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首页> 外文期刊>Experimental Neurology >Age-dependent decline of motor neocortex but not hippocampal performance in heterozygous BDNF mice correlates with a decrease of cortical PSD-95 but an increase of hippocampal TrkB levels
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Age-dependent decline of motor neocortex but not hippocampal performance in heterozygous BDNF mice correlates with a decrease of cortical PSD-95 but an increase of hippocampal TrkB levels

机译:电动机新生的年龄依赖性下降,但在杂合BDNF小鼠中没有海马性能与皮质PSD-95的减少相关,但随着海马TRKB水平的增加

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摘要

Brain-derived neurotrophic factor (BDNF) is a key player in learning and memory processes. However, little is known about brain area-specific functions of this neurotrophin. Here we investigated whether BDNF could differently affect motor neocortical and hippocampal-related cognitive and plastic morphologic changes in young (12-week-old) and middle-aged (30-week-old) BDNF heterozygous (BDNF +/-) and wild type (wt) mice. We found that at 30weeks of age, BDNF +/- mice showed impaired performance in accelerating rotarod and grasping tests while preserved spatial learning in a T-maze and recognition memory in an object recognition task compared with wt mice suggesting a specific neocortical dysfunction. Accordingly, a significant reduction of synaptic markers (PSD-95 and GluR1) and corresponding puncta was observed in motor neocortex but not in hippocampus of BDNF +/- mice. Interestingly, 30-week-old BDNF +/- mice displayed increased TrkB levels in the hippocampus but not in the motor neocortex, which suggests specific hippocampal compensatory mechanisms as a consequence of BDNF decrease. In conclusion, our data indicates that BDNF could differentially regulate the neuronal micro-structures and cognition in a region-specific and in an age-dependent manner.
机译:脑衍生的神经营养因子(BDNF)是学习和记忆过程中的关键球员。然而,关于这种神经营养蛋白的脑面积特异性函数很少。在这里,我们调查了BDNF是否可能不同地影响运动新生和海马相关的年轻(12周龄)和中年(30周龄)BDNF杂合(BDNF +/-)和野生类型的塑料形态变化(wt)小鼠。我们发现,在30周的年龄时,BDNF +/-小鼠在加速旋转和抓取试验时表现出性能受损,同时在对象识别任务中保留在T型迷宫和识别记忆中的空间学习,与表明特定的新皮质功能障碍的WT小鼠相比。因此,在电动机Neocortex中观察到突触标记物(PSD-95和Glur1)和相应的泪点的显着降低,但不在BDNF +/-小鼠的海马中观察到。有趣的是,30周龄BDNF +/-小鼠在海马中显示出增加的TRKB水平,但不在电机Neocortex中,这表明由于BDNF减少而提出了特定的海马补偿机制。总之,我们的数据表明,BDNF可以差异地调节特定于区域和年龄依赖性方式的神经元微结构和认知。

著录项

  • 来源
    《Experimental Neurology 》 |2012年第2期| 共11页
  • 作者单位

    Departament de Biologia Cellular Immunologia i Neurociències Facultat de Medicina Universitat de;

    Departament de Biologia Cellular Immunologia i Neurociències Facultat de Medicina Universitat de;

    Centro de Investigacion Biomédica en Red sobre Enfermedades Neurodegenerativas (CIBERNED) Spain;

    Departament de Biologia Cellular Immunologia i Neurociències Facultat de Medicina Universitat de;

    Centro de Investigacion Biomédica en Red sobre Enfermedades Neurodegenerativas (CIBERNED) Spain;

    Departament de Biologia Cellular Immunologia i Neurociències Facultat de Medicina Universitat de;

    Departament de Biologia Cellular Immunologia i Neurociències Facultat de Medicina Universitat de;

    Departament de Biologia Cellular Immunologia i Neurociències Facultat de Medicina Universitat de;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 神经病学 ;
  • 关键词

    BDNF heterozygous mice; Dendritic spines; GluR1; Spinophilin;

    机译:BDNF杂合小鼠;树突状刺;Glur1;刺激蛋白;

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