首页> 外文期刊>Journal of neuroendocrinology >Acute restraint stress increases intrahypothalamic oestradiol concentrations in conjunction with increased hypothalamic oestrogen receptor beta and aromatase mRNA expression in female rats.
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Acute restraint stress increases intrahypothalamic oestradiol concentrations in conjunction with increased hypothalamic oestrogen receptor beta and aromatase mRNA expression in female rats.

机译:急性束缚应激增加雌性大鼠下丘脑内雌二醇的浓度,同时增加下丘脑雌激素受体β和芳香化酶mRNA的表达。

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Activation of the hypothalamic-pituitary-adrenal axis is considered to be one of the key physiological responses to stress and, interestingly, shows a marked sex difference. Oestradiol plays an important role in this sex difference. The present study investigated the systemic and intrahypothalamic oestradiol response to physical restraint stress in female rats. We used jugular catheterisation and intrahypothalamic microdialysis to simultaneously measure plasma oestradiol and local oestradiol concentrations in the paraventricular nucleus (PVN) of the hypothalamus. We also assessed corticotrophin-releasing hormone (CRH), aromatase, and oestrogen receptor (ER) alpha and beta mRNA expression in the PVN by quantitative polymerase chain reaction immediately after the acute stress period. As expected, PVN CRH mRNA and plasma corticosterone were significantly increased after acute stress. Interestingly, the local oestradiol concentration in the PVN also increased during the 1-h stress period in pro-oestrus and in ovariectomised (OVX) animals. Aromatase mRNA expression in the PVN was increased markedly in pro-oestrus but only modestly in oestrus. PVN ERbeta but not ERalpha mRNA expression was significantly elevated in pro-oestrous animals. In addition, plasma oestradiol levels increased 10 min after stress, both during pro-oestrus and oestrus but not in OVX animals. To conclude, we report an intra-hypothalamic oestradiol response to restraint stress. The rising hypothalamic oestradiol concentration together with increased ERbeta gene expression indicates a positive feedback of hypothalamic oestradiol signalling during acute stress in rats.
机译:下丘脑-垂体-肾上腺轴的激活被认为是对压力的关键生理反应之一,有趣的是,它表现出明显的性别差异。雌二醇在这种性别差异中起重要作用。本研究调查了雌性大鼠对全身约束应激的全身和下丘脑内雌二醇反应。我们使用了颈静脉导管插入术和下丘脑内微透析,以同时测量下丘脑室旁核(PVN)中的血浆雌二醇和局部雌二醇浓度。我们还通过定量聚合酶链反应在急性应激期后立即评估了PVN中促肾上腺皮质激素释放激素(CRH),芳香化酶和雌激素受体(ER)α和βmRNA的表达。如预期的那样,急性应激后PVN CRH mRNA和血浆皮质酮显着增加。有趣的是,在前发情期和去卵巢(OVX)动物中,在1-h应激期中,PVN中的局部雌二醇浓度也增加了。在前发情中PVN中芳香酶mRNA表达显着增加,但在发情中仅适度增加。在前雌性动物中,PVN ERbeta而不是ERalpha mRNA表达显着升高。另外,在发情期和发情期,血浆雌二醇水平在应激后10分钟增加,但在OVX动物中没有。总而言之,我们报告了下丘脑内雌二醇对约束应激的反应。下丘脑雌二醇浓度的升高以及ERbeta基因表达的增加表明大鼠急性应激过程中下丘脑雌二醇信号的正反馈。

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