首页> 美国卫生研究院文献>Frontiers in Neural Circuits >Spatial distribution of D1R- and D2R-expressing medium-sized spiny neurons differs along the rostro-caudal axis of the mouse dorsal striatum
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Spatial distribution of D1R- and D2R-expressing medium-sized spiny neurons differs along the rostro-caudal axis of the mouse dorsal striatum

机译:表达D1R和D2R的中型多刺神经元的空间分布沿小鼠背侧纹状体的头尾轴不同

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摘要

The striatum projection neurons are striatonigral and striatopallidal medium-sized spiny neurons (MSNs) that preferentially express D1 (D1R) and D2 (D2R) dopamine receptors, respectively. It is generally assumed that these neurons are physically intermingled, without cytoarchitectural organization although this has not been tested. To address this question we used BAC transgenic mice expressing enhanced green fluorescence (EGFP) under the control of Drd1a or Drd2 promoter and spatial point pattern statistics. We demonstrate that D1R- and D2R-expressing MSNs are randomly distributed in most of the dorsal striatum, whereas a specific region in the caudal striatum, adjacent to the GPe, lacks neurons expressing markers for indirect pathway neurons. This area comprises almost exclusively D1R-expressing MSNs. These neurons receive excitatory inputs from the primary auditory cortex and the medial geniculate thalamic nucleus and a rich dopamine innervation. This area contains cholinergic and GABAergic interneurons but apparently no D2R/A2aR modulation because no fluorescence was detected in the neuropil of Drd2-EGFP or Drd2-Cre, and Adora-Cre BAC transgenic mice crossed with reporter mice. This striatal area that expresses calbindin D28k, VGluT1 and 2, is poor in μ opiate receptors and preproenkephalin. Altogether, the differences observed in D1R-MSNs, D2R-MSNs, and interneurons densities, as well as the anatomical segregation of D1R- and D2R/A2aR-expressing MSNs suggest that there are regional differences in the organization of the striatum.
机译:纹状体投射神经元是纹状体顶神经和纹状体腹膜中型棘状神经元(MSN),分别优先表达D1(D1R)和D2(D2R)多巴胺受体。通常认为这些神经元在物理上混杂在一起,没有细胞架构组织,尽管尚未经过测试。为了解决这个问题,我们使用了在Drd1a或Drd2启动子和空间点模式统计控制下表达增强的绿色荧光(EGFP)的BAC转基因小鼠。我们证明D1R和D2R表达MSNs随机分布在大多数背侧纹状体中,而尾部纹状体中与GPe相邻的特定区域缺少表达间接途径神经元标记的神经元。该区域几乎只包含表达D1R的MSN。这些神经元从初级听觉皮层和内侧膝状丘脑核获得兴奋性输入,并吸收丰富的多巴胺。该区域包含胆碱能和GABA能的神经元,但显然没有D2R / A2aR调节,因为在Drd2-EGFP或Drd2-Cre的神经细胞和Adora-Cre BAC转基因小鼠与报告小鼠杂交后均未检测到荧光。表达calbindin D28k,VGluT1和2的纹状体区域的阿片受体和前脑啡肽水平很低。总之,在D1R-MSN,D2R-MSN和中间神经元密度中观察到的差异,以及D1R-和D2R / A2aR表达MSN的解剖分离表明纹状体的组织存在区域差异。

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