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Neurosteroids in Adult Hippocampus of Male and Female Rodents: Biosynthesis and Actions of Sex Steroids

机译:雄性和雌性啮齿动物成年海马中的神经甾体:性类固醇的生物合成和作用。

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摘要

The brain is not only the target of steroid hormones but also is able to locally synthesize steroids de novo. Evidence of the local production of steroids in the brain has been accumulating in various vertebrates, including teleost fish, amphibia, birds, rodents, non-human primates, and humans. In this review, we mainly focus on the local production of sex steroids in the hippocampal neurons of adult rodents (rats and mice), a center for learning and memory. From the data of the hippocampus of adult male rats, hippocampal principal neurons [pyramidal cells in CA1–CA3 and granule cells in dentate gyrus (DG)] have a complete system for biosynthesis of sex steroids. Liquid chromatography with tandem-mass-spectrometry (LC-MS/MS) enabled us to accurately determine the levels of hippocampal sex steroids including 17β-estradiol (17β-E2), testosterone (T), and dihydrotestosterone (DHT), which are much higher than those in blood. Next, we review the steroid synthesis in the hippocampus of female rats, since previous knowledge had been biased toward the data from males. Recently, we clarified that the levels of hippocampal steroids fluctuate in adult female rats across the estrous cycle. Accurate determination of hippocampal steroids at each stage of the estrous cycle is of importance for providing the account for the fluctuation of female hippocampal functions, including spine density, long-term potentiation (LTP) and long-term depression (LTD), and learning and memory. These functional fluctuations in female had been attributed to the level of circulation-derived steroids. LC-MS/MS analysis revealed that the dendritic spine density in CA1 of adult female hippocampus correlates with the levels of hippocampal progesterone and 17β-E2. Finally, we introduce the direct evidence of the role of hippocampus-synthesized steroids in hippocampal function including neurogenesis, LTP, and memory consolidation. Mild exercise (2 week of treadmill running) elevated synthesis of DHT in the hippocampus, but not in the testis, of male rats, resulting in enhancement of neurogenesis in DG. Concerning synaptic plasticity, hippocampus-synthesized E2 is required for LTP induction, whereas hippocampus-synthesized DHT is required for LTD induction. Furthermore, hippocampus-synthesized E2 is involved in memory consolidation tested by object recognition and object placement tasks, both of which are hippocampus-dependent.
机译:大脑不仅是类固醇激素的靶标,而且还能够从头合成本地类固醇。在各种脊椎动物中,包括在硬骨鱼类,两栖动物,鸟类,啮齿动物,非人类灵长类动物和人类中,积累了大脑中类固醇的局部证据。在这篇综述中,我们主要关注成年啮齿动物(大鼠和小鼠)的海马神经元中性类固醇的局部产生,这是学习和记忆的中心。根据成年雄性大鼠海马的数据,海马主要神经元[CA1-CA3中的锥体细胞和齿状回(DG)中的颗粒细胞]具有完整的性类固醇生物合成系统。液相色谱-串联质谱(LC-MS / MS)使我们能够准确确定海马性类固醇的水平,其中包括17β-雌二醇(17β-E2),睾丸激素(T)和二氢睾丸激素(DHT),高于血液。接下来,我们回顾雌性大鼠海马中的类固醇合成,因为先前的知识偏向于雄性数据。最近,我们澄清了在整个发情周期中成年雌性大鼠海马类固醇的水平波动。在发情周期的每个阶段准确确定海马类固醇对于说明女性海马功能的波动非常重要,这些功能包括脊柱密度,长期增强(LTP)和长期抑郁(LTD),以及学习和学习记忆。女性的这些功能性波动归因于循环源性类固醇的水平。 LC-MS / MS分析表明,成年雌性海马CA1中的树突棘密度与海马孕酮和17β-E2水平相关。最后,我们介绍了海马合成类固醇在海马功能(包括神经发生,LTP和记忆巩固)中的作用的直接证据。轻度运动(在跑步机上跑步2周)可提高雄性大鼠海马中DHT的合成水平,而睾丸中则不会,从而增强DG中的神经发生。关于突触可塑性,LTP诱导需要海马合成的E2,而LTD诱导需要海马合成的DHT。此外,海马合成的E2参与了通过对象识别和对象放置任务测试的记忆整合,这两者都是依赖于海马的。

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