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

机译:延迟依赖的空间工作记忆障碍抑制大鼠海马CA1区含NR2B的NMDA受体

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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.
机译:海马N-甲基-D-天冬氨酸受体(NMDAR)是空间工作记忆所必需的。尽管遗传操纵小鼠的证据表明海马NMDAR NR2B亚基(NR2B-NMDARs)在空间工作记忆中具有重要作用,但尚不清楚海马NR2B-NMDARs对空间工作记忆的需求是否取决于维持空间信息的时间。在这里,我们调查海马NR2B-NMDARs在T迷宫中的延迟交替任务(DAT任务)和水迷宫中的延迟匹配放置任务(DMP任务)对空间工作记忆的贡献。我们的数据表明,将NR2B-NMDAR选择性拮抗剂Ro25-6981或ifenprodil直接注入CA1区域会延迟DAT任务的空间工作记忆,延迟时间为30 s(而非5 s延迟),但严重损害了错误-具有5秒和30秒延迟任务的校正功能。此外,CA1内对NR2B-NMDAR的抑制以10分钟的延迟(而不是30秒的延迟)损害DMP任务中的空间工作记忆。我们的结果表明,长时任务中的空间工作记忆需要海马NR2B-NMDARs,而短时任务中的空间工作记忆则是多余的。我们得出的结论是,在CA1区域中,NR2B-NMDAR对空间工作记忆的要求与延迟有关。

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