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Assessment of cytogenetic damage and oxidative stress in personnel occupationally exposed to the pulsed microwave radiation of marine radar equipment

机译:海上雷达设备脉冲微波辐射职业性作业人员细胞遗传损伤和氧化应激的评估

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摘要

Due to increased usage of microwave radiation, there are concerns of its adverse effect in today's society. Keeping this in view, study was aimed at workers occupationally exposed to pulsed microwave radiation, originating from marine radars. Electromagnetic field strength was measured at assigned marine radar frequencies (3 GHz, 5.5 GHz and 9.4 GHz) and corresponding specific absorption rate values were determined. Parameters of the comet assay and micronucleus test were studied both in the exposed workers and in corresponding unexposed subjects. Differences between mean tail intensity (0.67 vs. 1.22) and moment (0.08 vs. 0.16) as comet assay parameters and micronucleus test parameters (micronu-clei, nucleoplasmic bridges and nuclear buds) were statistically significant between the two examined groups, suggesting that cytogenetic alterations occurred after microwave exposure. Concentrations of glutathione and malondialdehyde were measured spectrophotometrically and using high performance liquid chromatography. The glutathione concentration in exposed group was significantly lower than in controls (1.24 vs. 0.53) whereas the concentration of malondialdehyde was significantly higher (1.74 vs. 3.17), indicating oxidative stress. Results suggests that pulsed microwaves from working environment can be the cause of genetic and cell alterations and that oxidative stress can be one of the possible mechanisms of DNA and cell damage.
机译:由于增加了微波辐射的使用,人们担心其在当今社会中的不利影响。考虑到这一点,这项研究针对的是在职业上暴露于源自海上雷达的脉冲微波辐射的工人。在指定的海上雷达频率(3 GHz,5.5 GHz和9.4 GHz)下测量电磁场强度,并确定相应的特定吸收率值。在暴露的工人和相应的未暴露的受试者中都研究了彗星试验和微核试验的参数。在两个检验组之间,作为彗星测定参数和微核测试参数(微核,核质桥和核芽)的平均尾部强度(0.67对1.22)和弯矩(0.08对0.16)之间的差异具有统计学意义,表明细胞遗传学微波暴露后发生变化。谷胱甘肽和丙二醛的浓度通过分光光度法并使用高效液相色谱法进行测量。暴露组的谷胱甘肽浓度显着低于对照组(1.24对0.53),而丙二醛的浓度显着较高(1.74对3.17),表明氧化应激。结果表明,来自工作环境的脉冲微波可能是遗传和细胞发生变化的原因,氧化应激可能是DNA和细胞受损的可能机制之一。

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