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Direct contacts of microglia on myelin sheath and Ranvier’s node in the corpus callosum in rats

机译:大鼠小胶质细胞直接接触髓鞘和and体Ranvier结

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摘要

Over the recent years, it has been found that microglia pseudopodia contact synapses, detect sick ones and prune them, even in adult animals. Myelinated nerves also carry out plasticity in which microglia remove myelin debris by phagocytosis. However, it remains unknown whether microglia explore structures on nerve fibers, such as Ranvier’s node (RN) or myelin sheath, before they become debris. By double or triple staining RNs or myelin sheathes and microglia in healthy rat corpus callosum, this study unveiled direct contacts of microglia pseudopodia with RNs and with para- and inter-nodal myelin sheathes, which was then verified by electron microscopic observations. Our data indicated that microglia also explore unmyelinated nerve fibers. Furthermore, we used the animals with matured white matter; therefore, microglia may be actively involved in plasticity of matured white matter tracts as it does for synapse pruning, instead of only passively phagocytize myelin debris.
机译:近年来,发现即使在成年动物中,小胶质伪足接触突触,发现病原体并修剪它们。髓鞘神经还具有可塑性,其中小胶质细胞通过吞噬作用去除髓鞘碎片。然而,小胶质细胞是否会在变成碎片之前探索神经纤维的结构,例如兰维氏结(RN)或髓鞘等尚不清楚。通过对健康大鼠体中的RNs或髓鞘和小胶质细胞进行两次或三次染色,这项研究揭示了小胶质伪足与RNs以及与淋巴结和节间髓鞘的直接接触,然后通过电子显微镜观察进行了验证。我们的数据表明,小胶质细胞也探索无髓神经纤维。此外,我们使用了具有成熟白质的动物。因此,小胶质细胞可能像参与突触修剪一样,积极参与成熟的白质束的可塑性,而不是仅被动地吞噬髓磷脂碎片。

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