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首页> 外文期刊>Biology of Sex Differences >Sex-dependent alterations in the physiology of entorhinal cortex neurons in old heterozygous 3xTg-AD mice
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Sex-dependent alterations in the physiology of entorhinal cortex neurons in old heterozygous 3xTg-AD mice

机译:旧杂合3XTG-AD小鼠中Entorhinal皮质神经元生理学的性依赖性改变

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While the higher prevalence of Alzheimer’s disease (AD) in women?is clear, studies suggest that biological sex may also influence AD?pathogenesis. However, mechanisms behind these differences are not clear. To investigate physiological differences between sexes at the cellular level in the brain, we investigated the intrinsic and synaptic properties of entorhinal cortex neurons in heterozygous 3xTg-AD mice of both sexes at the age of 20?months. This brain region was selected because of its early association with AD symptoms. First, we found physiological differences between male and female non-transgenic mice, providing indirect evidence of axonal alterations in old females. Second, we observed a transgene-dependent elevation of the firing activity, post-burst afterhyperpolarization (AHP), and spontaneous excitatory postsynaptic current (EPSC) activity, without any effect of sex. Third, the passive properties and the hyperpolarization-activated current (Ih) were altered by transgene expression only in female mice, whereas the paired-pulse ratio (PPR) of evoked EPSC was changed only in males. Fourth, both sex and transgene expression were associated with changes in action potential properties. Consistent with previous work, higher levels of Aβ neuropathology were detected in 3xTg-AD females, whereas tau deposition was similar. In summary, our results support the idea that aging and AD neuropathology differentially alter the physiology of entorhinal cortex neurons in males and females.
机译:虽然阿尔茨海默病的患病率较高(AD)在女性中?很清楚,研究表明生物学性别也可能影响广告?发病机制。但是,这些差异背后的机制尚不清楚。为了调查大脑细胞水平的性别之间的生理差异,我们研究了20岁时在20岁时的杂合3XTG-AD小鼠中Entorthinal Cortex神经元的内在和突触特性。由于早期与AD症状结合,因此选择了该脑区。首先,我们发现雄性和女性非转基因小鼠之间的生理差异,提供旧女性轴突变化的间接证据。其次,我们观察到烧制活性的转基因依赖性升高,后突发后的后渗透(AHP)和自发兴奋性突触后突触型活性(EPSC)活性,没有任何性行为。第三,仅在雌性小鼠中仅通过转基因表达改变被动性质和超极化活化电流(IH),而诱发EPSC的配对脉冲比(PPR)仅在麦芽中改变。第四,性别和转基因表达都与作用潜在特性的变化有关。与先前的工作一致,在3XTG-AD女性中检测到较高水位的Aβ神经病理学,而Tau沉积是相似的。总之,我们的结果支持老化和AD神经病理学差异地改变男性和女性的敌人皮质神经元的生理学。

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