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首页> 外文期刊>The Journal of Comparative Neurology >Kainate-activated cobalt uptake in the primary gustatory nucleus in goldfish: visualization of the morphology and distribution of cells expressing AMPA/kainate receptors in the vagal lobe.
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Kainate-activated cobalt uptake in the primary gustatory nucleus in goldfish: visualization of the morphology and distribution of cells expressing AMPA/kainate receptors in the vagal lobe.

机译:金鱼初级味觉核中的海藻酸盐激活的钴摄取:迷走性小叶中表达AMPA /海藻酸盐受体的细胞的形态和分布的可视化。

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Gustatory afferent fibers of the vagus nerve that innervate taste buds of the oropharynx of the goldfish, Carassius auratus, project to the vagal lobe, which is a laminated gustatory nucleus in the dorsal medulla. As in the mammalian gustatory system, responses by second-order cells in the goldfish medulla are mediated by N-methyl-D-aspartate (NMDA) and non-NMDA ionotropic glutamate receptors. We utilized a cobalt uptake technique to label vagal lobe neurons that possess cobalt-permeable ionotropic glutamate receptors. Vagal lobe slices were bathed in kainate (40 microM) or glutamate (0.5 or 1 mM) in the presence of CoCl(2), which can pass into cells through the ligand-gated cation channels of non-NMDA receptors made up of certain subunit combinations. Cobalt-filled cells and dendrites were observed in slices that were activated by kainate or glutamate, but not in control slices that were bathed in CoCl(2) alone, nor in slices that were bathed with the non-NMDA receptor antagonist 6,7-dinitroquinoxaline-2,3-dione (10 microM) in addition to an agonist. Likewise, simple depolarization of the cells with KCl failed to induce cobalt loading. Cobalt-filled round unipolar cells, elongate or globular bipolar cells, and multipolar cells with elongate or polygonal perikarya were distributed throughout the cell layers in the sensory zone of the vagal lobe. Numerous labeled neurons had dendrites spanning layers IV and VI, the two principal layers of primary afferent input. Apical and basal dendrites often extended radially through neighboring laminae, but many cells also extended dendrites tangential to the lamination of the sensory zone. In the motor layer, cell bodies and proximal dendrites of small, multipolar neurons, and large motoneurons were regularly loaded with cobalt. Copyright 2001 Wiley-Liss, Inc.
机译:支配金鱼口咽的味蕾的迷走神经的传入神经传入纤维伸向迷走神经叶,迷走神经叶是背髓中的叠层味觉核。像在哺乳动物的味觉系统中一样,金鱼髓质中二级细胞的反应是由N-甲基-D-天冬氨酸(NMDA)和非NMDA离子型谷氨酸受体介导的。我们利用钴吸收技术来标记具有钴可渗透离子型谷氨酸受体的迷走神经元。在CoCl(2)存在下,将海藻叶切片浸入海藻酸盐(40 microM)或谷氨酸(0.5或1 mM)中,这些盐可以通过非NMDA受体的配体门控阳离子通道进入细胞,该通道由某些亚基组成组合。在由海藻酸盐或谷氨酸激活的切片中观察到钴填充的细胞和树突,但在单独浸泡在CoCl(2)中的对照切片中以及在用非NMDA受体拮抗剂6,7-除激动剂外,还包括二硝基喹喔啉-2,3-二酮(10 microM)。同样,用KCl对细胞进行简单的去极化不能诱导钴的负载。充满钴的圆形单极细胞,细长或球形双极细胞以及具有细长或多边形周核的多极细胞分布在迷走神经叶感觉区的整个细胞层中。许多标记的神经元的树突跨越第IV和VI层,这是主要传入输入的两个主要层。顶端和基底树突通常沿径向延伸穿过邻近的薄片,但是许多细胞也延伸与切向的感觉区相切的树突。在运动层中,小型,多极神经元和大型运动神经元的细胞体和近端树突定期装载钴。版权所有2001 Wiley-Liss,Inc.

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