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GABAA Receptor Blockade Enhances Memory Consolidation by Increasing Hippocampal BDNF Levels

机译:GABAA受体阻滞剂通过增加海马BDNF水平来增强记忆巩固

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摘要

Memory consolidation is the process by which acquired information is converted to something concrete to be retrieved later. Here we examined a potential role for brain-derived neurotrophic factor (BDNF) in mediating the enhanced memory consolidation induced by the GABAA receptor antagonist, bicuculline methiodide. With the administration of an acquisition trial in naïve mice using a passive avoidance task, mature BDNF (mBDNF) levels were temporally changed in the hippocampal CA1 region, and the lowest levels were observed 9 h after the acquisition trial. In the passive avoidance task, bicuculline methiodide administration within 1 h of training but not after 3 h significantly increased latency time in the retention trial 24 h after the acquisition trial. Concomitantly, 1 h post-training administration of bicuculline methiodide, which enhanced memory consolidation, significantly increased mBDNF levels 9 h after training compared to those of the vehicle-treated control group. In addition, exogenous human recombinant BDNF (hrBDNF) administration 9 h after training into the hippocampal CA1 region facilitated memory consolidation confirming that the increase in mBDNF at around 9 h after training plays a key role in the enhancement of memory consolidation. Moreover, the increases in latency time and immediate early gene expressions by bicuculline methiodide or hrBDNF were significantly blocked by anisomycin, a protein synthesis inhibitor, K252a, a tyrosine receptor kinase (Trk) inhibitor, or anti-TrkB IgG. These findings suggest that the increase in the level of mBDNF and its function during a restricted time window after training are required for the enhancement of memory consolidation by GABAA receptor blockade.
机译:内存合并是将获取的信息转换为具体内容以供以后检索的过程。在这里,我们研究了脑源性神经营养因子(BDNF)在介导由GABAA受体拮抗剂双甲硫脲(Bicuculline methiodide)诱导的增强的记忆巩固中的潜在作用。通过使用被动回避任务对幼稚小鼠进行采集试验,海马CA1区的成熟BDNF(mBDNF)水平随时间发生了变化,在采集试验9h后观察到最低水平。在被动回避任务中,在训练后的1 h内(而不是3 h后)施用双小分子的甲硫氨酸可显着增加在获得性试验后24 h的保留试验中的潜伏时间。与之相比,与载体治疗的对照组相比,训练后9个小时可以提高记忆巩固的双小分子甲硫醚的训练后1个小时的mBDNF水平显着提高。此外,训练进入海马CA1区后9小时,外源人重组BDNF(hrBDNF)给药有助于记忆巩固,证实训练后9小时左右mBDNF的增加在增强记忆巩固中起关键作用。此外,茴香霉素,蛋白质合成抑制剂,K252a,酪氨酸受体激酶(Trk)抑制剂或抗TrkB IgG显着阻止了双小分子甲硫氨酸或hrBDNF的潜伏时间和立即早期基因表达的增加。这些发现表明,在训练后的有限时间窗内,mBDNF水平及其功能的增加是通过GABAA受体阻滞增强记忆巩固所必需的。

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