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Enhanced cognitive activity – over and above social or physical activity – is required to protect Alzheimer’s mice against cognitive impairment reduce Aβ deposition and increase synaptic immunoreactivity

机译:需要增强的认知活动-除了社交或体育活动之外-还需要保护阿尔茨海默氏症小鼠免受认知障碍减少Aβ沉积并增加突触免疫反应性

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摘要

Although social, physical, and cognitive activities have each been suggested to reduce the risk of Alzheimer’s Disease (AD), epidemiologic studies cannot determine which activity or combination of activities is most important. To address this question, mutant APP transgenic AD mice were reared long-term in one of four housing conditions (impoverished, social, social+physical, or complete enrichment) from 1½ through 9 months of age. Thus, a stepwise layering of social, physical, and enhanced cognitive activity was created. Behavioral evaluation in a full battery of sensorimotor, anxiety, and cognitive tasks was carried out during the final 5 weeks of housing. Only AD mice raised in complete enrichment (i.e., enhanced cognitive activity) showed: 1) protection against cognitive impairment, 2) decreased brain β-amyloid deposition, and 3) increased hippocampal synaptic immunoreactivity. The protection provided by enhanced cognitive activity spanned multiple cognitive domains (working memory, reference learning, and recognition/identification). Cognitive and neurohistologic benefits of complete enrichment occurred without any changes in blood cytokine or corticosterone levels, suggesting that enrichment-dependent mechanisms do not involve changes in the inflammatory response or stress levels, respectively. These results indicate that the enhanced cognitive activity of complete enrichment is required for cognitive and neurologic benefit to AD mice – physical and/or social activity are insufficient. Thus, our data suggest that humans who emphasize a high lifelong level of cognitive activity (over and above social and physical activities) will attain the maximal environmental protection against AD.
机译:尽管已建议进行社交,身体和认知活动以降低罹患阿尔茨海默氏病(AD)的风险,但是流行病学研究无法确定哪种活动或多种活动组合最重要。为了解决这个问题,将突变的APP转基因AD小鼠从1½到9个月大,在四种居住条件之一(贫困,社会,社会+身体或完全富集)中长期饲养。因此,社会,身体和增强的认知活动的逐步分层被创建。在居住的最后5周内进行了一系列完整的感觉运动,焦虑和认知任务的行为评估。只有完全富集(即增强的认知活动)的AD小鼠显示:1)防止认知障碍,2)减少脑β-淀粉样蛋白沉积,和3)增加海马突触免疫反应性。增强的认知活动所提供的保护跨越了多个认知领域(工作记忆,参考学习和识别/识别)。完全富集的认知和神经组织学益处在血细胞因子或皮质酮水平未发生任何变化的情况下发生,表明富集依赖性机制分别不涉及炎症反应或应激水平的变化。这些结果表明,完全富集的增强的认知活动是AD小鼠认知和神经功能受益所必需的–身体和/或社交活动不足。因此,我们的数据表明,强调高终生认知活动水平(超过社会和体育活动)的人类将获得最大程度的抗AD环境保护。

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