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女性血清催乳素水平的升高通过促进海马体循环动力学的变化来改善空间学习能力。

Increase in serum prolactin levels in females improves the performance of spatial learning by promoting changes in the circuital dynamics of the hippocampus.

作者信息

Moreno-Ruiz Beatriz, Mellado Susana, Zamora-Moratalla Alfonsa, Albarracín Ana L, Martín Eduardo D

机构信息

Laboratory of Neurophysiology and Synaptic Plasticity, Instituto Cajal, Consejo Superior de Investigaciones Científicas, Madrid, Spain.

Departamento de Bioingeniería, Instituto Superior de Investigaciones Biológicas, Consejo Nacional de Investigaciones Científicas y Técnicas, Tucumán, Argentina.

出版信息

Psychoneuroendocrinology. 2021 Feb;124:105048. doi: 10.1016/j.psyneuen.2020.105048. Epub 2020 Nov 26.

Abstract

Beyond the direct physiological functions associated with motherhood in mammals, previous studies have suggested the potential role of prolactin (Prl) in distinct brain processes such as neuroprotection, neurogenesis, and stress responses. However, the cognitive influence of Prl remains unclear, particularly regarding the mechanisms of acquisition, consolidation and retrieval of information in the brain. Using chronic implanted electrodes in freely moving female mice combined with behavioral tests, we investigated the rhythmic activity changes induced by Prl in a model of hippocampus-dependent learning and memory. Our results show that Prl improves the learning of a spatial memory task in the acquisition stage. The main variations at the circuitry level were in the theta frequency band (4-8 Hz and 8-12 Hz), marked by a faster change in oscillatory activity with no modifications to higher frequencies. These results show that Prl plays a significant role in the acquisition of information during learning of a spatial memory task, suggesting that an increase in Prl levels may induce changes in circuital network plasticity.

摘要

除了与哺乳动物母亲身份相关的直接生理功能外,先前的研究表明催乳素(Prl)在神经保护、神经发生和应激反应等不同脑过程中具有潜在作用。然而,Prl对认知的影响仍不清楚,特别是在大脑中信息获取、巩固和检索的机制方面。我们使用慢性植入电极记录自由活动的雌性小鼠的脑电活动,并结合行为测试,研究了Prl在海马体依赖的学习和记忆模型中诱导的节律性活动变化。我们的结果表明,Prl在空间记忆任务的获取阶段改善了学习能力。在电路水平上的主要变化发生在θ频段(4 - 8Hz和8 - 12Hz),其特征是振荡活动变化更快,而高频没有改变。这些结果表明,Prl在空间记忆任务学习过程中的信息获取中起着重要作用,这表明Prl水平的升高可能会诱导电路网络可塑性的变化。

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