Long-Term Environmental Enrichment Relieves Dysfunctional Cognition and Synaptic Protein Levels Induced by Prenatal Inflammation in Older CD-1 Mice

IF 3.1 4区 医学 Q2 Medicine Neural Plasticity Pub Date : 2022-05-06 DOI:10.1155/2022/1483101
Zhe-Zhe Zhang, Li-ping Zeng, Jing Chen, Yong-Fang Wu, Ya-Tao Wang, Lan Xia, Qi-Gang Yang, Fang Wang, Gui-Hai Chen
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引用次数: 7

Abstract

A mounting body of evidence suggests that prenatal inflammation may enhance the rate of age-associated cognitive decline and may involve aberrant amounts of synaptic proteins in the hippocampus, including synaptotagmin-1 (Syt1) and activity-regulated cytoskeleton-associated protein (Arc). However, little is known about the specific impact of adolescent environmental enrichment (EE) on age-associated cognitive decline and the changes in synaptic proteins caused by prenatal inflammation. In this study, CD-1 mice in late pregnancy were given intraperitoneal doses of lipopolysaccharide (LPS, 50 μg/kg) or normal saline. Offspring arising from LPS dams were divided into a LPS group and a LPS plus EE (LPS-E) group. The LPS-E mice were exposed to EE from 2 months of age until the end of the experiment (3 or 15 months old). The Morris water maze (MWM) was used to assess the spatial learning and memory capacities of experimental mice, while western blotting and RNA-scope were used to determine the expression levels of Arc and Syt1 in the hippocampus at the protein and mRNA levels, respectively. Analysis revealed that at 15 months of age, the control mice experienced a reduction in cognitive ability and elevated expression levels of Arc and Syt1 genes when compared to control mice at 3 months of age. The LPS-E group exhibited better cognition and lower protein and mRNA levels of Arc and Syt1 than mice in the LPS group of the same age. However, the enriched environment mitigated but did not counteract, the effects of prenatal inflammation on cognitive and synaptic proteins when tested at either 3 or 15 months of age. Our findings revealed that long-term environmental enrichment improved the expression levels of synaptic proteins in CD-1 mice and that this effect was linked to the dysfunctional cognition caused by prenatal inflammation; this process may also be involved in the reduction of hippocampal Arc and Syt1 gene expression.
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长期环境富集缓解老年CD-1小鼠产前炎症诱导的功能障碍认知和突触蛋白水平
越来越多的证据表明,产前炎症可能会增加与年龄相关的认知能力下降的速度,并可能涉及海马中突触蛋白的异常数量,包括突触蛋白-1 (Syt1)和活动调节的细胞骨架相关蛋白(Arc)。然而,青少年环境富集(EE)对年龄相关认知能力下降和产前炎症引起的突触蛋白变化的具体影响知之甚少。在本研究中,CD-1孕晚期小鼠腹腔注射50 μg/kg的脂多糖(LPS)或生理盐水。将LPS母鼠分为LPS组和LPS + EE (LPS- e)组。LPS-E小鼠从2个月大开始暴露于EE,直到实验结束(3或15个月大)。采用Morris水迷宫(Morris water maze, MWM)评估实验小鼠的空间学习和记忆能力,采用western blotting和RNA-scope分别在蛋白和mRNA水平上检测Arc和Syt1在海马中的表达水平。分析显示,与3个月大的对照组小鼠相比,在15个月大时,对照小鼠的认知能力下降,Arc和Syt1基因的表达水平升高。与同龄LPS组相比,LPS- e组小鼠认知能力增强,Arc和Syt1蛋白及mRNA水平降低。然而,当在3个月或15个月大的时候测试时,丰富的环境减轻了但没有抵消产前炎症对认知和突触蛋白的影响。我们的研究结果表明,长期的环境富集改善了CD-1小鼠突触蛋白的表达水平,这种影响与产前炎症引起的认知功能障碍有关;这一过程也可能与海马Arc和Syt1基因表达的减少有关。
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来源期刊
Neural Plasticity
Neural Plasticity Neuroscience-Neurology
CiteScore
5.70
自引率
0.00%
发文量
0
审稿时长
1 months
期刊介绍: Neural Plasticity is an international, interdisciplinary journal dedicated to the publication of articles related to all aspects of neural plasticity, with special emphasis on its functional significance as reflected in behavior and in psychopathology. Neural Plasticity publishes research and review articles from the entire range of relevant disciplines, including basic neuroscience, behavioral neuroscience, cognitive neuroscience, biological psychology, and biological psychiatry.
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