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长期铁过载和低频电磁暴露对幼鼠空间学习与记忆的影响

Effects of prolonged iron overload and low frequency electromagnetic exposure on spatial learning and memory in the young rat.

作者信息

Maaroufi Karima, Had-Aissouni Laurence, Melon Christophe, Sakly Mohsen, Abdelmelek Hafedh, Poucet Bruno, Save Etienne

机构信息

Laboratory of Neurobiology and Cognition, UMR 6155 Aix-Marseille Université CNRS, Marseille, France.

出版信息

Neurobiol Learn Mem. 2009 Oct;92(3):345-55. doi: 10.1016/j.nlm.2009.04.002. Epub 2009 Apr 24.

Abstract

Low-frequency electromagnetic fields (EMF) have been suggested to affect the brain via alterations of blood-brain barrier permeability to iron. Because of an immature blood-brain barrier, the young brain may be particularly vulnerable to EMF exposure. It is therefore possible that behavioral and neurotoxic effects resulting from EMF-induced iron excess in the brain would be greater in young adults. The objective of the present study was to investigate the interaction between low-frequency EMF and iron overload in young rats. In Experiment 1, we tested the effects of iron overload on spatial learning and memory. Iron treatment did not affect performance in a reference (Morris water maze) and a working memory task (8-arm radial maze). In contrast, detection of a spatial change in an object exploration task was impaired. These effects correlated with modifications of the serotoninergic metabolism. In Experiment 2, the combination of EMF exposure and iron overload was tested. As in Experiment 1, rats were not impaired in reference and working memory tasks but were mildly impaired in the detection of the spatial change. Overall, the results showed an effect of iron overload on spontaneous spatial memory processes. However, low-frequency EMF exposure did not potentiate the effects of iron overload in young rats.

摘要

低频电磁场(EMF)已被认为可通过改变血脑屏障对铁的通透性来影响大脑。由于血脑屏障不成熟,幼龄大脑可能对EMF暴露尤为敏感。因此,EMF诱导的大脑铁过量所导致的行为和神经毒性效应在年轻成年人中可能会更大。本研究的目的是调查幼龄大鼠中低频EMF与铁过载之间的相互作用。在实验1中,我们测试了铁过载对空间学习和记忆的影响。铁处理并未影响在一项参照任务(莫里斯水迷宫)和一项工作记忆任务(八臂辐射状迷宫)中的表现。相比之下,在一项物体探索任务中对空间变化的检测受到了损害。这些效应与血清素能代谢的改变相关。在实验2中,测试了EMF暴露与铁过载的联合作用。与实验1一样,大鼠在参照和工作记忆任务中未受损害,但在空间变化检测中受到了轻度损害。总体而言,结果显示铁过载对自发空间记忆过程有影响。然而,低频EMF暴露并未增强幼龄大鼠中铁过载的效应。

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