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Membrane estrogen receptor signaling impacts the reward circuitry of the female brain to influence motivated behaviors

机译:膜雌激素受体信号传导影响女性大脑的奖励电路,以影响动力的行为

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Within the adult female, estrogen signaling is well-described as an integral component of the physiologically significant hypothalamic-pituitary-gonadal axis. In rodents, the timing of ovulation is intrinsically entwined with the display of sexual receptivity. For decades, the importance of estradiol activating intracellular estrogen receptors within the hypothalamus and midbrain/spinal cord lordosis circuits has been appreciated. These signaling pathways primarily account for the ability of the female to reproduce. Yet, often overlooked is that the desire to reproduce is also tightly regulated by estrogen receptor signaling. This lack of emphasis can be attributed to an absence of nuclear estrogen receptors in brain regions associated with reward, such as the nucleus accumbens, which are associated with motivated behaviors. This review outlines how membrane-localized estrogen receptors affect metabotropic glutamate receptor signaling within the rodent nucleus accumbens. In addition, we discuss how, as estrogens drive increased motivation for reproduction, they also produce the untoward side effect of heightening female vulnerability to drug addiction.
机译:在成年女性中,雌激素信号均被良好地描述为生理学显着的下丘脑 - 垂体 - 垂体轴的整体组分。在啮齿动物中,排卵的时序与性接收性的显示有本质上缠绕。几十年来,培养了雌二醇激活细胞内雌激素受体的重要性。这些信号传导途径主要占女性繁殖的能力。然而,经常被忽视的是,雌激素受体信号传导也是对再现的愿望。这种缺乏强调可以归因于与奖励相关的脑区中没有核雌激素受体,例如与激励行为相关的细胞核遗料。该审查概述了膜局部化雌激素受体如何影响啮齿动物核心尿道内的代谢谷氨酸受体信号。此外,我们讨论如何,随着雌激素驱动增加的繁殖动机,它们也产生了加强女性脆弱性对吸毒成瘾的侧面效果。

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