首页> 美国卫生研究院文献>PLoS Clinical Trials >Extremely Low Frequency Magnetic Field (50 Hz, 0.5 mT) Reduces Oxidative Stress in the Brain of Gerbils Submitted to Global Cerebral Ischemia
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Extremely Low Frequency Magnetic Field (50 Hz, 0.5 mT) Reduces Oxidative Stress in the Brain of Gerbils Submitted to Global Cerebral Ischemia

机译:极低频磁场(50 Hz,0.5 mT)降低了遭受全球脑缺血的沙鼠大脑中的氧化应激

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摘要

Magnetic field as ecological factor has influence on all living beings. The aim of this study was to determine if extremely low frequency magnetic field (ELF-MF, 50 Hz, 0.5 mT) affects oxidative stress in the brain of gerbils submitted to 10-min global cerebral ischemia. After occlusion of both carotid arteries, 3-month-old gerbils were continuously exposed to ELF-MF for 7 days. Nitric oxide and superoxide anion production, superoxide dismutase activity and index of lipid peroxidation were examined in the forebrain cortex, striatum and hippocampus on the 7th (immediate effect of ELF-MF) and 14th day after reperfusion (delayed effect of ELF-MF). Ischemia per se increased oxidative stress in the brain on the 7th and 14th day after reperfusion. ELF-MF also increased oxidative stress, but to a greater extent than ischemia, only immediately after cessation of exposure. Ischemic gerbils exposed to ELF-MF had increased oxidative stress parameters on the 7th day after reperfusion, but to a lesser extent than ischemic or ELF-MF-exposed animals. On the 14th day after reperfusion, oxidative stress parameters in the brain of these gerbils were mostly at the control levels. Applied ELF-MF decreases oxidative stress induced by global cerebral ischemia and thereby reduces possible negative consequences which free radical species could have in the brain. The results presented here indicate a beneficial effect of ELF-MF (50 Hz, 0.5 mT) in the model of global cerebral ischemia.
机译:磁场作为生态因素影响着所有生物。这项研究的目的是确定极低频磁场(ELF-MF,50 Hz,0.5 mT)是否会影响沙鼠接受10分钟全球性脑缺血的大脑中的氧化应激。闭塞两个颈动脉后,将3个月大的沙鼠连续暴露于ELF-MF达7天。在第7层(ELF-MF的直接作用)和第14层的前脑皮层,纹状体和海马体中检测一氧化氮和超氧阴离子的产生,超氧化物歧化酶活性和脂质过氧化指数在再灌注后一天(ELF-MF的延迟作用)。缺血本身在再灌注后第7天和第14天会增加大脑的氧化应激。 ELF-MF也仅在停止接触后立即增加氧化应激,但比局部缺血更大。暴露于ELF-MF的缺血性沙鼠在再灌注后第7天的氧化应激参数增加,但程度小于缺血或暴露于ELF-MF的动物。再灌注后第14天,这些沙鼠的大脑中的氧化应激参数大部分处于对照水平。施加的ELF-MF可以减少由整体性脑缺血引起的氧化应激,从而减少自由基可能对大脑造成的负面影响。此处显示的结果表明ELF-MF(50 Hz,0.5 mT)在全脑缺血模型中具有有益作用。

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