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Environmental stimulation influence the cognition of developing mice by inducing changes in oxidative and apoptosis status

机译:环境刺激通过诱导氧化和凋亡状态的变化来影响发育中小鼠的认知

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Environment condition has been shown to play an important role in brain development. The present study examined the effects of enriched and impoverished environment on both spatial and emotional learning and memory of young mice and explored the underlying mechanisms. 3-week-old mice were housed in enriched environment (n=10, 10 mice in a large cage with toys and a running wheel), or standard environment (n=10, 10 mice in a large cage without objects), or impoverished environment (n=10, single mice in a small cage without objects) for 6. weeks. Then, the spatial and emotional cognition of mice were evaluated by the water maze and step-down inhibitory avoidance test, respectively. To explore the underlying mechanisms, oxidation measurement in hippocampus and medial-temporal lobe cortex (MTLC) and apoptosis examination in hippocampus were performed. Results showed that compared with standard environment group, enriched and impoverished mice exhibited high and low performance levels in behavior tests, respectively. The oxidative status of hippocampus and MTLC were decreased in enriched group but increased in impoverished group. Moreover, changes in apoptosis of hippocampus in these two groups showed the same tendency with oxidative status. These results suggest that environment condition can simultaneously influence spatial and emotional learning and memory, which may result from inducing changes in the oxidative and apoptosis status in associated brain regions. Here, we firstly report using young mice to examine the oxidative status as a primary and direct factor to explore the mechanism of effects of different environment on both spatial and emotional cognition.
机译:研究表明,环境条件在大脑发育中起着重要作用。本研究研究了丰富和贫困环境对幼鼠的空间和情感学习与记忆的影响,并探讨了其潜在机制。将3周大的小鼠饲养在丰富的环境中(n = 10,有玩具和跑轮的大笼子中的10只小鼠),或标准环境(n = 10,没有物体的大笼子中的10只小鼠),或贫困环境(n = 10,一只小老鼠放在没有物体的小笼子里)持续6周。然后,分别通过水迷宫和降压抑制回避测试评估小鼠的空间和情感认知。为了探讨其潜在机制,进行了海马和颞叶内侧皮质(MTLC)的氧化测量以及海马的凋亡检查。结果表明,与标准环境组相比,富裕和贫困的小鼠在行为测试中分别表现出较高和较低的性能水平。富集组海马和MTLC的氧化状态降低,而贫穷组则升高。此外,两组海马细胞凋亡的变化与氧化状态呈相同趋势。这些结果表明环境条件可以同时影响空间和情感的学习和记忆,这可能是由诱导相关脑区的氧化和凋亡状态的变化引起的。在这里,我们首先报道使用幼鼠将氧化状态作为主要和直接的因素进行研究,以探索不同环境对空间和情感认知的影响机制。

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