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Non-linear adaptive phenomena which decrease the risk of infection after pre-exposure to radiofrequency radiation

机译:非线性适应性现象可降低预暴露于射频辐射后的感染风险

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Substantial evidence indicates that adaptive response induced by low doses of ionizing radiation can result in resistance to the damage caused by a subsequently high-dose radiation or cause cross-resistance to other non-radiation stressors. Adaptive response contradicts the linear-non-threshold (LNT) dose-response model for ionizing radiation. We have previously reported that exposure of laboratory animals to radiofrequency radiation can induce a survival adaptive response. Furthermore, we have indicated that pre-exposure of mice to radiofrequency radiation emitted by a GSM mobile phone increased their resistance to a subsequent Escherichia coli infection. In this study, the survival rates in animals receiving both adapting (radiofrequency) and challenge dose (bacteria) and the animals receiving only the challenge dose (bacteria) were 56% and 20%, respectively. In this light, our findings contribute to the assumption that radiofrequency-induced adaptive response can be used as an efficient method for decreasing the risk of infection in immunosuppressed irradiated individuals. The implication of this phenomenon in human's long term stay in the space is also discussed.
机译:大量证据表明,低剂量电离辐射诱导的适应性反应可抵抗随后的高剂量辐射造成的损害,或对其他非辐射应激源产生交叉耐药性。自适应响应与电离辐射的线性非阈值(LNT)剂量响应模型相矛盾。先前我们已经报道过,实验动物暴露于射频辐射会诱导生存适应性反应。此外,我们已经表明,预先将小鼠暴露于GSM手机发出的射频辐射中会增加其对随后的大肠杆菌感染的抵抗力。在这项研究中,同时接受适应性(射频)和攻击剂量(细菌)的动物和仅接受攻击剂量(细菌)的动物的存活率分别为56%和20%。有鉴于此,我们的发现有助于以下假设:射频诱导的适应性反应可用作降低免疫抑制照射个体感染风险的有效方法。还讨论了这种现象对人类长期停留在太空中的影响。

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