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Estrous cycle and stress: influence of progesterone on the female brain

机译:发情周期和压力:孕酮对女性大脑的影响

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The female brain operates in a constantly changing chemical milieu caused by cyclical changes in gonadal hormones during the estrous cycle (menstrual cycle in women). Such hormones are highly lipophilic and pass readily from the plasma to the brain where they can influence neuronal function. It is becoming clear that the rapid reduction in peripheral circulating progesterone, which occurs during the late diestrous phase of the cycle, can trigger a withdrawal-like response, in which changes in GABA A receptor expression render hyper-responsive certain brain areas involved in processing responses to stressful stimuli. The periaqueductal gray matter (PAG) is recognised as an important region for integrating anxiety/defence responses. Withdrawal from progesterone, via actions of its neuroactive metabolite allopregnanolone, triggers up-regulation of extrasynaptic GABA A receptors on GABAergic neurons in the PAG. As a consequence, ongoing GABAergic tone on the output cells decreases, leading to an increase in functional excitability of the circuitry and enhanced responsiveness to stressful stimuli during the late diestrous phase. These changes during late diestrus could be prevented by short-term neurosteroid administration, timed to produce a more gradual fall in the peripheral concentration of allopregnanolone than the rapid decrease that occurs naturally, thus removing the trigger for the central withdrawal response.
机译:在发情周期(女性的月经周期)中,性腺激素的周期性变化导致女性大脑处于不断变化的化学环境中。这种激素具有很高的亲脂性,可以很容易地从血浆传递到大脑,从而影响神经元的功能。逐渐清楚的是,在循环的末次发情期末期,外周循环孕酮的迅速减少会触发戒断样反应,其中GABA A受体表达的变化使某些参与处理的大脑区域反应过度对压力刺激的反应。导水管周围灰质(PAG)被认为是整合焦虑/防御反应的重要区域。通过其神经活性代谢物allopregnanolone的作用从孕酮中退出会触发PAG中GABA能神经元上突触外GABA A受体的上调。结果,输出细胞上正在进行的GABA能音调降低,导致电路的功能兴奋性增加,并且在发情末期对应激刺激的反应性增强。短期给予神经类固醇激素可以防止晚孕期发生这些变化,定时给予该物质比自然发生的迅速下降会导致逐渐升高的Allopregnanolone外周浓度下降,从而消除了中枢性戒断反应的触发因素。

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