首页> 美国卫生研究院文献>The Journal of Neuroscience >Neuropeptide Y in the cerebral cortex and the caudate-putamen nuclei: ultrastructural basis for interactions with GABAergic and non-GABAergic neurons
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Neuropeptide Y in the cerebral cortex and the caudate-putamen nuclei: ultrastructural basis for interactions with GABAergic and non-GABAergic neurons

机译:大脑皮层和尾状-丘脑核中的神经肽Y:与GABA能和非GABA能神经元相互作用的超微结构基础

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摘要

In the cerebral cortex and caudate-putamen (CP) nuclei, neuropeptide Y (NPY) immunoreactivity is detectable within 1–2% of all neurons. The NPY-immunoreactive neurons are interneuronal and are believed to be mostly GABAergic in the cerebral cortex but not in the CP nuclei. Thus NPY and GABA may play different roles in the circuitry within these 2 regions. We tested this possibility by comparing the ultrastructure of NPY-containing neurons between (1) cortex (somatosensory and anterior cingulate areas) versus dorsolateral CP; and (2) GABAergic versus non- GABAergic NPY neurons within each area. Single coronal sections through the rat forebrain were dually labeled for GABA and NPY by combining immunoautoradiography with the immunoperoxidase method. NPY-containing neurons with or without GABA occurred throughout the rostrocaudal portions of CP and all laminae of somatosensory and anterior cingulate cortex. Comparisons between the areas confirmed that somata and terminals dually labeled for GABA and NPY were more prevalent in the cortex. NPY terminals lacking detectable GABA immunoreactivity also were found within the cortex, thus suggesting additional heterogeneity in cortical NPY innervation. The ultrastructural features of NPY perikarya in both regions were morphologically similar regardless of whether the cells also contained GABA. Most synaptic inputs to NPY neurons occurred at distal dendrites. In comparison to neighboring neurons, synaptic inputs to proximal dendrites and somata of NPY neurons of cortex and CP were rare, suggesting that fewer and weaker inputs may modulate the excitability of NPY-containing neurons. In both regions, nearly all NPY- and NPY-GABA-labeled terminals formed symmetric junctions suggestive of inhibitory action. The majority of these junctions were with dendrites containing neither NPY nor GABA. NPY terminals formed few contacts on proximal dendrites and somata of GABAergic neurons (8% of 179 contacts in cortex; 12% of 73 contacts in CP) which, unlike most singly-labeled GABAergic neurons, were sparsely innervated. Thus, NPY may play a more prominent role in modulation of certain GABAergic neurons than would be predicted by the observed frequency of NPY-to-GABA contacts in the two regions. One notable regional difference was the greater prevalence in cortex of axoaxonic associations between NPY-immunoreactive terminals and other terminals, some of which also contained NPY. These nonsynaptic associations may be involved in the modulation of (1) the release of NPY by another transmitter or (2) NPY's modulation of release of other transmitters in cortex.
机译:在大脑皮层和尾状核(CP)核中,在所有神经元的1-2%内可检测到神经肽Y(NPY)免疫反应性。 NPY免疫反应性神经元是神经元间的,被认为在大脑皮层中主要是GABA能的,而在CP核中则不是。因此,NPY和GABA在这两个区域内的电路中可能扮演不同的角色。我们通过比较(1)皮质(体感区和前扣带区)与背外侧CP之间的含NPY的神经元的超微结构,测试了这种可能性。 (2)每个区域内的GABA能级和非GABA能级NPY神经元。通过结合免疫放射自显影技术和免疫过氧化物酶方法,对大鼠前脑的单个冠状切片进行GABA和NPY双重标记。含有或不含GABA的含NPY的神经元遍布CP的整个尾脑部分以及体感和前扣带回皮层的所有薄片。区域之间的比较证实,双重标记有GABA和NPY的体细胞和末端在皮质中更为普遍。在皮层内也发现了缺乏可检测的GABA免疫反应性的NPY末端,因此提示皮层NPY神经支配存在其他异质性。不论细胞是否还含有GABA,这两个区域中NPY周核的超微结构特征在形态上都相似。 NPY神经元的大多数突触输入发生在远端树突上。与邻近的神经元相比,皮质和CP的NPY神经元的近端树突和躯体的突触输入很少,这表明较少和较弱的输入可能会调节含NPY的神经元的兴奋性。在这两个区域中,几乎所有的NPY和NPY-GABA标记的末端均形成对称连接,提示抑制作用。这些连接的大多数与不包含NPY或GABA的树枝状晶体有关。 NPY末端在GABA能神经元的近端树突和躯体上几乎没有接触(皮层179个接触的8%; CP 73个接触的12%),与大多数单标记的GABA能神经元不同,它们稀疏地受神经支配。因此,与在两个区域中观察到的NPY与GABA接触的频率所预测的结果相比,NPY在某些GABA能神经元的调节中可能起更重要的作用。一个显着的区域差异是NPY免疫反应性末端与其他末端(其中一些也包含NPY)之间的轴突相关性皮层患病率更高。这些非突触缔合可能参与以下调节:(1)另一个发射器释放NPY或(2)皮质中其他发射器释放NPY的调制。

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