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10GHz 微波辐射对大鼠皮肤的影响:分子反应的观察。

Effects of Microwave 10 GHz Radiation Exposure in the Skin of Rats: An Insight on Molecular Responses.

机构信息

Defence Institute of Physiology and Allied Sciences (DIPAS), DRDO, Delhi, India.

Microwave Tube Research and Development Centre (MTRDC), DRDO, Bangalore, India.

出版信息

Radiat Res. 2021 Oct 1;196(4):404-416. doi: 10.1667/RADE-20-00155.1.

Abstract

Microwave (MW) radiation poses the risk of potential hazards on human health. The present study investigated the effects of MW 10 GHz exposure for 3 h/day for 30 days at power densities of 5.23 ± 0.25 and 10.01 ± 0.15 mW/cm2 in the skin of rats. The animals exposed to 10 mW/cm2 (corresponded to twice the ICNIRP-2020 occupational reference level of MW exposure for humans) exhibited significant biophysical, biochemical, molecular and histological alterations compared to sham-irradiated animals. Infrared thermography revealed an increase in average skin surface temperature by 1.8°C and standard deviation of 0.3°C after 30 days of 10 mW/cm2 MW exposure compared to the sham-irradiated animals. MW exposure also led to oxidative stress (ROS, 4-HNE, LPO, AOPP), inflammatory responses (NFkB, iNOS/NOS2, COX-2) and metabolic alterations [hexokinase (HK), lactate dehydrogenase (LDH), citrate synthase (CS) and glucose-6-phospahte dehydrogenase (G6PD)] in 10 mW/cm2 irradiated rat skin. A significant alteration in expression of markers associated with cell survival (Akt/PKB) and HSP27/p38MAPK-related stress-response signaling cascade was observed in 10 mW/cm2 irradiated rat skin compared to sham-irradiated rat skin. However, MW-irradiated groups did not show apoptosis, evident by unchanged caspase-3 levels. Histopathological analysis revealed a mild cytoarchitectural alteration in epidermal layer and slight aggregation of leukocytes in 10 mW/cm2 irradiated rat skin. Altogether, the present findings demonstrated that 10 GHz exposure in continuous-wave mode at 10 mW/cm2 (3 h/day, 30 days) led to significant alterations in molecular markers associated with adaptive stress-response in rat skin. Furthermore, systematic scientific studies on more prevalent pulsed-mode of MW-radiation exposure for prolonged duration are warranted.

摘要

微波(MW)辐射对人类健康存在潜在危害风险。本研究调查了连续波模式下 10GHz 辐射,3 小时/天,30 天,在功率密度为 5.23±0.25 和 10.01±0.15mW/cm2 的条件下,对大鼠皮肤的影响。与假照射动物相比,暴露于 10mW/cm2(相当于 ICNIRP-2020 对人类 MW 辐射职业参考水平的两倍)的动物表现出明显的生物物理、生化、分子和组织学改变。红外热成像显示,与假照射动物相比,在接受 10mW/cm2MW 照射 30 天后,大鼠皮肤的平均皮肤表面温度升高了 1.8°C,标准偏差为 0.3°C。MW 照射还导致氧化应激(ROS、4-HNE、LPO、AOPP)、炎症反应(NFkB、iNOS/NOS2、COX-2)和代谢改变[己糖激酶(HK)、乳酸脱氢酶(LDH)、柠檬酸合酶(CS)和葡萄糖-6-磷酸脱氢酶(G6PD)]在 10mW/cm2 照射的大鼠皮肤中。与假照射大鼠皮肤相比,在 10mW/cm2 照射的大鼠皮肤中,与细胞存活相关的标志物(Akt/PKB)和 HSP27/p38MAPK 相关应激反应信号级联的表达发生了显著改变。然而,MW 照射组没有表现出凋亡,这一点从 caspase-3 水平不变可以看出。组织病理学分析显示,10mW/cm2 照射大鼠皮肤的表皮层有轻微的细胞结构改变,白细胞轻度聚集。总之,本研究结果表明,连续波模式下 10GHz 辐射,在 10mW/cm2(3 小时/天,30 天)的条件下,导致大鼠皮肤中与适应性应激反应相关的分子标志物发生显著改变。此外,需要对更常见的脉冲模式的 MW 辐射暴露进行更长期的系统科学研究。

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