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Barreloid Borders and Neuronal Activity Shape Panglial Gap Junction-Coupled Networks in the Mouse Thalamus

机译:鼠笼边界和神经元活动形状鼠鼠中的Panglial间隙结耦合网络

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摘要

The ventral posterior nucleus of the thalamus plays an important role in somatosensory information processing. It contains elongated cellular domains called barreloids, which are the structural basis for the somatotopic organization of vibrissae representation. So far, the organization of glial networks in these barreloid structures and its modulation by neuronal activity has not been studied. We have developed a method to visualize thalamic barreloid fields in acute slices. Combining electrophysiology, immunohistochemistry, and electroporation in transgenic mice with cell type-specific fluorescence labeling, we provide the first structure-function analyses of barreloidal glial gap junction networks. We observed coupled networks, which comprised both astrocytes and oligodendrocytes. The spread of tracers or a fluorescent glucose derivative through these networks was dependent on neuronal activity and limited by the barreloid borders, which were formed by uncoupled or weakly coupled oligodendrocytes. Neuronal somata were distributed homogeneously across barreloid fields with their processes running in parallel to the barreloid borders. Many astrocytes and oligodendrocytes were not part of the panglial networks. Thus, oligodendrocytes are the cellular elements limiting the communicating panglial network to a single barreloid, which might be important to ensure proper metabolic support to active neurons located within a particular vibrissae signaling pathway.
机译:丘脑的腹侧核在躯体感应信息处理中起着重要作用。它含有称为球囊的细长细胞结构域,这是vibrissae表示的躯体运动组织的结构基础。到目前为止,尚未研究这些桶形结构中的胶质网络中的胶质网络的组织及其通过神经元活动的调节。我们开发了一种可视化急性切片中的丘陵篮子田的方法。在具有细胞类型特异性荧光标记的转基因小鼠中结合电生理学,免疫组织化学和电穿孔,我们提供了一杆胶质间隙结网络的第一种结构功能分析。我们观察到耦合网络,其包括星形胶质细胞和少突胶质细胞。通过这些网络的示踪剂或荧光葡萄糖衍生物的衍生物依赖于神经元活性并受到孤立的橄榄球边框的限制,其通过未替换或弱偶联的寡核细胞形成。神经元躯体均匀地跨篮子田地划分,其工艺与杆状边界平行运行。许多星形胶质细胞和少突胶质细胞不是Panglial网络的一部分。因此,少突胶质细胞是将通信狗网的细胞元件限制在单个篮子上,这可能是确保对位于特定Vibrissae信号通路内的活性神经元的适当代谢支持。

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