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The effect of standard laboratory diets on estrogen signaling and spatial memory in male and female rats

机译:标准实验室饮食对雌性大鼠雌激素信号和空间记忆的影响

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摘要

Phytoestrogens are plant-derived compounds that can modulate estrogen activity in the brain and periphery. Laboratory rodent diets are typically high in soy-based phytoestrogens and therefore may influence neurophysiological and behavioural measures that are sensitive to estrogen signaling. Here we assessed such measures in rats (males and females) fed Australian made diets that varied in their soy levels. We found that a low-soy diet promoted greater weight, and lower levels of plasma estradiol, particularly in male rats. It also produced sex-specific effects on estrogen receptor gene expression in the brain, increasing ESR2 expression in the hippocampus and prefrontal cortex in female rats, and decreasing dopamine D1 receptor gene expression in the striatum of both male and female rats. We also found a dietary effect on short-term place recognition memory, but this was independent of soy levels in the diet. These results demonstrate that the choice of rodent laboratory diet can influence physiology, neurobiology and behavior, particularly on measures related to estrogen signaling.
机译:植物雌激素是植物衍生的化合物,可以调节脑和周边的雌激素活性。实验室啮齿动物饮食通常在基于大豆的植物雌激素中高,因此可能影响对雌激素信号敏感的神经生理学和行为措施。在这里,我们评估了大鼠(男性和女性)的措施,美联储澳大利亚制造的饮食在其大豆水平中变化。我们发现,低大豆饮食促进了更大的重量,较低水平的血浆雌二醇,特别是在雄性大鼠中。它还产生了对脑雌激素受体基因表达的性别特异性作用,增加了雌性大鼠海马和前额叶皮质中的ESR2表达,并降低了雄性和雌性大鼠的纹状体中的多巴胺D1受体基因表达。我们还发现对短期识别记忆的饮食影响,但这与饮食中的大豆水平无关。这些结果表明,啮齿动物实验室饮食的选择可以影响生理学,神经生物学和行为,特别是在与雌激素信号相关的措施。

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