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环境丰容可诱导中年雌性 Balb/c 小鼠的神经可塑性变化,并增加海马 BDNF、p-Akt 和 p-MAPK1/2 的水平。

Environmental enrichment induces neuroplastic changes in middle age female Balb/c mice and increases the hippocampal levels of BDNF, p-Akt and p-MAPK1/2.

机构信息

Laboratory of Neurogenesis, Division of Clinical Research, National Institute of Psychiatry Ramón de la Fuente Muñiz, Calzada México-Xochimilco 101, 14370 México, D.F., Mexico.

Laboratory of Neurogenesis, Division of Clinical Research, National Institute of Psychiatry Ramón de la Fuente Muñiz, Calzada México-Xochimilco 101, 14370 México, D.F., Mexico.

出版信息

Neuroscience. 2014 Feb 28;260:158-70. doi: 10.1016/j.neuroscience.2013.12.026. Epub 2013 Dec 18.

Abstract

Hippocampus is one of the brain regions in which neuroplastic changes occur. Paradigms such as environmental enrichment (ENR) have been used to prevent or delay the neuroplastic changes of the hippocampus during aging. Here, we investigated the beneficial effects of ENR on dendritic spines and hippocampal neurogenesis in middle age Balb/c mice. ENR increased the number of dendritic spines, cell survival, and intermediate stages of the hippocampal neurodevelopment process. Also, ENR alters the distribution of cells involved in the neurogenic process along the dorsal-ventral dentate gyrus. In addition, ENR increased the proportion of cells with more mature dendritic morphology and net hippocampal neurogenesis. Whole-hippocampus protein extracts revealed that ENR increases the levels of BDNF, phospho-Akt and phospho-MAPK1/2, suggesting that the positive effects of ENR on neuroplasticity in middle age Balb/c mice involve the participation of these key-signaling proteins. Our results suggest that ENR is a relevant strategy to prevent neuroplastic decline by increasing the formation of both dendritic spines and new neurons in the hippocampus during middle age.

摘要

海马体是大脑中发生神经可塑性变化的区域之一。环境丰富(ENR)等范式已被用于预防或延缓衰老过程中海马体的神经可塑性变化。在这里,我们研究了 ENR 对中年 Balb/c 小鼠海马体树突棘和神经发生的有益影响。ENR 增加了树突棘的数量、细胞存活率和海马体神经发育过程的中间阶段。此外,ENR 改变了参与神经发生过程的细胞沿背-腹齿状回的分布。此外,ENR 增加了具有更成熟树突形态和净海马体神经发生的细胞比例。全海马体蛋白提取物显示,ENR 增加了 BDNF、磷酸化 Akt 和磷酸化 MAPK1/2 的水平,这表明 ENR 对中年 Balb/c 小鼠神经可塑性的积极影响涉及这些关键信号蛋白的参与。我们的结果表明,ENR 是一种相关策略,可以通过增加中年时海马体中树突棘和新神经元的形成来防止神经可塑性下降。

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