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首页> 外文期刊>Neuroscience: An International Journal under the Editorial Direction of IBRO >Estrogen up-regulates estrogen receptor alpha and synaptophysin in slice cultures of rat hippocampus.
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Estrogen up-regulates estrogen receptor alpha and synaptophysin in slice cultures of rat hippocampus.

机译:雌激素上调大鼠海马切片培养物中的雌激素受体α和突触素。

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Previous studies have shown that estrogen application increases the density of synaptic input and the number of spines on CA1 pyramidal neurons. Here, we have investigated whether Schaffer collaterals to CA1 pyramidal cells are involved in this estrogen-induced synaptogenesis on CA1 pyramidal neurons. To this end, we studied estrogen-induced expression of both estrogen receptor (ER) subtypes (ERalpha and ERbeta) together with the presynaptic marker synaptophysin in the rat hippocampus. In tissue sections as well as in slice cultures mRNA expression of ERalpha, ERbeta and synaptophysin was higher in CA3 than in CA1, and mRNA expression and immunoreactivity for both ER subtypes were found in both principal cells and interneurons. By using quantitative image analysis we found stronger nuclear immunoreactivity for ERalpha in CA3 than in CA1. In slice cultures, supplementation of the medium with 10(-8) M estradiol led to an increase of nuclear immunoreactivity for ERalpha, but not for ERbeta, which was accompanied by a dramatic up-regulation of synaptophysin immunoreactivity in stratum radiatum of CA1. Together these findings indicate that estrogen effects on hippocampal neurons are more pronounced in CA3 than in CA1 and that ER activation in CA3 neurons leads to an up-regulation of a presynaptic marker protein in the axons of these cells, the Schaffer collaterals. We conclude that estradiol-induced spine formation on CA1 pyramidal cells may be mediated presynaptically, very likely by activation of ERalpha in CA3 pyramidal cells, followed by an increase in Schaffer collateral synapses.
机译:先前的研究表明,雌激素的应用会增加突触输入的密度和CA1锥体神经元上的棘突数量。在这里,我们研究了CA1锥体细胞的沙弗侧支是否参与了雌激素诱导的CA1锥体神经元的突触形成。为此,我们研究了大鼠海马中雌激素诱导的两种雌激素受体(ER)亚型(ERalpha和ERbeta)以及突触前标记突触素的表达。在组织切片和切片培养物中,CA3中ERalpha,ERbeta和突触素的mRNA表达高于CA1,并且两种ER亚型的mRNA表达和免疫反应性均在主要细胞和中间神经元中发现。通过使用定量图像分析,我们发现CA3中ERalpha的核免疫反应性比CA1中的强。在切片培养中,向培养基中添加10(-8)M雌二醇导致ERalpha的核免疫反应性增加,但ERbeta却不增加,这伴随着CA1放射层中突触素免疫反应性的急剧上调。这些发现共同表明,雌激素对海马神经元的作用在CA3中比在CA1中更为明显,并且CA3神经元中的ER激活导致这些细胞的轴突(Schaffer侧支)中突触前标记蛋白的上调。我们得出结论,CA1锥体细胞上的雌二醇诱导的脊柱形成可能是突触前介导的,很可能是通过激活CA3锥体细胞中的ERalpha,然后增加Schaffer侧突触来实现的。

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