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Induction of Oxidative Stress in Male Rats Subchronically Exposed to Electromagnetic Fields at Non-Thermal Intensities

机译:异步暴露于非热强度电磁场的雄性大鼠氧化应激的诱导

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To investigate the oxidative stress-inducing potential of non-thermal electromagnetic fields in rats. Male Wister rats were exposed to electrical field intensity of 2.3 ± 0.82 μV/m . Exposure was in three forms: continuous waves, or modulated at 900 MHz or modulated GSM-nonDTX. The radio frequency radiation (RFR) was 1800 MHz, specific absorption radiation (SAR) (0.95-3.9 W/kg) for 40 and/or 60 days continuously. Control animals were located > 300 m from base station, while sham control animals were located in a similar environmental conditions, but in the vicinity of a non-functional base station. The rats were assessed for thiobarbituric and reactive species (TBARS), reduced glutathione (GSH) content, catalase activity, glutathione reductase (GR) and glucose residue after 40 and 60 days of exposure. At 40 days, electromagnetic radiation failed to induce any significant alterations. However, at 60 days of exposure various attributes evaluated decreased. The respective decreases in both nicotinamide adenine dinucleotide phosphate (NADPH) and Ascorbate- linked lipid peroxidation (LPO) with concomitant diminution in enzymatic antioxidative defense systems resulted in decreased glucose residue. The present studies showed some biochemical changes that may be associated with a prolong exposure to electromagnetic fields and its relationship to the activity of antioxidant system in rat Regular assessment and early detection of antioxidative defense system among people working around the base stations are recommended.
机译:研究大鼠非热电磁场的氧化应激诱导电位。雄性Wister大鼠暴露在2.3±0.82μV/ m的电场强度下。曝光以三种形式出现:连续波或以900 MHz调制或以GSM-nonDTX调制。射频辐射(RFR)为1800 MHz,比吸收辐射(SAR)(0.95-3.9 W / kg)连续40和/或60天。对照动物位于距基站> 300 m的位置,而假对照动物则位于类似的环境条件下,但位于无功能的基站附近。在暴露40和60天后,对大鼠的硫代巴比妥和反应性物种(TBARS),降低的谷胱甘肽(GSH)含量,过氧化氢酶活性,谷胱甘肽还原酶(GR)和葡萄糖残留进行了评估。在40天时,电磁辐射未能引起任何重大变化。但是,在暴露60天后,评估的各种属性降低了。烟酰胺腺嘌呤二核苷酸磷酸(NADPH)和抗坏血酸相关的脂质过氧化(LPO)的各自减少,同时在酶促抗氧化防御系统中的减少导致葡萄糖残基减少。目前的研究表明,某些生物化学变化可能与长时间暴露于电磁场有关,并且与大鼠抗氧化系统的活性有关。建议在基站附近工作的人员进行定期评估和早期发现抗氧化防御系统。

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