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Lateral dispersion is required for circuit integration of newly generated dentate granule cells

机译:横向分散是新生成的齿状颗粒细胞的电路集成所必需的

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摘要

The process of circuit integration of newly-generated dentate granule cells of the hippocampus has been presumed to be a dynamic process. In fact, little is known regarding the initial development of newly generated neurons prior to circuit integration and the significance of this stage for circuit integration. Here, using advanced live imaging methods, we systematically analyze the dynamic dispersion of newly generated neurons in the neurogenic zone and observe that cells that are physically adjacent coordinate their lateral dispersion. Whole-cell recordings of adjacent newly generated neurons reveal that they are coupled via gap junctions. The dispersion of newly generated cells in the neurogenic zone is restricted when this coupling is disrupted, which severely impairs their subsequent integration into the hippocampal circuit. The results of this study reveal that the dynamic dispersion of newly generated dentate granule cells in the neurogenic zone is a required developmental stage for circuit integration.
机译:海马的新生成的齿状颗粒细胞的电路整合过程被认为是一个动态过程。实际上,关于电路集成之前新生成的神经元的初始发育以及该阶段对于电路集成的重要性知之甚少。在这里,使用先进的实时成像方法,我们系统地分析了神经源区域中新生成的神经元的动态分散,并观察到物理上相邻的细胞协调了它们的横向分散。相邻新生成的神经元的全细胞记录显示它们通过间隙连接耦合。当这种耦合被破坏时,新生成的细胞在神经源区的分散受到限制,这严重损害了它们随后整合入海马回路的能力。这项研究的结果表明,新生成的齿状颗粒细胞在神经源区的动态分散是电路整合所需的发展阶段。

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