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Effects of chronic noise exposure on spatial learning and memory of rats in relation to neurotransmitters and NMDAR2B alteration in the hippocampus

机译:慢性噪声暴露对大鼠空间学习和记忆的影响与海马神经递质和NMDAR2B改变有关

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Objectives: The purpose of this study was to examine the effects of noise exposure on spatial learning and memory and associated mechanisms in the hippocampus (HIP). Methods: Forty-eight male SD rats were grouped as: A, control; B, Morris water maze (MWM) training group; C, noise exposure group; and D, noise exposure followed by MWM training group. The influence of noise stress on spatial learning and memory in rats was assessed in hidden platform acquisition training and probe trial testing in MWM. Changes in morphology of Nissl bodies were observed in the CA1, CA3 and DG regions of HIP. In order to understand the possible mechanisms behind noise stress-induced changes, the concentration of amino acid neurotransmitters and the expression of NMDAR2B (NR2B) in HIP were also evaluated. Results: After noise exposure, the performance of spatial learning and memory in group D was decreased significantly compared to group B. The concentration of glutamate was significantly increased in groups C and D, whereas GABA decreased markedly. The mean optical density of Nissl bodies in groups C and D was reduced in the CA1, DG and CA3 regions. The expression of NR2B was significantly decreased in the CA1, CA3 and DG regions in group C, and in the CA1 and CA3 regions in group D as compared with groups A and B. Conclusions: Excitotoxicity, impaired Nissl bodies and reduced expression of NR2B in rat HIP induced by chronic noise exposure might have caused the impairment of spatial learning and memory.
机译:目的:本研究的目的是研究噪声暴露对海马(HIP)空间学习和记忆及相关机制的影响。方法:48只雄性SD大鼠分为:A,对照组,A组。 B,莫里斯水迷宫(MWM)培训小组; C,噪声暴露组; D,噪音暴露,随后是MWM培训小组。在MWM中通过隐藏平台获取训练和探针试验测试评估了噪声压力对大鼠空间学习和记忆的影响。在HIP的CA1,CA3和DG区观察到Nissl体的形态变化。为了了解噪声压力引起的变化背后的可能机制,还评估了HIP中氨基酸神经递质的浓度和NMDAR2B(NR2B)的表达。结果:暴露于噪声后,D组的空间学习和记忆能力明显低于B组。C和D组的谷氨酸浓度显着增加,而GABA显着下降。 C1,D组的Nissl体的平均光密度在CA1,DG和CA3区降低。与A组和B组相比,C组的CA1,CA3和DG区以及D组的CA1,CA3区NR2B的表达均显着降低。结论:兴奋性毒性,尼氏体受损和NR2B表达降低。慢性噪声暴露引起的大鼠HIP可能导致空间学习和记忆受损。

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