首页> 外文期刊>Journal of Apicultural Research >Effects of short-term exposure to mobile phone radiofrequency (900 MHz) on the oxidative response and genotoxicity in honey bee larvae
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Effects of short-term exposure to mobile phone radiofrequency (900 MHz) on the oxidative response and genotoxicity in honey bee larvae

机译:短期暴露在手机射频(900MHz)对蜂窝幼虫氧化反应和遗传毒性的影响

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Exposure of different animal species to radiofrequency electromagnetic fields (RF-EMF) could cause various biological effects such as oxidative stress, genotoxic effects and dysfunction of the immune system. However, there are a lack of results on oxidative stress response and genotoxicity in the honey bee (Apis mellifera) after exposure to RF-EMF. This study was performed to investigate the effects of exposure to RF-EMF on the activity of catalase, superoxide dismutase, glutathione S-transferase, lipid peroxidation level and DNA damage in honey bee larvae. Honey bee larvae were exposed to RF-EMF at 900 MHz and field levels of 10, 23, 41 and 120 V m(-1) for 2 h. At a field level of 23 V m-1 the effect of 80% AM 1 kHz sinusoidal and 217 Hz modulation was investigated as well. Catalase activity and the lipid peroxidation level decreased significantly in the honey bee larvae exposed to the unmodulated field at 10 V m(-1) compared to the control. Superoxide dismutase and glutathione S-transferase activity in the honey bee larvae exposed to unmodulated fields were not statistically different compared to the control. DNA damage increased significantly in honey bee larvae exposed to modulated (80% AM 1 kHz sinus) field at 23 V m(-1) compared to the control and all other exposure groups. These results suggest that RF-EMF effects in honey bee larvae appeared only after exposure to a certain EMF conditions. The increase of the field level did not cause a linear dose-response in any of the measured parameters. Modulated RF-EMF produced more negative effects than the corresponding unmodulated field. Although honey bees in nature would not be exposed to such high field levels as used in our experiments, our results show the need for further intensive research in all stages of honey bee development.
机译:不同动物物种对射频电磁场(RF-EMF)的暴露可能导致各种生物学效应,例如氧化应激,遗传毒性效应和免疫系统功能障碍。然而,在暴露于RF-EMF之后,蜂蜜蜂(Apis mellifera)中氧化应激反应和遗传毒性缺乏结果。进行该研究以研究暴露于RF-EMF对蜂蜜蜂幼虫的过氧化氢酶,超氧化物歧化酶,谷胱甘肽S-转移酶,脂质过氧化水平和DNA损伤的影响。将蜂蜜蜜蜂幼虫暴露于900MHz的RF-EMF,5,23,41和120 V m(-1)的田间水平为2小时。在23 V m-1的场级,还研究了80%AM 1 kHz正弦和217Hz调节的效果。与对照相比,过氧化氢酶活性和脂质过氧化水平在暴露于10V m(-1)的未调节场暴露于未调节的场的幼虫。与对照相比,暴露于未经调制场的蜂蜜蜂巢中的超氧化物歧化酶和谷胱甘肽S转移酶活性并未统计学不同。与对照和所有其他曝光基团相比,在23 V m(-1)下暴露于23 V m(-1)的调节(80%AM 1 kHz窦)场暴露于23 V m(-1)的蜂蜜蜂幼虫损伤显着增加。这些结果表明,仅在暴露于某个EMF条件后蜂蜜蜜蜂幼虫的RF-EMF效应仅出现。场级的增加不会导致任何测量参数中的线性剂量响应。调制的RF-EMF产生比相应的未调制场更多的负面影响。虽然本质上的蜂蜜蜜蜂不会被暴露于我们实验中使用的这种高场级别,但我们的结果表明,在蜂蜜蜂鸣中的所有阶段都有需要进一步的密集研究。

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