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首页> 外文期刊>Neuroendocrinology: International Journal for Basic and Clinical Studies on Neuroendocrine Relationships >Sex differences in Hippocampal Memory and Learning following Neonatal Brain Injury: Is There a Role for Estrogen Receptor-α?
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Sex differences in Hippocampal Memory and Learning following Neonatal Brain Injury: Is There a Role for Estrogen Receptor-α?

机译:新生儿脑损伤后海马记忆和学习的性别差异:雌激素受体-α的作用是什么?

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摘要

Neonatal encephalopathy due to hypoxia-ischemia (HI) leads to severe, life-long morbidities in thousands of neonates born in the USA and worldwide each year. Varying capacities of long-term episodic memory, verbal working memory, and learning can present without cerebral palsy and have been associated with the severity of neonatal encephalopathy sustained at birth. Among children who sustain a moderate degree of HI at birth, girls have larger hippocampal volumes compared to boys. Clinical studies indicate that female neonatal brains are more resistant to the effects of neonatal HI, resulting in better long-term cognitive outcomes compared to males with comparable brain injury. Our most recent mechanistic studies have addressed the origins and cellular basis of sex differences in hippocampal neuroprotection following neonatal HI-related brain injury and implicate estrogen receptor-α (ERα) in the neurotrophin receptor-mediated hippocampal neuroprotection in female mice. This review summarizes the recent findings on ERα-dependent, neurotrophin-mediated hippocampal neuroprotection and weighs the evidence that this mechanism plays an important role in preservation of long-term memory and learning following HI in females.
机译:由于缺氧缺血(HI)导致了每年在美国出生的成千上万的新生儿的严重,生长的生长状态。长期发作记忆,口头工作记忆和学习的不同能力可以在没有脑瘫的情况下呈现,并且与出生时期的新生儿脑病的严重程度有关。在出生时维持中等程度的儿童,女孩与男孩相比,女孩有更大的海马体积。临床研究表明,女性新生大脑对新生儿HI的影响更具抗性,导致与具有可比性脑损伤的雄性相比更好的长期认知结果。我们最近的机械研究已经解决了新生儿高中相关脑损伤后海马神经保护作用的性别差异的起源和细胞基础,并在神经营养蛋白受体介导的雌性小鼠中致癌雌激素受体-α(ERα)。本综述总结了最近依赖于Erα的神经营养蛋白介导的海马神经保护作用,并称重该机制在保存长期记忆和学习在女性中的学习中的重要作用。

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