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恒河猴听觉脑干中被神经周网包围的神经元亚群的特征描述。

Characterization of neuronal subsets surrounded by perineuronal nets in the rhesus auditory brainstem.

作者信息

Hilbig Heidegard, Nowack Sandra, Boeckler Katrin, Bidmon Hans-Jürgen, Zilles Karl

机构信息

Institute of Anatomy, Leipzig University, Leipzig, Germany.

出版信息

J Anat. 2007 May;210(5):507-17. doi: 10.1111/j.1469-7580.2007.00713.x.

Abstract

The distribution of perineuronal nets and the potassium channel subunit Kv3.1b was studied in the subdivisions of the cochlear nucleus, the medial nucleus of the trapezoid body, the medial and lateral superior olivary nuclei, the lateral lemniscal nucleus and the inferior colliculus of the rhesus monkey. Additional sections were used for receptor autoradiography to visualize the patterns of GABAA and GABAB receptor distribution. The Kv3.1b protein and perineuronal nets [visualized as Wisteria floribunda agglutinin (WFA) binding] were revealed, showing corresponding region-specific patterns of distribution. There was a gradient of labelled perineuronal nets which corresponded to that seen for the intensity of Kv3.1b expression. In the cochlear nucleus intensely and faintly stained perineuronal nets were intermingled, whereas in the medial nucleus of the trapezoid body the pattern changed to intensely stained perineuronal nets in the medial part and weakly labelled nets in its lateral part. In the inferior colliculus, intensely labelled perineuronal nets were arranged in clusters and faintly labelled nets were arranged in sheets. Using receptor autoradiography, GABAB receptor expression in the anterior ventral cochlear nucleus was revealed. The medial part of the medial nucleus of the trapezoid body showed a high number of GABAA binding sites whereas the lateral part exhibited more binding sites for GABAB. In the inferior colliculus, we found moderate GABAB receptor expression. In conclusion, intensely WFA-labelled structures are those known to be functionally involved in high-frequency processing.

摘要

研究了猕猴的耳蜗核、斜方体内侧核、内侧和外侧上橄榄核、外侧丘系核以及下丘各亚区中神经周网和钾通道亚基Kv3.1b的分布情况。另外还使用切片进行受体放射自显影,以观察GABAA和GABAB受体的分布模式。结果显示了Kv3.1b蛋白和神经周网(以紫藤凝集素(WFA)结合显示),呈现出相应的区域特异性分布模式。标记的神经周网存在梯度变化,与Kv3.1b表达强度的梯度一致。在耳蜗核中,深染和浅染的神经周网相互交织,而在斜方体内侧核中,模式变为内侧部分神经周网深染,外侧部分标记较弱。在下丘中,深染的神经周网呈簇状排列,浅染的神经周网呈片状排列。通过受体放射自显影,发现前腹侧耳蜗核中有GABAB受体表达。斜方体内侧核的内侧部分显示有大量GABAA结合位点,而外侧部分则有更多GABAB结合位点。在下丘中,我们发现有中等程度的GABAB受体表达。总之,WFA深染的结构是那些已知在高频处理中发挥功能作用的结构。

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