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Stage-dependent effects of cell-to-cell connections on in vitro induced neurogenesis

机译:细胞间连接对体外诱导神经发生的阶段依赖性影响

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NE-4C, a p53-deficient, immortalized neuroectodermall progenitor cell line, was used to investigate the role and importance of cellular interactions in neural commitment and differentiation. NE-4C cells give rise to neurons and astrocytes in the presence of all-trans retinoic acid, if they can establish intercellular contacts. Aggregation per se, however, was insufficient to induce large-scale neuron formation. In the absence of RA, the majority of the aggregated cells died. For neuron formation, therefore, concerted actions o R an cellular interaction were needed. Electron microscopic and electrophysiological studies revealed that gap junctions were formed between the cells. Persistent blockage of communication via gap junctions with gap junction blockers, however, had no effects on neuron formation. If cell-to-cell connections were disrupted on the fourth day after induction, the rate of neuron production increased significantly. The contact interactions formed between already committed progenitor cells seemed to hinder the formation of novel neurons. The process resembled the phenomenon called "lateral inhibition" first observed in the course of neurogenesis in Drosophila. Our results indicate that NE-4C cells provide a useful model system to investigate the role of contact communication during some early steps of neurogenesis.
机译:NE-4C是p53缺陷的永生神经外胚层祖细胞系,用于研究细胞相互作用在神经活动和分化中的作用和重要性。如果全反式维甲酸存在,NE-4C细胞可建立细胞间接触,则它们会产生神经元和星形胶质细胞。然而,聚集本身不足以诱导大规模神经元形成。在没有RA的情况下,大多数聚集细胞死亡。因此,对于神经元形成,需要细胞相互作用的协同作用。电子显微镜和电生理研究表明,细胞之间形成了间隙连接。但是,通过间隙连接与间隙连接阻滞剂的持续性通信阻断对神经元形成没有影响。如果诱导后第四天细胞间连接被破坏,则神经元产生的速率将显着增加。在已经定型的祖细胞之间形成的接触相互作用似乎阻碍了新型神经元的形成。该过程类似于在果蝇的神经发生过程中首次观察到的被称为“侧向抑制”的现象。我们的结果表明,NE-4C细胞提供了一个有用的模型系统,以研究神经发生的某些早期步骤中接触通讯的作用。

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