首页> 外文期刊>Neuroendocrinology: International Journal for Basic and Clinical Studies on Neuroendocrine Relationships >Estradiol Enables Chronic Corticosterone to Inhibit Pulsatile Luteinizing Hormone Secretion and Suppress Kiss1 Neuronal Activation in Female Mice
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Estradiol Enables Chronic Corticosterone to Inhibit Pulsatile Luteinizing Hormone Secretion and Suppress Kiss1 Neuronal Activation in Female Mice

机译:雌二醇使慢性皮质酮能够抑制脉动素培氏素激素分泌物,并在女性小鼠中抑制Kiss1神经元激活

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Introduction: Two common responses to stress include elevated circulating glucocorticoids and impaired luteinizing hormone (LH) secretion. We have previously shown that a chronic stress level of corticosterone can impair ovarian cyclicity in intact mice by preventing follicular-phase endocrine events. Objective: This study is aimed at investigating if corticosterone can disrupt LH pulses and whether estradiol is necessary for this inhibition. Methods: Our approach was to measure LH pulses prior to and following the administration of chronic corticosterone or cholesterol in ovariectomized (OVX) mice treated with or without estradiol, as well as assess changes in arcuate kisspeptin (Kiss1) neuronal activation, as determined by co-expression with c-Fos. Results: In OVX mice, a chronic 48 h elevation in corticosterone did not alter the pulsatile pattern of LH. In contrast, corticosterone induced a robust suppression of pulsatile LH secretion in mice treated with estradiol. This suppression represented a decrease in pulse frequency without a change in amplitude. We show that the majority of arcuate Kiss1 neurons contain glucocorticoid receptor, revealing a potential site of corticosterone action. Although arcuate Kiss1 and Tac2 gene expression did not change in response to corticosterone, arcuate Kiss1 neuronal activation was significantly reduced by chronic corticosterone, but only in mice treated with estradiol. Conclusions: Collectively, these data demonstrate that chronic corticosterone inhibits LH pulse frequency and reduces Kiss1 neuronal activation in female mice, both in an estradiol-dependent manner. Our findings support the possibility that enhanced sensitivity to glucocorticoids, due to ovarian steroid milieu, may contribute to reproductive impairment associated with stress or pathophysiologic conditions of elevated glucocorticoids.
机译:简介:对应力的两个常见反应包括升高的循环糖皮质激素和叶氏素激素(LH)分泌损伤。我们以前表明,通过防止卵泡相胚胎事件,皮质酮的慢性应力水平可以损害卵巢循环。目的:本研究旨在调查皮质酮是否可以破坏LH脉冲,并对该抑制必需的雌二醇。方法:我们的方法是在用雌二醇处理或不含雌二醇处理的卵巢切除(OVX)小鼠的慢性皮质酮或胆固醇之后测量LH脉冲,以及评估弓形吻(Kiss1)神经元激活的变化,如CO - 用C-FOS表达。结果:在OVX小鼠中,皮质酮的慢性48小时升高没有改变LH的脉动图案。相比之下,皮质酮诱导用雌二醇处理的小鼠中的脉腭LH分泌诱导抑制脉动LH分泌。这种抑制表示脉冲频率的减小而不会改变幅度。我们表明大多数弧形吻1神经元含有糖皮质激素受体,揭示皮质酮作用的潜在部位。尽管弓形吻1和TAC2基因表达没有响应皮质酮没有改变,但慢性皮质酮显着降低了弧形Kiss1神经元激活,但仅在用雌二醇处理的小鼠中显着降低。结论:总的来说,这些数据表明,慢性皮质酮抑制LH脉冲频率并降低雌性小鼠的Kiss1神经元激活,均以雌二醇依赖性方式。我们的研究结果支持,由于卵巢类固醇Milieu,增强对糖皮质激素的敏感性的可能性可能导致与升高的糖皮质激素的应激或病理生理病症相关的生殖损伤。

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