首页> 美国卫生研究院文献>Frontiers in Cellular Neuroscience >Rapid Eye Movement Sleep Deprivation Produces Long-Term Detrimental Effects in Spatial Memory and Modifies the Cellular Composition of the Subgranular Zone
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Rapid Eye Movement Sleep Deprivation Produces Long-Term Detrimental Effects in Spatial Memory and Modifies the Cellular Composition of the Subgranular Zone

机译:快速的眼球运动睡眠剥夺在空间记忆中产生长期有害影响并改变亚颗粒区的细胞组成

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摘要

Sleep deprivation (SD) affects spatial memory and proliferation in the dentate gyrus. It is unknown whether these deleterious effects persist in the long run. The aim of this study was to evaluate the proliferation, differentiation and maturation of neural progenitors as well as spatial memory 21 days after suffering SD. Sixty-day old male Balb/C mice were exposed to 72-h REM-SD. Spatial memory, cell fate, apoptosis and expression levels of insulin-like growth factor 1 receptor (IGF-1R) were evaluated in the hippocampus at 0, 14, and 21 days after SD or control conditions. After 21-days recovery period, memory performance was assessed with the Barnes maze, we found a significant memory impairment in SD mice vs. control (94.0 ± 10.2 s vs. 25.2 ± 4.5 s; p < 0.001). The number of BrdU+ cells was significantly decreased in the SD groups at day 14 (controls = 1.6 ± 0.1 vs. SD mice = 1.2 ± 0.1 cells/field; p = 0.001) and at day 21 (controls = 0.2 ± 0.03 vs. SD mice = 0.1 ± 0.02 cells/field; p < 0.001). A statistically significant decrease was observed in neuronal differentiation (1.4 ± 0.1 cells/field vs. 0.9 ± 0.1 cells/field, p = 0.003). Apoptosis was significantly increased at day 14 after SD (0.53 ± 0.06 TUNEL+ cells/field) compared to controls (0.19 ± 0.03 TUNEL+ cells/field p < 0.001) and at 21-days after SD (SD mice 0.53 ± 0.15 TUNEL+ cells/field; p = 0.035). At day 0, IGF-1R expression showed a statistically significant reduction in SD animals (64.6 ± 12.2 units) when compared to the control group (102.0 ± 9.8 units; p = 0.043). However, no statistically significant differences were found at days 14 and 21 after SD. In conclusion, a single exposition to SD for 72-h can induce deleterious effects that persist for at least 3 weeks. These changes are characterized by spatial memory impairment, reduction in the number of hippocampal BrdU+ cells and persistent apoptosis rate. In contrast, changes IGF-1R expression appears to be a transient event.>Highlight Sleep deprivation affects spatial memory and proliferation in the dentate gyrus. To date it is unknown whether these deleterious effects are persistent over a long period of time. We analyzed the effects of sleep deprivation in the hippocampus after 21 days of recovery sleep. Our findings indicate that after sleep recovery, the detrimental effects of SD can be observed for at least 2 weeks, as shown by a reduction in memory performance, changes in the hippocampal cellular composition and higher apoptotic rate over a long period of time.
机译:睡眠剥夺(SD)影响齿状回的空间记忆和增殖。从长远来看,这些有害影响是否会持续存在是未知的。这项研究的目的是评估SD后21天神经祖细胞的增殖,分化和成熟度以及空间记忆。 60天大的雄性Balb / C小鼠暴露于72小时的REM-SD。在SD或对照条件后0、14和21天,在海马中评估空间记忆,细胞命运,细胞凋亡和胰岛素样生长因子1受体(IGF-1R)的表达水平。恢复21天后,用Barnes迷宫评估记忆力,我们发现SD小鼠与对照组相比有明显的记忆力减退(94.0±10.2 s vs. 25.2±4.5 s; p <0.001)。 SD组在第14天(对照组= 1.6±0.1 vs. SD小鼠= 1.2±0.1个细胞/视野; p = 0.001)和第21天(对照组= 0.2±0.03 vs. SD),BrdU +细胞数量显着减少小鼠= 0.1±0.02个细胞/视野; p <0.001)。在神经元分化中观察到统计学上显着的降低(1.4±0.1个细胞/视野vs. 0.9±0.1个细胞/视野,p = 0.003)。与对照组(0.19±0.03 TUNEL +细胞/视野p <0.001)和SD后21天(SD小鼠0.53±0.15 TUNEL +细胞/视野)相比,SD后第14天(0.53±0.06 TUNEL +细胞/视野)细胞凋亡显着增加; p = 0.035)。在第0天,与对照组(102.0±9.8单位; p = 0.043)相比,SD动物的IGF-1R表达显示出统计学上的显着降低(64.6±12.2单位)。但是,在SD后第14天和第21天没有发现统计学上的显着差异。总之,一次暴露于SD达72小时可诱导有害作用,这种作用持续至少3周。这些变化的特征是空间记忆障碍,海马BrdU +细胞数量减少和持续凋亡率。相反,IGF-1R表达的变化似乎是短暂事件。>高光睡眠剥夺会影响齿状回的空间记忆和增殖。迄今为止,尚不清楚这些有害影响是否会长期持续。我们分析了恢复睡眠21天后海马睡眠不足的影响。我们的发现表明,在睡眠恢复后,SD的有害作用至少可以观察到2周,这表现为记忆力下降,海马细胞组成的变化以及长时间内较高的凋亡率。

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