Delay-dependent impairment of spatial working memory with inhibition of NR2B-containing NMDA receptors in hippocampal CA1 region of rats

被引:0
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作者
Xue-Han Zhang
Shu-Su Liu
Feng Yi
Min Zhuo
Bao-Ming Li
机构
[1] Institute of Neurobiology,Center for Neuropsychiatric Diseases
[2] and State Key Laboratory of Medical Neurobiology,Department of Physiology, Faculty of Medicine
[3] Institutes of Brain Science,undefined
[4] Fudan University,undefined
[5] Institute of Life Science,undefined
[6] Nanchang University,undefined
[7] University of Toronto,undefined
来源
Molecular Brain | / 6卷
关键词
NR2B; Hippocampus; Working memory; T-maze; Rat;
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摘要
Hippocampal N-methyl-D-aspartate receptor (NMDAR) is required for spatial working memory. Although evidence from genetic manipulation mice suggests an important role of hippocampal NMDAR NR2B subunits (NR2B-NMDARs) in spatial working memory, it remains unclear whether or not the requirement of hippocampal NR2B-NMDARs for spatial working memory depends on the time of spatial information maintained. Here, we investigate the contribution of hippocampal NR2B-NMDARs to spatial working memory on delayed alternation task in T-maze (DAT task) and delayed matched-to-place task in water maze (DMP task). Our data show that infusions of the NR2B-NMDAR selective antagonists, Ro25-6981 or ifenprodil, directly into the CA1 region, impair spatial working memory in DAT task with 30-s delay (not 5-s delay), but severely impair error-correction capability in both 5-s and 30-s delay task. Furthermore, intra-CA1 inhibition of NR2B-NMDARs impairs spatial working memory in DMP task with 10-min delay (not 30-s delay). Our results suggest that hippocampal NR2B-NMDARs are required for spatial working memory in long-delay task, whereas spare for spatial working memory in short-delay task. We conclude that the requirement of NR2B-NMDARs for spatial working memory is delay-dependent in the CA1 region.
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