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Distribution and compartmental organization of GABAergic medium-sized spiny neurons in the mouse nucleus accumbens

机译:GABA能级中型多刺神经元在伏隔核中的分布和区室组织

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摘要

The nucleus accumbens (NAc) is a critical brain region involved in many reward-related behaviors. The NAc comprises major compartments the core and the shell, which encompass several subterritories. GABAergic medium-sized spiny neurons (MSNs) constitute the output neurons of the NAc core and shell. While the functional organization of the NAc core outputs resembles the one described for the dorsal striatum, a simple classification of the NAc shell neurons has been difficult to define due to the complexity of the compartmental segregation of cells. We used a variety of BAC transgenic mice expressing enhanced green fluorescence (EGFP) or the Cre-recombinase (Cre) under the control of the promoter of dopamine D1, D2, and D3 receptors and of adenosine A2a receptor to dissect the microanatomy of the NAc. Moreover, using various immunological markers we characterized in detail the distribution of MSNs in the mouse NAc. In addition, cell-type specific extracellular signal-regulated kinase (ERK) phosphorylation in the NAc subterritories was analyzed following acute administration of (a D1R-like agonist), quinpirole (a D2 receptors (D2R)-like agonist), apomorphine (a non-selective DA receptor agonist), raclopride (a D2R-like antagonist), and psychostimulant drugs, including cocaine and d-amphetamine. Each drug generated a unique topography and cell-type specific activation of ERK in the NAc. Our results show the existence of marked differences in the receptor expression pattern and functional activation of MSNs within the shell subterritories. This study emphasizes the anatomical and functional heterogeneity of the NAc, which will have to be considered in its further study.
机译:伏伏核(NAc)是参与许多与奖励相关的行为的重要大脑区域。 NAc包括核心和外壳的主要部分,这些主要部分包含几个子区域。 GABA能中型棘突神经元(MSN)构成NAc核和壳的输出神经元。虽然NAc核心输出的功能组织类似于为背侧纹状体描述的组织,但由于细胞的隔室分离的复杂性,难以定义NAc壳神经元的简单分类。我们使用了在多巴胺D1,D2和D3受体和腺苷A2a受体的启动子控制下表达增强的绿色荧光(EGFP)或Cre重组酶(Cre)的各种BAC转基因小鼠来解剖NAc的显微解剖。此外,使用各种免疫标记,我们详细描述了小鼠NAc中MSN的分布。此外,在急性给予(一种D1R样激动剂),喹吡罗(一种D2受体(D2R)样激动剂),阿扑吗啡(一种吗啡)后,分析了NAc子域中细胞类型特异性的细胞外信号调节激酶(ERK)磷酸化。非选择性DA受体激动剂),雷洛必利(一种D2R样拮抗剂)和精神刺激药,包括可卡因和d-苯异丙胺。每种药物在NAc中产生独特的形貌和ERK的细胞类型特异性激活。我们的结果表明壳亚域内的受体表达模式和MSN功能激活存在明显差异。这项研究强调了NAc的解剖学和功能异质性,在其进一步的研究中必须予以考虑。

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