小脑Lugaro细胞的共聚焦激光扫描显微镜和免疫组织化学。

O. Castejón
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引用次数: 3

摘要

本文用激光共聚焦扫描显微镜观察了大鼠小脑Lugaro细胞对calbindin、synapsin-I、PSD-95、GluR1、CaMKII α和N-cadherin的免疫反应性。卢加罗细胞的特征在于它们位于浦肯野细胞之下。Calbindin在细胞体、轴突和树突中显示免疫反应性。突触素- 1标记Lugaro细胞的突触前末梢。突触素- 1和PSD-95的免疫反应性表明突触前和突触后终末在细胞体周围的定位,对应于传入的外源性和内源性小脑纤维。胞体和细胞过程的GluR1免疫反应性表明Lugaro细胞具有调节钙水平的功能性离子性谷氨酸受体。Lugaro细胞体细胞和过程的CaMKII α免疫反应性表明其参与长期信息存储的分子开关,并作为长期突触记忆的分子基础。n -钙粘蛋白免疫反应性与Lugaro细胞之间的体-体和体-树突连接及其突触连接相关。
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Confocal laser scanning microscopy and immunohistochemistry of cerebellar Lugaro cells.
The present paper shows by means of confocal laser scanning microscopy the immunoreactivity of rat cerebellar Lugaro cells for calbindin, synapsin-I, PSD-95, GluR1, CaMKII alpha, and N-cadherin. Lugaro cells were easily characterized by their location beneath Purkinje cells. Calbindin revealed immunoreactivity in the cell body, and the axonal and dendritic processes. Synapsin-I labelled the presynaptic endings on Lugaro cells. Synapsin-I and PSD-95 immunoreactivity demonstrated the localization of presynaptic and postsynaptic endings surrounding cell soma, corresponding to afferent extrinsic and intrinsic cerebellar fibers. GluR1 immunoreactivity of the soma and cell processes indicates that Lugaro cells have functional ionotropic glutamate receptors that regulate calcium levels. CaMKII alpha immunoreactivity of Lugaro cell soma and processes suggest its participation as a molecular switch for long-term information storage, and serving as a molecular basis of long-term synaptic memory. N-cadherin immunoreactivity was correlated with somato-somatic and somato-dendritic junctions between Lugaro cells and their synaptic connections.
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