首页> 美国卫生研究院文献>Scientia Pharmaceutica >Decreased Hippocampal 5-HT and DA Levels Following Sub-Chronic Exposure to Noise Stress: Impairment in both Spatial and Recognition Memory in Male Rats
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Decreased Hippocampal 5-HT and DA Levels Following Sub-Chronic Exposure to Noise Stress: Impairment in both Spatial and Recognition Memory in Male Rats

机译:亚慢性暴露于噪声压力后海马5-HT和DA水平降低:雄性大鼠的空间和认知记忆均受损。

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摘要

Mankind is exposed to a number of stressors, and among them noise is one which can cause intense stress. High levels of background noise can severely impair one’s ability to concentrate. The present study was aimed to investigate the effect of sub-chronic noise stress on cognitive behavior and hippocampal monoamine levels in male rats. The study was performed on 12 male Wistar rats, divided into two groups; the control and noise-exposed. The rats in the test group were subjected to noise stress, 4h daily for 15 days. Cognitive testing was performed by the Elevated Plus Maze test (EPM) and Novel Object Recognition test (NOR). HPLC-EC was used to determine hippocampal monoamine levels and their metabolites. The data obtained revealed a significant decrease in hippocampal serotonin (5-hydroxytryptamine; 5-HT) and dopamine (DA) levels, whereas turnover ratios of 5-HT and DA were significantly increased compared to the controls. Rats exposed to noise exhibited a significant decrement in spatial memory. A significantly decreased recognition index of rats exposed to noise as compared to the control was also observed in the NOR test. Results of the present findings suggest the role of decreased hippocampal 5-HT and DA in the impairment of cognitive function following noise exposure.
机译:人类暴露于多种压力源中,其中噪声是一种会引起强烈压力的噪声。高水平的背景噪音会严重削弱一个人的专心能力。本研究旨在探讨亚慢性噪声应激对雄性大鼠认知行为和海马单胺水平的影响。该研究是对12只雄性Wistar大鼠进行的,分为两组。控制和噪声暴露。试验组中的大鼠每天4小时经受噪声应激,持续15天。认知测试是通过高架迷宫测试(EPM)和新对象识别测试(NOR)进行的。 HPLC-EC用于确定海马单胺水平及其代谢产物。获得的数据显示,海马血清素(5-羟色胺; 5-HT)和多巴胺(DA)水平显着降低,而5-HT和DA的周转率与对照组相比显着增加。暴露于噪音的大鼠的空间记忆能力明显下降。在NOR测试中,与对照组相比,暴露于噪音的大鼠的识别指数也显着降低。本研究结果表明,噪声暴露后海马5-HT和DA减少在认知功能损害中的作用。

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