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Distinct behavioral and brain changes after different durations of the modified multiple platform method on rats: An animal model of central fatigue

机译:改良的多平台方法对大鼠不同持续时间后行为和大脑的明显变化:中枢性疲劳的动物模型

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摘要

The modified multiple platform method (MMPM) is a classical sleep deprivation model. It has been widely used in behavioral and brain research, due to its effects on physical and mental functions. However, different MMPM protocols can promote distinct effects in rats. Although the MMPM has been proved to induce central fatigue, the effects of different durations of subjection to the MMPM remain undetermined. This study aims to investigate the changes in behavior, N-Methyl-d-Aspartate receptor 1 (NR1) and 2A (NR2A), as well as the ultrastructural alteration in the hippocampus after different MMPM modelling, to compare the central fatigue effect induced by dynamic MMPM. Rats were randomly divided into four groups: 5-, 14- and 21- day MMPM groups, and a control group. Each MMPM group underwent a 14-hour daily MMPM modelling. After each training session, open field and elevated plus maze tests were performed. Corticosterone levels were detected by ELISA, and the hippocampal NR1 and NR2A were measured by RT-PCR and Western blot analysis. In addition, ultrastructural changes in the hippocampal cornu ammonis 1(CA1) region were determined by transmission electron microscopy (TEM). The findings showed that the 5 and 14 days of MMPM induced a high-stress state, while the 21 days of MMPM induced anxiety and degenerative alteration in the hippocampal morphology. Additionally, hippocampal NR1 and NR2A gene expression decreased in all MMPM groups, whereas the protein expression only decreased in the 21-day group. Overall, different durations of MMPM caused distinct behavioral and brain changes, and the 21 days of MMPM could induce central fatigue.
机译:改进的多平台方法(MMPM)是经典的睡眠剥夺模型。由于它对身体和心理功能的影响,它已被广泛用于行为和大脑研究。但是,不同的MMPM协议可以在大鼠中促进不同的作用。尽管已证明MMPM会引起中枢疲劳,但尚不确定不同持续时间的MMPM服药的影响。这项研究旨在调查行为变化,N-甲基-d-天冬氨酸受体1(NR1)和2A(NR2A)以及不同MMPM模型后海马的超微结构改变,以比较由NMPM引起的中枢疲劳效应动态MMPM。将大鼠随机分为四组:5、14和21天MMPM组和对照组。每个MMPM组每天进行14小时的MMPM建模。每次训练后,都要进行野外测试和高架迷宫测试。通过ELISA检测皮质酮水平,通过RT-PCR和Western blot分析测量海马NR1和NR2A。此外,通过透射电镜(TEM)确定海马角膜氨氮1(CA1)区域的超微结构变化。研究结果表明,MMPM的第5天和第14天诱发了高压力状态,而MMPM的第21天诱发了海马形态的焦虑和退化性改变。此外,在所有MMPM组中,海马NR1和NR2A基因表达均降低,而在21天组中蛋白表达仅降低。总体而言,MMPM的持续时间不同会导致行为和大脑发生明显变化,而MMPM的21天会诱发中枢疲劳。

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