首页> 外文期刊>The European Journal of Neuroscience >Migrating neurons cross a reelin-rich territory to form an organized tissue out of embryonic cortical slices.
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Migrating neurons cross a reelin-rich territory to form an organized tissue out of embryonic cortical slices.

机译:迁移的神经元穿过富含瑞林的区域,从胚胎皮层切片中形成有组织的组织。

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In this study we show that the radial migration of neuronal precursors out of cerebral cortex of embryonic brain slices cultured for 4-7 days gives rise to an organized tissue that forms de novo off developing slices. In our in vitro preparations, migrating neuronal precursors overshot the marginal zone, as did the elongation of radial glial processes out of the slices. These cells detached from radial glia at a distance from the cortex and differentiated into pyramidal and nonpyramidal profiles that expressed different neuronal markers. Glial precursors were shown to proliferate in the slice and in the neotissue, and to differentiate into astrocytes. We show that cells expressing reelin in the marginal zone of embryonic cortical slices persist after a week in culture, which implies that neuronal migration is not necessarily hindered by the presumed stop signals provided by reelin in the marginal zone. Furthermore, our results provide a new model for in vitro studies of migration and differentiation during cortical development.
机译:在这项研究中,我们表明,神经元前体从培养4-7天的胚胎脑切片的大脑皮层径向迁移出一个有组织的组织,该组织从发育的切片开始重新形成。在我们的体外制剂中,迁移的神经元前体超过了边缘区,放射状神经胶质突伸出切片也是如此。这些细胞从距大脑皮层一定距离的放射状胶质细胞分离,并分化成表达不同神经元标记物的锥体和非锥体分布。胶质前体显示在切片和新组织中增殖,并分化为星形胶质细胞。我们显示,在培养一周后,在胚皮质切片边缘区域表达reelin的细胞持续存在,这表明神经元迁移并不一定受到reelin在边缘区域提供的假定停止信号的阻碍。此外,我们的结果为皮层发育过程中迁移和分化的体外研究提供了新模型。

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