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Effects of in vitro exposure to GSM900 electromagnetic field on human erythrocytes

机译:体外暴露于GSM900电磁场对人红细胞的影响

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High frequency electromagnetic fields (EMF) are widely used for transmitting of radio and TV signals, in wireless communications, etc. A huge number of people are exposed so the possible risk to human health from telecommunication technologies could be significant even if biological effects are slight. The study of the biological effects of RF EM radiation could contribute to better understanding of the possible health hazards. The levels of released hemoglobin serve as an indicator of hemolysis, caused by increased membrane fragility. This study was designed to investigate the alterations in hemoglobin release after in vitro exposure of human erythrocytes to GSM900 electromagnetic field. Erythrocyte suspensions with two different cell concentrations (hematocrit 20% and 40%) were exposed to EM radiation from GSM mobile phone (carrier frequency 902 MHz, 2 W output power in pulse) for 20 min in two different positions in relation to telephone antenna: Position 1 is in the centre of the major lobe of the azimuth antenna pattern and Position 2 is between major and back lobes. Alterations in hemolysis were registered 0, 10, 20, 30, 40, 50 and 60 min after therntreatment. Hemolysis was determined by measuring the absorbance of hemoglobin at 413 nm in the supernatant obtained by centrifuging the suspensions. Hemolysis was expressed as hemoglobin concentration. Our data indicated decrease in the hemoglobin level in irradiated suspensions. The GSM900 EMF exposure probably stabilized erythrocyte membrane and caused reduction in the hemolysis depending on the EMF parameters, on the suspension water content (hematocrit) and on the time elapsed after irradiation.
机译:高频电磁场(EMF)被广泛用于无线电和电视信号的传输,无线通信等中。大量人员被暴露在外,因此即使对生物的影响很小,电信技术对人体健康的潜在风险也可能很大。 。对射频电磁辐射的生物效应的研究可以有助于更好地了解可能的健康危害。释放的血红蛋白水平可作为由膜脆性增加引起的溶血的指标。这项研究旨在研究人红细胞体外暴露于GSM900电磁场后血红蛋白释放的变化。将具有两种不同细胞浓度(血细胞比容为20%和40%)的红细胞悬液在GSM手机(载波频率902 MHz,脉冲输出功率为2 W)的EM辐射下相对于电话天线在两个不同位置暴露20分钟:位置1在方位角天线方向图的主瓣中心,位置2在主瓣和后瓣之间。治疗后0、10、20、30、40、50和60分钟记录溶血变化。通过测量通过离心悬浮液而获得的上清液中的血红蛋白在413nm处的吸光度来确定溶血。溶血表示为血红蛋白浓度。我们的数据表明受辐照悬浮液中血红蛋白水平降低。暴露于GSM900 EMF可能会稳定红细胞膜,并导致溶血减少,具体取决于EMF参数,悬浮液含水量(血细胞比容)和照射后的时间。

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