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首页> 外文期刊>Peptides: An International Journal >Neurotensin receptor levels as a function of brain aging and cognitive performance in the Morris water maze task in the rat.
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Neurotensin receptor levels as a function of brain aging and cognitive performance in the Morris water maze task in the rat.

机译:在大鼠的莫里斯水迷宫任务中,神经降压素受体水平与脑衰老和认知能力有关。

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摘要

The present study evaluated whether neurotensin (NT) binding sites were altered in the aged rat brain and if these alterations were related to the cognitive status of the animal. Aged (24-25 months old) Long-Evans rats were behaviorally screened using the Morris water maze task and were classified as either aged, cognitively impaired (AI) or cognitively unimpaired (AU) based on their relative performances in the task compared to young control (Y) animals. Decreases in specific [125I]NT binding were observed in the hippocampal formation, namely the dentate gyrus (DG), as well as in the septum and hypothalamus. Both aged groups also showed significant reductions in specific [125I]NT binding levels compared to the Y animals in the hippocampal CA3 sub-field, with the AI animals exhibiting the lowest levels. In the Substantia Nigra Zona Compacta (SNc) and the ventral tegmental area (VTA), specific [125I]NT binding was decreased as a function of age while binding in the paraventricular nucleus of the hypothalamus (PVNh) was decreased as a function of age and cognitive status. These alterations in the level of specific [125I] NT binding in the aged animals suggest decreases in NT receptor signaling as a function of age and potential involvement of NT-ergic systems in the etiology of age-related cognitive deficits.
机译:本研究评估了老年大鼠大脑中神经降压素(NT)的结合位点是否改变,以及这些改变是否与动物的认知状态有关。使用Morris水迷宫任务对年龄(24-25个月大)的Long-Evans大鼠进行了行为筛查,并根据其与年轻时相比的相对表现将其分为年龄,认知障碍(AI)或认知未受损(AU)。控制(Y)动物。在海马结构即齿状回(DG)以及中隔和下丘脑中观察到特异性[125I] NT结合的减少。与海马CA3子域中的Y动物相比,两个老年组的[125I] NT特异性结合水平均显着降低,其中AI动物的水平最低。在黑质黑质致密部(SNc)和腹侧被盖区(VTA)中,特定的[125I] NT结合随着年龄的增长而降低,而下丘脑室旁核(PVNh)的结合随着年龄的增长而降低和认知状态。老年动物中特异性[125I] NT结合水平的这些变化表明,NT受体信号转导随年龄的增加而下降,并且NT能量系统可能参与了与年龄有关的认知缺陷的病因。

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