首页> 美国卫生研究院文献>Dose-Response >Evaluation of the Effect of Radiofrequency Radiation Emitted From Wi-Fi Router and Mobile Phone Simulator on the Antibacterial Susceptibility of Pathogenic Bacteria Listeria monocytogenes and Escherichia coli
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Evaluation of the Effect of Radiofrequency Radiation Emitted From Wi-Fi Router and Mobile Phone Simulator on the Antibacterial Susceptibility of Pathogenic Bacteria Listeria monocytogenes and Escherichia coli

机译:Wi-Fi路由器和手机模拟器发出的射频辐射对致病性单核细胞增生性李斯特菌和大肠杆菌的细菌敏感性的评估

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摘要

Mobile phones and Wi-Fi radiofrequency radiation are among the main sources of the exposure of the general population to radiofrequency electromagnetic fields (RF-EMF). Previous studies have shown that exposure of microorganisms to RF-EMFs can be associated with a wide spectrum of changes ranged from the modified bacterial growth to the alterations of the pattern of antibiotic resistance. Our laboratory at the nonionizing department of the Ionizing and Non-ionizing Radiation Protection Research Center has performed experiments on the health effects of exposure to animal models and humans to different sources of electromagnetic fields such as cellular phones, mobile base stations, mobile phone jammers, laptop computers, radars, dentistry cavitrons, magnetic resonance imaging, and Helmholtz coils. On the other hand, we have previously studied different aspects of the challenging issue of the ionizing or nonionizing radiation-induced alterations in the susceptibility of microorganisms to antibiotics. In this study, we assessed if the exposure to 900 MHz GSM mobile phone radiation and 2.4 GHz radiofrequency radiation emitted from common Wi-Fi routers alters the susceptibility of microorganisms to different antibiotics. The pure cultures of Listeria monocytogenes and Escherichia coli were exposed to RF-EMFs generated either by a GSM 900 MHz mobile phone simulator and a common 2.4 GHz Wi-Fi router. It is also shown that exposure to RF-EMFs within a narrow level of irradiation (an exposure window) makes microorganisms resistant to antibiotics. This adaptive phenomenon and its potential threats to human health should be further investigated in future experiments. Altogether, the findings of this study showed that exposure to Wi-Fi and RF simulator radiation can significantly alter the inhibition zone diameters and growth rate for L monocytogenes and E coli. These findings may have implications for the management of serious infectious diseases.
机译:移动电话和Wi-Fi射频辐射是普通人群暴露于射频电磁场(RF-EMF)的主要来源。先前的研究表明,微生物暴露于RF-EMFs可能与广泛的变化有关,从改变的细菌生长到抗生素耐药性模式的改变。我们位于电离与非电离辐射防护研究中心非电离部门的实验室已进行了关于动物模型和人类暴露于不同电磁场源(例如手机,移动基站,手机干扰器,便携式计算机,雷达,牙科电子调速器,磁共振成像和亥姆霍兹线圈。另一方面,我们先前已经研究了电离或非电离辐射引起的微生物对抗生素敏感性变化的挑战性问题的不同方面。在这项研究中,我们评估了暴露于普通Wi-Fi路由器发出的900 MHz GSM手机辐射和2.4 GHz射频辐射是否会改变微生物对不同抗生素的敏感性。将单核细胞增生李斯特菌和大肠杆菌的纯培养物暴露于由GSM 900 MHz移动电话模拟器和普通的2.4 GHz Wi-Fi路由器产生的RF-EMF。还显示出在狭窄辐射水平(暴露窗口)下暴露于RF-EMF会使微生物对抗生素产生抗性。这种适应性现象及其对人类健康的潜在威胁应在以后的实验中进一步研究。总之,这项研究的结果表明,暴露于Wi-Fi和RF仿真器辐射可以显着改变单核细胞增生李斯特菌和大肠杆菌的抑制区直径和生长速率。这些发现可能对严重传染病的治疗有影响。

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