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首页> 外文期刊>Brain structure & function >Adult vitamin D deficiency disrupts hippocampal-dependent learning and structural brain connectivity in BALB/c mice
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Adult vitamin D deficiency disrupts hippocampal-dependent learning and structural brain connectivity in BALB/c mice

机译:成人维生素D缺乏破坏了Balb / C小鼠的海马依赖学习和结构脑连接

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Converging evidence from human and animal studies support an association between vitamin D deficiency and cognitive impairment. Previous studies have shown that hippocampal volume is reduced in adults with vitamin D deficiency as well as in a range of disorders, such as schizophrenia. The aim of the current study was to examine the effect of adult vitamin D (AVD) deficiency on hippocampal-dependent spatial learning, and hippocampal volume and connectivity in healthy adult mice. Ten-week-old male BALB/c mice were fed a control (vitamin D 1500IU/kg) or vitamin D-depleted (vitamin D 0IU/kg) diet for a minimum of 10 weeks. The mice were then tested for hippocampal-dependent spatial learning using active place avoidance (APA) and on tests of muscle and motor coordination (rotarod and grip strength). The mice were perfused and brains collected to acquire ex vivo structural and diffusion-weighted images using a 16.4T MRI scanner. We also performed immunohistochemistry to quantify perineuronal nets (PNNs) and parvalbumin (PV) interneurons in various brain regions. AVD-deficient mice had a lower latency to enter the shock zone on APA, compared to control mice, suggesting impaired hippocampal-dependent spatial learning. There were no differences in rotarod or grip strength, indicating that AVD deficiency did not have an impact on muscle or motor coordination. AVD deficiency did not have an impact on hippocampal volume. However, AVD-deficient mice displayed a disrupted network centred on the right hippocampus with abnormal connectomes among 29 nodes. We found a reduction in PNN positive cells, but no change in PV, centred on the hippocampus. Our results provide compelling evidence to show that AVD deficiency in otherwise healthy adult mice may play a key role in hippocampal-dependent learning and memory formation. We suggest that the spatial learning deficits could be due to the disruption of right hippocampal structural connectivity.
机译:来自人和动物研究的融合证据支持维生素D缺乏和认知障碍之间的关联。以前的研究表明,具有维生素D缺乏症的成年人和一系列疾病(如精神分裂症)中的海马体积减少。目前研究的目的是研究成人维生素D(AVD)缺乏对海马依赖的空间学习的影响,以及健康成年小鼠的海马体积和连通性。将10周龄的雄性BALB / C小鼠饲喂一次对照(维生素D 1500IU / kg)或维生素D-耗尽(维生素D 0iU / kg)饮食至少10周。然后使用主动避免(APA)和肌肉和电动机协调(旋转杆和握力)的测试来测试小鼠的小鼠进行海马依赖的空间学习。将小鼠灌注并收集大脑,使用16.4T MRI扫描仪获取离体结构和扩散加权图像。我们还进行了免疫组化,用于量化各种脑区中的脑尿位网(PNNS)和帕瓦蛋白酶(PV)中间核核算。与对照小鼠相比,AVD缺陷的小鼠在APA上进入时延迟下降,表明海马依赖的空间学习受损。旋流器或握力没有差异,表明AVD缺乏对肌肉或电动机的影响没有影响。 AVD缺乏对海马体积没有影响。但是,AVD缺陷的小鼠在右海马上展示了一个中断的网络,29个节点之间的Connectomes异常。我们发现PNN阳性细胞的还原,但在海马上以PV的含量没有变化。我们的结果提供了令人信服的证据,表明否则健康的成年小鼠的AVD缺乏可能在海马依赖学习和记忆形成中发挥关键作用。我们认为空间学习赤字可能是由于右海马结构连通性的破坏。

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