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首页> 外文期刊>European Journal of Pharmacology: An International Journal >Impaired spatial working memory and decreased frontal cortex BDNF protein level in dopamine transporter knockout mice.
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Impaired spatial working memory and decreased frontal cortex BDNF protein level in dopamine transporter knockout mice.

机译:在多巴胺转运蛋白敲除小鼠中有受损的空间工作记忆和额外皮质BDNF蛋白质水平。

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Brain-derived neurotrophic factor (BDNF), one of the key brain neurotrophins, has been implicated in neuronal plasticity and memory. Recent studies document the importance of BDNF for normal long-term memory functions. However, there are few studies of the roles of BDNF in short-term memory. Dopamine is likely to play important roles in BDNF gene expression in specific brain regions, including frontal cortical regions that are implicated in short-term working memory processes that include spontaneous alternation. We have thus tested spatial working memory in dopamine transporter knockout (DAT KO) and wild-type mice. Spontaneous alternation in the Y-maze, an index of short-term spatial working memory in mice, was significantly decreased in DAT KO mice compared to wild-type mice. BDNF protein was significantly decreased in frontal cortex, though not in striatum or hippocampus, of the DAT KO mice. The data support the hypothesis that impaired spatial working memory in DAT KO mice may be related to decreased frontal cortical BDNF in these animals, and document apparent roles for BDNF in a short-term memory process.
机译:脑衍生的神经营养因子(BDNF)是关键脑神经营养素之一,这一致涉及神经元可塑性和记忆。最近的研究记录了BDNF对于正常的长期记忆功能的重要性。然而,少数关于BDNF在短期记忆中的角色的研究。多巴胺可能在特定脑区域中的BDNF基因表达中发挥重要作用,包括跨越的前皮质区域,其涉及包括自发交替的短期工作存储器过程。因此,我们已经在多巴胺转运蛋白敲除(DAT KO)和野生型小鼠中测试了空间工作记忆。与野生型小鼠相比,Y-Maze,小鼠中短期空间工作记忆指令的自发性交替在DAT KO小鼠中显着降低。正面皮质中BDNF蛋白在DAT KO小鼠的纹状体或海马中显着降低。数据支持DAT KO小鼠中的空间工作记忆受损的假设可能与这些动物中的额叶型BDNF减少相关,以及在短期内存过程中对BDNF的显现作用。

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