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低强度全球移动通信系统1800兆赫微波辐射的氧化和致突变作用。

Oxidative and mutagenic effects of low intensity GSM 1800 MHz microwave radiation.

作者信息

Yakymenko I, Burlaka A, Tsybulin I, Brieieva I, Buchynska L, Tsehmistrenko I, Chekhun F

机构信息

National University of Food Technologies, Kyiv 01033, Ukraine.

R.E. Kavetsky Institute of Experimental Pathology, Oncology and Radiobiology, NAS of Ukraine, Kyiv 03022, Ukraine.

出版信息

Exp Oncol. 2018 Dec;40(4):282-287.

Abstract

AIM

Despite a significant number of epidemiological studies on potential carcinogenicity of microwave radiation (MWR) from wireless devices and a bulk of experimental studies on oxidative and mutagenic effects of low intensity MWR, the discussion on potential carcinogenicity of low intensity MWR is going on. This study aims to assess oxidative and mutagenic effects of low intensity MWR from a typical commercial model of a modern smartphone.

MATERIALS AND METHODS

The model of developing quail embryos has been used for the assessment of oxidative and mutagenic effects of Global System for Mobile communication (GSM) 1800 MHz MWR from a commercial model of smartphone. The embryos were exposed in ovo to 0.32 µW/cm2, discontinuously - 48 s - On, 12 s - Off, during 5 days before and 14 days through the incubation period.

RESULTS

The exposure of quail embryos before and during the incubation period to low intensity GSM 1800 MHz has resulted in expressive statistically significant oxidative effects in embryonic cells, including a 2-fold increase in superoxide generation rate and 85% increase in nitrogen oxide generation rate, damages of DNA integrity and oxidative damages of DNA (up to twice increased levels of 8-oxo-dG in cells of 1-day old chicks from the exposed embryos). Finally, the exposure resulted in a significant, almost twice, increase of embryo mortality.

CONCLUSION

The exposure of model biological system to low intensity GSM 1800 MHz MWR resulted in significant oxidative and mutagenic effects in exposed cells, and thus should be recognized as a significant risk factor for living cells.

摘要

目的

尽管针对无线设备微波辐射(MWR)的潜在致癌性进行了大量流行病学研究,且有大量关于低强度MWR氧化和诱变作用的实验研究,但关于低强度MWR潜在致癌性的讨论仍在继续。本研究旨在评估一款典型现代智能手机商业型号发出的低强度MWR的氧化和诱变作用。

材料与方法

利用鹌鹑胚胎发育模型评估一款智能手机商业型号发出的全球移动通信系统(GSM)1800 MHz MWR的氧化和诱变作用。在孵化前5天和孵化期的14天内,将胚胎在蛋内暴露于0.32 μW/cm²的辐射下,间断暴露——开启48秒,关闭12秒。

结果

鹌鹑胚胎在孵化前和孵化期暴露于低强度GSM 1800 MHz辐射,导致胚胎细胞出现明显的具有统计学意义的氧化效应,包括超氧化物生成率增加2倍,氮氧化物生成率增加85%,DNA完整性受损以及DNA氧化损伤(来自暴露胚胎的1日龄雏鸡细胞中8-氧代脱氧鸟苷水平增加高达两倍)。最后,暴露导致胚胎死亡率显著增加,几乎增加了一倍。

结论

模型生物系统暴露于低强度GSM 1800 MHz MWR会在暴露细胞中产生显著的氧化和诱变作用,因此应被视为活细胞的一个重大风险因素。

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