首页> 外文期刊>The Journal of Comparative Neurology >Abnormal positioning of granule cells alters afferent fiber distribution in the mouse fascia dentata: morphologic evidence from reeler, apolipoprotein E receptor 2-, and very low density lipoprotein receptor knockout mice.
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Abnormal positioning of granule cells alters afferent fiber distribution in the mouse fascia dentata: morphologic evidence from reeler, apolipoprotein E receptor 2-, and very low density lipoprotein receptor knockout mice.

机译:颗粒细胞的异常定位改变了小鼠筋膜中传入纤维的分布:来自reeler,载脂蛋白E受体2-和极低密度脂蛋白受体敲除小鼠的形态学证据。

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The fascia dentata of the hippocampal formation is characterized by the nonoverlapping and lamina-specific termination of afferent fibers: entorhinal fibers terminate in the outer molecular layer and commissural/associational fibers terminate in the inner molecular layer. It has been proposed that this fiber lamination depends on the presence of the correct postsynaptic partner at the time of fiber ingrowth during development. Pioneer neurons that guide afferent fibers to their correct layers as well as signals located on granule cells have both been implicated. To study the role of granule cells for the lamina-specific ingrowth of afferents, the cyto- and fiberarchitecture of three mouse mutants (very low density lipoprotein receptor knockout mouse, apolipoprotein E receptor 2 knockout mouse, and reeler mouse) that show different degrees of granule cell migration defects were analyzed. Anterograde tracing with Phaseolus vulgaris-leucoagglutinin was used to visualize the afferent fiber systems, and immunohistochemistry was used to determine the position of their putative target cells. In controls, granule cells are packed in a single layer. This laminar organization is mildly altered in very low density lipoprotein receptor knockout mice, moderately disturbed in apolipoprotein E receptor 2 knockout mice, and severely disrupted in reeler mice. These changes in granule cell distribution are mirrored by the distribution of commissural fibers. In contrast, changes in granule cell distribution do not severely affect the laminar termination of entorhinal fibers. These data provide further evidence for a role of granule cells in the laminar termination of commissural/associational afferents to the fascia dentata.
机译:海马结构的齿状筋膜的特征是传入纤维的非重叠和层状特异性终止:内嗅神经纤维终止于外分子层,连合/缔合纤维终止于内分子层。已经提出,这种纤维层压取决于发育过程中纤维向内生长时正确的突触后伴侣的存在。引导神经传入纤维进入其正确层的先锋神经元以及位于颗粒细胞上的信号均已涉及。为了研究颗粒细胞在传入特定层的长进中的作用,研究了三种小鼠突变体(非常低密度脂蛋白受体敲除小鼠,载脂蛋白E受体2敲除小鼠和绕线器小鼠)的细胞结构和纤维结构。分析颗粒细胞迁移缺陷。用菜豆-白细胞凝集素进行顺行示踪以可视化传入纤维系统,并用免疫组织化学确定其假定靶细胞的位置。在对照中,颗粒细胞被包装成单层。在非常低密度的脂蛋白受体基因敲除小鼠中,这种层状组织被轻度改变;在载脂蛋白E受体2基因敲除小鼠中,该层状组织被中等程度地破坏;而在绕线机小鼠中被严重破坏。连合纤维的分布反映了颗粒细胞分布的这些变化。相反,颗粒细胞分布的变化不会严重影响内嗅神经纤维的层状终止。这些数据为粒状细胞在齿状筋膜的连合/缔合传入的层状终止中的作用提供了进一步的证据。

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