首页> 美国卫生研究院文献>PLoS Clinical Trials >A Single Neonatal Injection of Ethinyl Estradiol Impairs Passive Avoidance Learning and Reduces Expression of Estrogen Receptor α in the Hippocampus and Cortex of Adult Female Rats
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A Single Neonatal Injection of Ethinyl Estradiol Impairs Passive Avoidance Learning and Reduces Expression of Estrogen Receptor α in the Hippocampus and Cortex of Adult Female Rats

机译:新生儿单次注射乙炔雌二醇会损害成年雌性大鼠海马和皮质的被动回避学习并降低雌激素受体α的表达。

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摘要

Although perinatal exposure of female rats to estrogenic compounds produces irreversible changes in brain function, it is still unclear how the amount and timing of exposure to those substances affect learning function, or if exposure alters estrogen receptor α (ERα) expression in the hippocampus and cortex. In adult female rats, we investigated the effects of neonatal exposure to a model estrogenic compound, ethinyl estradiol (EE), on passive avoidance learning and ERα expression. Female Wistar-Imamichi rats were subcutaneously injected with oil, 0.02 mg/kg EE, 2 mg/kg EE, or 20 mg/kg 17β-estradiol within 24 h after birth. All females were tested for passive avoidance learning at the age of 6 weeks. Neonatal 0.02 mg/kg EE administration significantly disrupted passive avoidance compared with oil treatment in gonadally intact females. In a second experiment, another set of experimental females, treated as described above, was ovariectomized under pentobarbital anesthesia at 10 weeks of age. At 15–17 weeks of age, half of each group received a subcutaneous injection of 5 μg estradiol benzoate a day before the passive avoidance learning test. Passive avoidance learning behavior was impaired by the 0.02 mg/kg EE dose, but notably only in the estradiol benzoate-injected group. At 17–19 weeks of age, hippocampal and cortical samples were collected from rats with or without the 5 μg estradiol benzoate injection, and western blots used to determine ERα expression. A significant decrease in ERα expression was observed in the hippocampus of the estradiol-injected, neonatal EE-treated females. The results demonstrated that exposure to EE immediately after birth decreased learning ability in adult female rats, and that this may be at least partly mediated by the decreased expression of ERα in the hippocampus.
机译:尽管雌性大鼠的围生期暴露会产生不可逆的脑功能变化,但仍不清楚暴露于这些物质的量和时间如何影响学习功能,或者暴露是否会改变海马和皮质中的雌激素受体α(ERα)表达。在成年雌性大鼠中,我们调查了新生儿暴露于模型雌激素化合物乙炔雌二醇(EE)对被动回避学习和ERα表达的影响。在出生后24小时内,对Wistar-Imamichi雌性大鼠皮下注射油,0.02 mg / kg EE,2 mg / kg EE或20 mg / kg17β-雌二醇。在6周龄时对所有女性进行被动回避学习测试。与油治疗的性腺完好女性相比,新生儿0.02 mg / kg EE给药显着破坏了被动回避。在第二个实验中,按上述方法治疗的另一组实验女性在戊巴比妥麻醉下于10周龄切除卵巢。在15-17周龄时,每组一半的人在被动回避学习测试前一天皮下注射5μg苯甲酸雌二醇。 0.02 mg / kg EE剂量会损害被动回避学习行为,但仅在注射雌二醇苯甲酸酯组中显着降低。在17-19周龄时,从注射或不注射5μg苯甲酸雌二醇的大鼠中收集海马和皮质样品,并用Western印迹法测定ERα的表达。在雌二醇注射的新生儿EE治疗的女性的海马中观察到ERα表达的显着降低。结果表明,出生后立即暴露于EE会降低成年雌性大鼠的学习能力,这可能至少部分是由海马中ERα表达的降低所介导的。

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