在 900MHz 电磁场与铁过载联合作用下暴露于其中的大鼠的空间学习能力、单胺类物质和氧化应激。

Spatial learning, monoamines and oxidative stress in rats exposed to 900 MHz electromagnetic field in combination with iron overload.

机构信息

Aix-Marseille University, CNRS, Federation 3C FR 3512, Laboratory of Cognitive Neuroscience, UMR 7291, Marseille, France; Faculty of Sciences of Bizerte, Laboratory of Integrative Physiology, Jarzouna, Tunisia.

出版信息

Behav Brain Res. 2014 Jan 1;258:80-9. doi: 10.1016/j.bbr.2013.10.016. Epub 2013 Oct 18.

Abstract

The increasing use of mobile phone technology over the last decade raises concerns about the impact of high frequency electromagnetic fields (EMF) on health. More recently, a link between EMF, iron overload in the brain and neurodegenerative disorders including Parkinson's and Alzheimer's diseases has been suggested. Co-exposure to EMF and brain iron overload may have a greater impact on brain tissues and cognitive processes than each treatment by itself. To examine this hypothesis, Long-Evans rats submitted to 900 MHz exposure or combined 900 MHz EMF and iron overload treatments were tested in various spatial learning tasks (navigation task in the Morris water maze, working memory task in the radial-arm maze, and object exploration task involving spatial and non spatial processing). Biogenic monoamines and metabolites (dopamine, serotonin) and oxidative stress were measured. Rats exposed to EMF were impaired in the object exploration task but not in the navigation and working memory tasks. They also showed alterations of monoamine content in several brain areas but mainly in the hippocampus. Rats that received combined treatment did not show greater behavioral and neurochemical deficits than EMF-exposed rats. None of the two treatments produced global oxidative stress. These results show that there is an impact of EMF on the brain and cognitive processes but this impact is revealed only in a task exploiting spontaneous exploratory activity. In contrast, there are no synergistic effects between EMF and a high content of iron in the brain.

摘要

在过去十年中,移动电话技术的使用日益增多,这引发了人们对高频电磁场 (EMF) 对健康影响的担忧。最近,有人提出 EMF、大脑中铁过载与包括帕金森病和阿尔茨海默病在内的神经退行性疾病之间存在关联。EMF 和大脑铁过载的共同暴露可能比每种治疗方法本身对脑组织和认知过程的影响更大。为了检验这一假设,将接受 900MHz 暴露或联合 900MHz EMF 和铁过载处理的 Long-Evans 大鼠进行了各种空间学习任务(Morris 水迷宫中的导航任务、放射臂迷宫中的工作记忆任务以及涉及空间和非空间处理的物体探索任务)的测试。测量了生物源性单胺和代谢物(多巴胺、血清素)和氧化应激。暴露于 EMF 的大鼠在物体探索任务中表现出障碍,但在导航和工作记忆任务中则没有。它们还显示出几个脑区中单胺含量的改变,但主要是在海马体中。接受联合治疗的大鼠与接受 EMF 暴露的大鼠相比,没有表现出更大的行为和神经化学缺陷。两种处理方法都没有导致全身性氧化应激。这些结果表明,EMF 对大脑和认知过程有影响,但这种影响仅在利用自发探索活动的任务中显现出来。相比之下,EMF 和大脑中铁含量过高之间没有协同作用。

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