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Diurnal oscillation in glial fibrillary acidic protein in a perisuprachiasmatic area and its relationship to the luteinizing hormone surge in the female rat

机译:雌性大鼠视交叉上周围神经胶质原纤维酸性蛋白的昼夜振荡及其与促黄体激素水平的关系

摘要

It is well known that the reproductive cycle in the female rat is closely associated with the circadian rhythms of motor activity and that this phenomenon requires the presence of estrogens. Estrogens induce plastic changes in neural connectivity and these changes could be the result of glial modifications. We have measured glial fibrillary acidic protein (GFAP) immunoreactivity in order to localize the area in which the coupling of the circadian rhythms to the generation of the luteinizing hormone (LH) surge may occur. As circadian rhythms are driven by the suprachiasmatic nucleus (SCN), GFAP immunoreactivity was measured in 5 areas of the SCN and surrounding regions. It was measured at two times during daylight (10.00 and 17.00 h) in ovariectomized (OVX) females implanted with Silastic capsules containing either estradiol benzoate (EB) or oil (control). Differences between morning and afternoon GFAP immunoreactivity were observed in a peri-SCN area, dorsal to the SCN and close to the 3rd ventricle, in estrogen-treated as well as in control OVX females. However, this difference increased in the subgroup of EB-treated females which displayed the strongest LH rhythmicity. These results suggest that the peri-SCN area could be an important locus for synaptic changes linking circadian rhythms with the estrogen-induced LH surge.
机译:众所周知,雌性大鼠的生殖周期与运动的昼夜节律密切相关,并且这种现象需要存在雌激素。雌激素诱导神经连接的塑性改变,这些改变可能是神经胶质变体的结果。我们已经测量了神经胶质纤维酸性蛋白(GFAP)的免疫反应性,以定位可能发生昼夜节律与黄体生成激素(LH)激增的耦合的区域。由于昼夜节律是由视交叉上核(SCN)驱动的,因此在SCN及其周围区域的5个区域中测量了GFAP免疫反应性。在白天(10.00和17.00 h)两次在卵巢切除的(OVX)雌性中植入两次,该雌性植入了含有苯甲酸雌二醇(EB)或油(对照)的Silastic胶囊。在雌激素治疗的OVX雌性小鼠和对照OVX雌性小鼠中,在SCN周围,SCN背侧和第三脑室附近,观察到了上午和下午的GFAP免疫反应性之间的差异。但是,这种差异在接受EB治疗的女性亚组中有所增加,表现出最强的LH节律。这些结果表明,SCN周围区域可能是将昼夜节律与雌激素诱导的LH激增联系起来的突触变化的重要场所。

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