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Differential distribution of cell adhesion molecules during histogenesis of the chick nervous system

机译:雏鸡神经系统组织发生过程中细胞粘附分子的差异分布

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摘要

We have compared the expression of the neural cell adhesion molecule (N- CAM) and the neuron-glial cell adhesion molecule (Ng-CAM) during histogenesis of the chick nervous system. Data from immunohistochemistry and photometry were combined to construct maps of the overall distribution and dynamics of CAM appearance and disappearance. Each CAM appeared in a characteristic spatial and temporal pattern in various areas during cell movement, fiber outgrowth, tract formation, and myelination. N-CAM was more uniformly distributed than Ng-CAM and was present on all neural cell bodies and processes of the CNS and PNS. In the adult, the staining pattern of N- CAM remained similar to that in the embryo, although the staining intensity was diminished. During embryonic development, Ng-CAM was expressed on extending neurites and migrating neurons. The appearance Ng-CAM in the CNS was correlated particularly with times of cell migration in spinal cord and cerebellum, and in regions undergoing neurite extension, such as the developing white matter of the spinal cord, the optic nerve, and the medial longitudinal fasciculus. Cell bodies not undergoing migration were negative for Ng-CAM. In the adult CNS, Ng-CAM was markedly decreased in myelinated fiber tracts like the white matter of the spinal cord but persisted in unmyelinated regions such as the olfactory bulb. In contrast, in the PNS (for example, the dorsal root ganglion and sciatic nerve), Ng-CAM appeared early on both cell bodies and neurites, and it continued to be present on both in the adult, even in the presence of myelin. Maps comparing the relative distribution of Ng-CAM and N-CAM showed dynamic reversals as the nervous system developed and, as a result, the pattern of CAM expression was markedly different in embryos and adults. This difference appears to reflect changes in the roles of selective adhesion and of the two neuronal CAMs at different times of development.
机译:我们已经比较了雏鸡神经系统组织发生过程中神经细胞粘附分子(N-CAM)和神经元-胶质细胞粘附分子(Ng-CAM)的表达。结合免疫组织化学和光度学数据构建CAM出现和消失的总体分布和动态图。在细胞运动,纤维向外生长,道形成和髓鞘形成过程中,每个CAM在各个区域都以特征性的时空模式出现。 N-CAM比Ng-CAM更均匀地分布,并且存在于CNS和PNS的所有神经细胞体和过程中。在成年动物中,N-CAM的染色模式与胚胎相似,尽管染色强度有所降低。在胚胎发育过程中,Ng-CAM在延伸的神经突和迁移的神经元上表达。 Ng-CAM在中枢神经系统中的出现尤其与脊髓和小脑以及经历神经突延伸的区域(如脊髓的白质,视神经和内侧纵筋膜)中细胞迁移的时间有关。未经历迁移的细胞体对Ng-CAM呈阴性。在成年的中枢神经系统中,Ng-CAM在髓鞘纤维束(如脊髓白质)中明显减少,但在非髓鞘区域(如嗅球)中持续存在。相反,在PNS(例如,背根神经节和坐骨神经)中,Ng-CAM早期出现在细胞体和神经突上,并且即使在存在髓磷脂的情况下,它也继续存在于成年动物中。比较Ng-CAM和N-CAM相对分布的图谱显示,随着神经系统的发育,动态发生逆转,结果,胚胎和成体中CAM的表达模式明显不同。这种差异似乎反映了在不同发育时期选择性粘附和两个神经元CAM的作用变化。

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