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Anxiolytic Effects and Neuroanatomical Targets of Estrogen Receptor-β (ERβ) Activation by a Selective ERβ Agonist in Female Mice

机译:选择性雌激素受体激动剂激活雌性小鼠的雌激素受体-β(ERβ)的抗焦虑作用和神经解剖学目标。

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摘要

The dichotomous anxiogenic and anxiolytic properties of estrogens have been reported to be mediated by two distinct neural estrogen receptors (ER), ERα and ERβ, respectively. Using a combination of pharmacological and genetic approaches, we confirmed that the anxiolytic actions of estradiol are mediated by ERβ and extended and these observations to demonstrate the neuroanatomical targets involved in ERβ activation in these behavioral responses. We examined the effects of the biologically active S-enantiomer of diarylpropionitrile (S-DPN) on anxiety-related behavioral measures, the corresponding stress hormonal response to hypothalamo-pituitary-adrenal axis reactivity, and potential sites of neuronal activation in mutant female mice carrying a null mutation for ERβ gene (βERKO). S-DPN administration significantly reduced anxiety-like behaviors in the open field, light-dark exploration, and the elevated plus maze (EPM) in ovariectomized wild-type (WT) mice, but not in their βERKO littermates. Stress-induced corticosterone (CORT) and ACTH were also attenuated by S-DPN in the WT mice but not in the βERKO mice. Using c-fos induction after elevated plus maze, as a marker of stress-induced neuronal activation, we identified the anterodorsal medial amygdala and bed nucleus of the stria terminalis as the neuronal targets of S-DPN action. Both areas showed elevated c-fos mRNA expression with S-DPN treatment in the WT but not βERKO females. These studies provide compelling evidence for anxiolytic effects mediated by ERβ, and its neuroanatomical targets, that send or receive projections to/from the paraventricular nucleus, providing potential indirect mode of action for the control of hypothalamo-pituitary-adrenal axis function and behaviors.
机译:据报道,雌激素的二分性抗焦虑和抗焦虑特性分别由两种不同的神经雌激素受体(ER),ERα和ERβ介导。使用药理学和遗传学方法的组合,我们证实雌二醇的抗焦虑作用是由ERβ介导并扩展的,这些观察结果证明了在这些行为反应中涉及ERβ活化的神经解剖学靶标。我们检查了二芳基丙腈的生物活性S-对映体(S-DPN)对焦虑相关行为的影响,对下丘脑-垂体-肾上腺轴反应性的相应应激激素反应以及携带突变型雌性小鼠的神经元活化的潜在位点的影响ERβ基因的无效突变(βERKO)。在卵巢切除的野生型(WT)小鼠中,S-DPN给药显着减少了在旷野,明暗探索和高架迷宫(EPM)中的焦虑样行为,但在其βERKO同窝小鼠中却没有。应激诱导的皮质酮(CORT)和促肾上腺皮质激素也被S-DPN在野生型小鼠中减弱,而在βERKO小鼠中未减弱。使用高架迷宫后的c-fos诱导,作为应激诱导的神经元活化的标志物,我们确定了前内侧内侧杏仁核和终末纹的床核为S-DPN作用的神经元靶标。在WT中,两个区域均显示出通过S-DPN处理而升高的c-fos mRNA表达,但βERKO雌性中没有。这些研究为由ERβ及其神经解剖学靶点介导的抗焦虑作用提供了令人信服的证据,这些受体向/从脑室旁核发送或接收投影,为控制下丘脑-垂体-肾上腺轴功能和行为提供了潜在的间接作用方式。

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