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大鼠小脑皮质中谷氨酸免疫反应阳性的攀缘纤维

Glutamate-immunoreactive climbing fibres in the cerebellar cortex of the rat.

作者信息

Grandes P, Ortega F, Streit P

机构信息

Department of Neurosciences, Faculty of Medicine and Dentistry, Basque Country University, Bilbao, Spain.

出版信息

Histochemistry. 1994 Jul;101(6):427-37. doi: 10.1007/BF00269493.

Abstract

The climbing fibre system, one of the two main excitatory inputs to the cerebellar cortex, is anatomically and physiologically well characterized, while the nature of its neurotransmitter is still a matter of debate. We wished to determine whether glutamate-immunoreactive profiles with the morphological characteristics of climbing fibres could be found in the rat cerebellar cortex. For this purpose, a monoclonal 'anti-glutamate' antibody has been used in combination with a sensitive postembedding immunoperoxidase method on semi-thin sections or in combination with a postembedding immunogold method on ultrathin sections. At the light microscopic level, climbing fibres appeared as strongly stained fibrous profiles, chains of interconnected varicosities or heavily labelled dots of various sizes, often in close apposition to principal Purkinje cell dendrites. At the electron microscopic level, certain labelled varicosities or more elongated profiles resembling climbing fibre terminals were in synaptic contact with dendritic spines of Purkinje cells. Quantitative analysis of gold particle densities showed that such elements were about three to four times more heavily labelled than their postsynaptic partners. The results obtained in this study demonstrate that at least a subset of climbing fibres and their terminals contain relatively high levels of glutamate-like immunoreactivity and provide additional evidence for a role of glutamate as transmitter in these cerebellar afferents.

摘要

攀缘纤维系统是小脑皮质的两种主要兴奋性输入之一,在解剖学和生理学上已得到充分表征,但其神经递质的性质仍存在争议。我们希望确定在大鼠小脑皮质中是否能找到具有攀缘纤维形态特征的谷氨酸免疫反应性轮廓。为此,一种单克隆“抗谷氨酸”抗体已与半薄切片上的灵敏包埋后免疫过氧化物酶方法结合使用,或与超薄切片上的包埋后免疫金方法结合使用。在光学显微镜水平上,攀缘纤维呈现为强烈染色的纤维轮廓、相互连接的曲张链或各种大小的重度标记点,通常紧邻浦肯野细胞主树突。在电子显微镜水平上,某些标记的曲张或更细长的轮廓类似于攀缘纤维终末,与浦肯野细胞的树突棘形成突触接触。金颗粒密度的定量分析表明,这些元件的标记程度比其突触后伙伴大约高三到四倍。本研究获得的结果表明,至少一部分攀缘纤维及其终末含有相对高水平的谷氨酸样免疫反应性,并为谷氨酸作为这些小脑传入神经递质的作用提供了额外证据。

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