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Androgens and the developing hippocampus

机译:雄激素和开发的海马

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The hippocampus is central to spatial learning and stress responsiveness, both of which differ in form and function in males versus females, yet precisely how the hippocampus contributes to these sex differences is largely unknown. In reproductively mature individuals, sex differences in the steroid hormone milieu undergirds many sex differences in hippocampal-related endpoints. However, there is also evidence for developmental programming of adult hippocampal function, with a central role for androgens as well as their aromatized byproduct, estrogens. These include sex differences in cell genesis, synapse formation, dendritic arborization, and excitatory/inhibitory balance. Enduring effects of steroid hormone modulation occur during two developmental epochs, the first being the classic perinatal critical period of sexual differentiation of the brain and the other being adolescence and the associated hormonal changes of puberty. The cellular mechanisms by which steroid hormones enduringly modify hippocampal form and function are poorly understood, but we here review what is known and highlight where attention should be focused.
机译:海马是空间学习和应激响应性的核心,这两者都不同于男性和雌性的功能,但恰恰是海马如何促进这些性别差异在很大程度上。在生殖成熟的个体中,类固醇激素Milieu底座的性别差异许多与海马相关终点的性差异。然而,还有证据表明成人海马功能的发展,具有雄性血糖的核心作用以及它们的芳族化副产品雌激素。这些包括细胞成因,突触形成,树突树突族和兴奋/抑制平衡的性差异。在两次发育中期出现类固醇激素调节的持续影响,首先是大脑性分化的经典围产期临界时期,另一个是青春期和青春期相关的荷尔蒙变化。类固醇激素循环修饰海马形式和功能的细胞机制尚不清楚,但我们在这里审查了所知并突出的突出,在何处应该集中注意力。

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