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Morphological evidence that hypothalamic substance P-containing afferents are capable of filtering the signal flow in the monkey hippocampal formation

机译:形态学证据表明含下丘脑物质P的传入物质能够过滤猴子海马结构中的信号流

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摘要

This study in the African green monkey (Cercopithecus aethiops) was designed to characterize the neurochemical features of hippocampal nonpyramidal neurons that are specific synaptic targets of substance P- containing projective neurons located in the supramammillary nucleus. Our previous studies provided evidence for an excitatory nature to this hypothalamo-hippocampal pathway and described the mode of termination of these afferents on hippocampal principal neurons. The present correlated light and electron microscopic immunocytochemical analysis, using the nickel-diaminobenzidine/diaminobenzidine double-labeling technique, revealed that this hippocampal afferent system establishes multiple, exclusively asymmetric synapses with three specific subpopulations of nonpyramidal cells: (1) a small portion of parvalbumin-containing basket cells located periodically in or adjacent to the granule cell layer of the dentate gyrus, which therefore inhibit only a subpopulation of granule cells; (2) some of the calbindin- immunoreactive local circuit neurons located in the hilar area; and (3) calbindin-positive cells occurring exclusively in the stratum molecular of the middle portion of the CA3 subfield. Postembedding studies revealed that the aforementioned calbindin-containing cells are GABAergic inhibitory neurons. Our studies indicate that hypothalamic afferents can effectively filter the information flow at different levels of the excitatory signal loop in the monkey hippocampal formation. Dentate granule cells, which are only stimulated by hypothalamic afferents, will transfer excitatory signals differently than those that are controlled by a feedforward inhibitory mechanism initiated by these fibers. In the CA3 subfield, the signal flow can again be depressed by those pyramidal neurons that are inhibited by calbindin-containing cells receiving an excitatory hypothalamic input.
机译:这项针对非洲绿猴(Cercopithecus aethiops)的研究旨在表征海马非锥体神经元的神经化学特征,海马非锥体神经元是位于腋上核中的含P物质投射神经元的特定突触靶标。我们以前的研究为这种下丘脑-海马途径的兴奋性提供了证据,并描述了这些传入海马主要神经元的终止模式。使用镍-二氨基联苯胺/二氨基联苯胺双重标记技术进行的本发明相关的光和电子显微镜免疫细胞化学分析显示,该海马传入系统建立了具有非锥体细胞的三个特定亚群的多个完全不对称的突触:(1)一小部分小白蛋白周期性地位于齿状回的颗粒细胞层中或附近的含篮细胞,因此仅抑制颗粒细胞的亚群; (2)位于肝门区的一些钙结合蛋白-免疫反应性局部回路神经元; (3)钙结合蛋白阳性细胞仅存在于CA3子域中间部分的层状分子中。嵌入后的研究表明上述含钙结合蛋白的细胞是GABA能抑制神经元。我们的研究表明,下丘脑传入神经可以有效过滤猴子海马结构中兴奋信号回路不同水平的信息流。仅由下丘脑传入细胞刺激的齿状颗粒细胞将传递的兴奋性信号与由这些纤维引发的前馈抑制机制所控制的信号不同。在CA3子域中,信号流可以再次被那些接受兴奋性下丘脑输入的含钙结合蛋白的细胞抑制的那些锥体神经元抑制。

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