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CNTF Receptor Alpha is Expressed by Magnocellular Neurons and Expression is Upregulated in the Rat Supraoptic Nucleus During Axonal Sprouting

机译:轴突发芽过程中大鼠视上核中的巨细胞神经元表达CNTF受体α并表达上调。

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摘要

Ciliary neurotrophic factor (CNTF) is expressed by glial cells at multiple levels of the magnocellular neurosecretory system (MNS). CNTF is present in astrocytes in the hypothalamic supraoptic nucleus (SON) as well as in perivascular cells in the neurohypophysis, and a several fold increase in CNTF immunoreactivity occurs in the SON following either axotomy of magnocellular neurons or during axonal sprouting by intact magnocellular neurons. CNTF also promotes survival and stimulates process outgrowth from magnocellular neurons in vitro. While these findings suggest that CNTF may act as a growth factor in support of neuronal plasticity in the MNS, little is known regarding possible expression of receptors for CNTF in the MNS. We have therefore used immunocytochemistry and in situ hybridization to examine the expression of CNTF receptor alpha (CNTFRα) in the rat MNS. Robust immunoreactivity for CNTFRα was observed associated with oxytocinergic and vasopressinergic neurons distributed throughout the SON. Astrocytes located within the ventral glial lamina (VGL) of the SON were also immunoreactive for CNTFRα. Robust hybridization of an anti-sense [35S]-cRNA probe to CNTFRα mRNA was observed throughout the SON, while binding of a control sense probe was much lower. Grains were found clustered predominantly over neuronal somata, indicative of expression by magnocellular neurons within the SON. We next examined changes in expression of CNTFRα mRNA by magnocellular neurons 7 days following unilateral transection of the hypothalamo-neurohypophysial tract. The level of CNTFRα mRNA was increased 32% (compared to age-matched intact controls; p<.05) in magnocellular neurons in the SON contralateral to the lesion, which are undergoing extensive collateral axonal sprouting, but was unchanged in axotomized magnocellular neurons in the SON ipsilateral to the lesion. These findings suggest that CNTF produced by MNS glia and acting via CNTFRα may exert neurotrophic effects on magnocellular neurons.
机译:睫状神经营养因子(CNTF)由神经胶质细胞在大细胞神经分泌系统(MNS)的多个水平表达。 CNTF存在于下丘脑超视神经核(SON)的星形胶质细胞以及神经垂体的血管周细胞中,并且,在对大细胞神经元进行轴突切开术或完整的对大细胞神经元进行轴突萌发期间,SON中的CNTF免疫反应性增加了几倍。 CNTF还可在体外促进存活并刺激大细胞神经元的生长。尽管这些发现表明CNTF可能是支持MNS中神经元可塑性的生长因子,但对于CNTF受体在MNS中的可能表达知之甚少。因此,我们已经使用免疫细胞化学和原位杂交来检查CNTF受体α(CNTFRα)在大鼠MNS中的表达。观察到CNTFRα的强大免疫反应性与整个SON中分布的催产素能和血管加压素能神经元有关。位于SON腹侧神经胶质层(VGL)内的星形胶质细胞对CNTFRα也具有免疫反应性。在整个SON期间,观察到反义[ 35 S] -cRNA探针与CNTFRαmRNA的强杂交,而对照有义探针的结合则低得多。发现谷物主要聚集在神经元的躯体上,表明由SON中的大细胞神经元表达。接下来,我们检查了下丘脑-神经下垂体单侧横断7天后,巨细胞神经元CNTFRαmRNA表达的变化。在病变对侧的SON对侧的巨细胞神经元中,CNTFRαmRNA的水平增加了32%(与年龄相匹配的完整对照组相比,p <.05),这些神经元正经历广泛的侧枝轴突发芽,而在经轴切的巨细胞神经元中病灶同侧的SON。这些发现表明由MNS胶质细胞产生并通过CNTFRα起作用的CNTF可能对大细胞神经元产生神经营养作用。

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