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An enriched environment reduces hippocampal inflammatory response and improves cognitive function in a mouse model of stroke 被引量:1
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作者 Hong-Yu Zhou Ya-Ping Huai +7 位作者 Xing Jin Ping Yan xiao-jia tang Jun-Ya Wang Nan Shi Meng Niu Zhao-Xiang Meng Xin Wang 《Neural Regeneration Research》 SCIE CAS CSCD 2022年第11期2497-2503,共7页
An enriched environment is used as a behavio ral intervention therapy that applies sensory,motor,and social stimulation,and has been used in basic and clinical research of va rious neurological diseases.In this study,... An enriched environment is used as a behavio ral intervention therapy that applies sensory,motor,and social stimulation,and has been used in basic and clinical research of va rious neurological diseases.In this study,we established mouse models of photothrombotic stroke and,24 hours later,raised them in a standard,enriched,or isolated environment for 4 weeks.Compared with the mice raised in a standard environment,the cognitive function of mice raised in an enriched environment was better and the pathological damage in the hippocampal CA1 region was remarkably alleviated.Furthermore,protein expression levels of tumor necrosis factor receptor-associated factor 6,nuclear factorκB p65,interleukin-6,and tumor necrosis factorα,and the mRNA expression level of tumor necrosis factor receptor-associated factor 6 were greatly lower,while the expression level of miR-146a-5p was higher.Compared with the mice raised in a standard environment,changes in these indices in mice raised in an isolated environment were opposite to mice raised in an enriched environment.These findings suggest that different living environments affect the hippocampal inflammatory response and cognitive function in a mouse model of stro ke.An enriched environment can improve cognitive function following stroke through up-regulation of miR-146a-5p expression and a reduction in the inflammatory response. 展开更多
关键词 cognitive function enriched environment isolated environment miR-146a-5p NEUROINFLAMMATION nuclear factorκB p65 photothrombotic model STROKE tumor necrosis factor receptor-associated factor 6
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