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首页> 外文期刊>Pharmacology, Biochemistry and Behavior >Species differences in regional patterns of 3H-8-OH-DPAT and 3H-zolpidem binding in the rat and human brain.
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Species differences in regional patterns of 3H-8-OH-DPAT and 3H-zolpidem binding in the rat and human brain.

机译:大鼠和人脑中3H-8-OH-DPAT和3H-唑吡坦结合的区域模式的物种差异。

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The rat has proven to be a valuable preclinical model for characterizing effects of psychotrophic drugs and for identifying new psychotherapeutic agents in pharmacological screens. However, substantial differences have been described between the rat and human brain in regard to the neuroanatomical distribution of some drug and neurotransmitter receptor binding sites. To assess the utility of the rat as a model for the neuroanatomical topography of 5-HT1A and type 1 benzodiazepine (BDZ) receptors in humans, the distribution of binding sites for 3H-8-OH-DPAT (5-HT1A agonist) and 3H-zolpidem (type 1 BDZ agonist) was compared with autoradiography in select regions of the rat and human brain. Concordance in the binding patterns for the two ligands was observed in several brain regions for the two species. However, substantial differences were also found in the topography of binding sites for the ligands in the rat and human brain. High 3H-8-OH-DPAT binding was seen in the dorsal raphe nucleus and hippocampal formation in both the rat and human brain. However, species differences were observed in the relative distribution of ligand binding among hippocampal subregions. In the cerebral cortex, the laminar distribution of 3H-8-OH-DPAT binding sites was notably different for rats and humans. In humans, outer cortical layers were most densely labeled with 3H-8-OH-DPAT, whereas in the rat cortex, the highest binding was in the inner layers. A striking difference between rats and humans was observed for 3H-8-OH-DPAT binding in the lateral septal nucleus, which was densely labeled in the rat but weakly labeled in humans. Substantial differences between rats and humans were also observed for 3H-zolpidem binding. In the rat brain, high densities of binding sites were found in the medial septum, inferior colliculus, and substantia nigra reticulata. These regions showed very low 3H-zolpidem binding in the human brain. Intermediate binding was seen in the rat cerebral cortex, and low binding was found in the hippocampus. By contrast, in humans, cerebral cortical regions were the most densely labeled of all regions studied, and certain hippocampal subregions exhibited relatively high binding. The striking neuroanatomical differences in 3H-8-OH-DPAT and 3H-zolpidem binding observed between rats and humans suggest that different functional consequences may be produced within specific brain regions after administration of drugs that influence 5-HT1A and type 1 BZD receptors.
机译:事实证明,该大鼠是表征精神营养药物作用和在药理学筛选中鉴定新的心理治疗药物的有价值的临床前模型。但是,已经在大鼠和人脑之间就某些药物和神经递质受体结合位点的神经解剖学分布描述了实质性差异。为了评估大鼠作为人类5-HT1A和1型苯二氮卓(BDZ)受体的神经解剖结构模型的实用性,结合了3H-8-OH-DPAT(5-HT1A激动剂)和3H的结合位点的分布-zolpidem(1型BDZ激动剂)与放射自显影在大鼠和人脑的选定区域进行了比较。在两个物种的几个大脑区域中观察到了两个配体的结合模式的一致性。然而,在大鼠和人脑中的配体结合位点的形貌上也发现了实质性差异。在大鼠和人脑的背缝核和海马结构中均发现了高3H-8-OH-DPAT结合。然而,在海马亚区之间的配体结合的相对分布中观察到物种差异。在大脑皮层中,大鼠和人类的3H-8-OH-DPAT结合位点的层状分布明显不同。在人类中,皮层的最外层最密集地标记有3H-8-OH-DPAT,而在大鼠皮层中,最高的结合层是内层。观察到大鼠与人之间在间隔中外侧核中的3H-8-OH-DPAT结合存在显着差异,该结合在大鼠中被密集标记,而在人中被弱标记。还观察到大鼠和人之间在3H-唑吡坦结合方面存在实质性差异。在大鼠大脑中,在中隔,下丘和黑质网状组织中发现了高密度的结合位点。这些区域在人脑中显示出非常低的3H-zolpidem结合。在大鼠大脑皮层中观察到中间结合,在海马体中发现低结合。相比之下,在人类中,大脑皮层区域是所有研究区域中标记最密集的区域,某些海马亚区域显示出相对较高的结合力。在大鼠和人类之间观察到的3H-8-OH-DPAT和3H-zolpidem结合的惊人的神经解剖学差异表明,在施用影响5-HT1A和1型BZD受体的药物后,特定大脑区域可能会产生不同的功能性后果。

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