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首页> 外文期刊>Neuroscience: An International Journal under the Editorial Direction of IBRO >The early neuronal organization predicts the path followed by some major axonal bundles in the embryonic brainstem.
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The early neuronal organization predicts the path followed by some major axonal bundles in the embryonic brainstem.

机译:早期的神经元组织预测​​胚胎脑干中一些主要的轴突束所遵循的路径。

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In the embryonic CNS, preformed pathways precede the growth of axonal fasciculi [Katz M. J. and Lasek R. J. (1980) Cell Motil. 1, 141-157; Katz M. J. et al. (1980) Neuroscience 5, 821-833]. What are the developmental events that lead to the elaboration of these preformed pathways? To answer this question, we investigated the organization of the primitive neural tube and more particularly the arrangement of the early-generated cells using [3H]thymidine autoradiography or bromodeoxyuridine. Our data suggest that the position of early-generated cells might be involved in the setting of such pathways. In the brain stem of E12(0) (12 days and 0 h) and E12(15) rat embryos, the first-generated cells were organized into three longitudinal columns associated with glycoconjugate-rich extracellular spaces in the adjacent primitive marginal layer. Also, axons traced with 1,1'-dioctadecyl-3,3,3',3'-tetramethylindocarbocyanine perchlorate (DiI) were contiguous to the early-generated cellular columns and represented the primordium of the medial longitudinal fasciculus, the lateral longitudinal tract and the mesencephalic trigeminal tract. Our results show a correlation between the organization of early-generated cells, likely neurons, and the pattern of extracellular spaces in the marginal layer where axons grow. It has been reported in the literature that neurons produce elements of the extracellular matrix such as growth-modulating molecules or space-creating molecules. We therefore suggest that the position of early-generated neurons could be involved in the elaboration of a template for the setting of some major longitudinal tracts during embryonic development of the brainstem.
机译:在胚胎中枢神经系统中,预先形成的途径先于轴突束的生长[Katz M. J. and Lasek R. J.(1980)Cell Motil。 1,141-157; Katz M.J.等。 (1980)Neuroscience 5,821-833]。哪些发展事件导致了这些预先形成的途径的形成?为了回答这个问题,我们使用[3H]胸苷放射自显影或溴脱氧尿苷研究了原始神经管的组织,尤其是早期生成的细胞的排列。我们的数据表明,早期生成细胞的位置可能与此类途径的建立有关。在E12(0)(12天零时)和E12(15)大鼠胚胎的脑干中,第一个生成的细胞被组织成三个纵向列,这些列与相邻原始边缘层中富含糖缀合物的细胞外空间相关。同样,由1,1'-二十八烷基-3,3,3',3'-四甲基吲哚羰花青高氯酸盐(DiI)追踪的轴突与早期生成的细胞柱相邻,并代表内侧纵束,外侧纵束的原基。和中脑三叉神经束我们的结果表明,早期生成的细胞的组织,可能的神经元与轴突生长的边缘层细胞外空间的模式之间存在相关性。在文献中已经报道了神经元产生细胞外基质的元素,例如生长调节分子或空间产生分子。因此,我们建议早期生成的神经元的位置可能参与模板的拟订,该模板用于在脑干的胚胎发育过程中设置一些主要的纵向通道。

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