitary tract. Smaller numbers of Fos-immunoreactive cells were seen unilaterally in the bed nucleus of the stria terminalis, medial ventral pallidum, arcuate nucleus, and ventral tegmental area and bilaterally in the supraoptic and tuberomammillary nuclei. The labeling in the LH, PVN, and other unilaterally labeled structures provides evidence that these brain regions are components of an AcbSh-mediated neural circuit and suggests that they may be involved in the expression of AcbSh-mediated feeding behavior.
机译:对伏伏核壳(AcbSh)中神经元的化学抑制作用引起饱足大鼠的强烈行为特定行为。以前我们已经证明了这种治疗方法可以激活许多大脑区域,最明显的是激活下丘脑外侧(LH)。这种激活可以通过与AcbSh的直接神经联系引起,或者其次是通过自主神经活动,压力或食源性或饱腹感因子的循环水平变化而引起。在本研究中,我们使用Fos蛋白的免疫组化定位来绘制单侧向muscimol注射到AcbSh中的神经元激活图,以确定AcbSh介导的Fos表达是否在电路中仍然侧向分布,以及是否可以将大鼠的继发性系统性变化排除在外下游组分核活化的因素。仅接受盐水注射的大鼠表现出很少的Fos免疫反应性。相比之下,向AcbSh单方面注射麝香酚一直在几个大脑区域增加Fos表达。观察到三种不同的表达模式。 LH中的Fos合成仅在muscimol注射的同侧大脑一侧增加。 Fos表达主要位于下丘脑,丘脑旁下丘脑(PVN),丘脑旁丘脑和外侧lateral状核以及黑质内侧,但在注射部位同侧,但在梨状皮层,视上核,杏仁核中央核中双侧增加。和孤立道的核。在终生纹状体床核,腹侧内侧苍白球,弓形核和腹侧被盖区的单核以及双侧在视光和结核母核中可见较少的Fos免疫反应细胞。 LH,PVN和其他单侧标记结构中的标记提供了证据,表明这些大脑区域是AcbSh介导的神经回路的组成部分,并暗示它们可能参与了AcbSh介导的进食行为的表达。

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