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Effects of a constant light environment on hippocampal neurogenesis and memory in mice.

机译:恒定光照环境对小鼠海马神经发生和记忆的影响。

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摘要

Because the environmental light-dark cycle is a key factor involved in modulating circadian rhythm in mammals, disruption of cyclic light conditions has a variety of effects on physiology and behavior. In the hippocampus, neurogenesis, which continues to occur throughout life, has been reported to exhibit circadian variation under cyclic light-dark conditions. In the present study, we examined whether a constant light environment affected hippocampal neurogenesis in mice. Half of the animals were exposed to continuous light conditions (L/L group), while the other half remained under normal cyclic light-dark conditions (L/D group). In the L/L group, the number of BrdU-labeled cells (proliferating cells) and that of BrdU and class III beta-tubulin double-labeled cells (newborn neurons) in the granule cell layer were significantly decreased compared with the L/D group. Because hippocampal neurogenesis is involved in memory and learning, we also investigated the effects on performance in water maze tasks to assess spatial learning. Exposure to L/L treatment for 3 weeks impaired spatial learning task performance, although there was no difference in the open field behaviors between the groups. These findings demonstrate that the constant light conditions impaired hippocampal neurogenesis as well as cognitive performance, and suggest an important role for the cyclic light-dark environment in appropriate maintenance of the hippocampal system.
机译:由于环境暗循环是调节哺乳动物昼夜节律的关键因素,因此循环光照条件的破坏会对生理和行为产生多种影响。在海马中,据报道在整个生命中持续发生的神经发生在周期性明暗条件下表现为昼夜节律变化。在本研究中,我们检查了恒定的光照环境是否会影响小鼠海马神经发生。一半的动物暴露于连续光照条件下(L / L组),另一半则保持在正常的循环光照-黑暗条件下(L / D组)。在L / L组中,与L / D相比,颗粒细胞层中BrdU标记的细胞(增殖细胞)以及BrdU和III类β-微管蛋白双标记细胞(新生神经元)的数量明显减少。组。因为海马神经发生参与记忆和学习,所以我们还研究了水迷宫任务对性能的影响,以评估空间学习。暴露于L / L治疗3周会损害空间学习任务的绩效,尽管两组之间的野外行为没有差异。这些发现表明恒定的光照条件损害了海马神经发生以及认知能力,并暗示了周期性的黑暗环境在适当维持海马系统中的重要作用。

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