首页> 外文期刊>Brain research >Regional difference in corticotropin-releasing factor immunoreactivity in mossy fiber terminals innervating calretinin-immunoreactive unipolar brush cells in vestibulocerebellum of rolling mouse Nagoya.
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Regional difference in corticotropin-releasing factor immunoreactivity in mossy fiber terminals innervating calretinin-immunoreactive unipolar brush cells in vestibulocerebellum of rolling mouse Nagoya.

机译:在滚动小鼠名古屋的前庭小脑的苔藓纤维末端神经钙网蛋白免疫反应性单极刷细胞中的促肾上腺皮质激素释放因子免疫反应性的区域差异。

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摘要

Unipolar brush cells (UBCs), a class of interneurons in the vestibulocerebellum, play roles in amplifying excitatory inputs from vestibulocerebellar mossy fibers. This study aimed to clarify whether corticotropin-releasing factor (CRF)-positive mossy fiber innervation of calretinin (CR)-positive UBCs was altered in rolling mouse Nagoya (RMN). The distribution and the number of CR-positive UBCs in the vestibulocerebellum were not different between RMN and control mice. Double immunofluorescence revealed that some CRF-positive mossy fiber terminals were in close apposition to CR-positive UBCs. In the lobule X of vermis, such mossy fiber terminals were about 5-fold greater in number in RMN than in controls. In contrast, the number of CRF-positive mossy fiber terminals adjoining CR-positive UBCs in the flocculus was not significantly different between RMN and controls. The results suggest increased number of CRF-positive mossy fiber terminals innervating CR-positive UBCs in the lobule X but not in the flocculus of RMN. CRF may alter CR-positive UBC-mediated excitatory pathways in the lobule X of RMN and may disturb functions of the lobule X such as cerebellar adaptation for linear motion of the head.
机译:单极刷细胞(UBC)是前庭小脑中的一类中间神经元,在放大前庭小脑苔藓纤维的兴奋性输入中发挥作用。这项研究旨在阐明在滚动的名古屋(RMN)小鼠中,促肾上腺皮质激素(CR)阳性UBCs的促肾上腺皮质激素释放因子(CRF)阳性苔藓纤维神经支配是否发生改变。 RMN和对照组小鼠在前庭小脑中CR阳性UBC的分布和数量没有差异。双重免疫荧光显示某些CRF阳性苔藓纤维末端与CR阳性UBC紧密相邻。在ver小叶X处,这种苔藓纤维末端的RMN数目比对照组大5倍。相反,在RMN和对照之间,小球中与CR阳性UBC相邻的CRF阳性苔藓纤维末端的数量没有显着差异。结果表明,支配小叶X中而不是RMN的小肠中CR阳性UBC的CRF阳性苔藓纤维末端数量增加。 CRF可能会改变RMN小叶X中CR阳性UBC介导的兴奋性途径,并可能干扰小叶X的功能,例如小脑对头部线性运动的适应。

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