The effect of exposure to radiofrequency LTE signal and coexposure to mitomycin-C in Chinese hamster lung fibroblast V79 cells

IF 1.8 3区 生物学 Q3 BIOLOGY Bioelectromagnetics Pub Date : 2023-07-26 DOI:10.1002/bem.22478
Anna Sannino PhD, Stefania Romeo PhD, Maria Rosaria Scarfì, Daniele Pinchera PhD, Fulvio Schettino PhD, Mario Alonzo PhD, Mariateresa Allocca PhD, Olga Zeni PhD
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Abstract

This study aims to investigate the cellular effects of radiofrequency exposure, 1950 MHz, long-term evolution (LTE) signal, administered alone and in combination with mitomycin-C (MMC), a well-known cytotoxic agent. Chinese hamster lung fibroblast (V79) cells were exposed/sham exposed in a waveguide-based system under strictly controlled conditions of both electromagnetic and environmental parameters, at specific absorption rate (SAR) of 0.3 and 1.25 W/kg. Chromosomal damage (micronuclei formation), oxidative stress (reactive oxygen species [ROS] formation), and cell cycle progression were analyzed after exposure and coexposure. No differences between exposed samples and sham-controls were detected following radiofrequency exposure alone, for all the experimental conditions tested and biological endpoints investigated. When radiofrequency exposure was followed by MMC treatment, 3 h pre-exposure did not modify MMC-induced micronuclei. Pre-exposure of 20 h at 0.3 W/kg did not modify the number of micronuclei induced by MMC, while 1.25 W/kg resulted in a significant reduction of MMC-induced damage. Absence of effects was also detected when CW was used, at both SAR levels. MMC-induced ROS formation resulted significantly decreased at both SAR levels investigated, while cell proliferation and cell cycle progression were not affected by coexposures. The results here reported provide no evidence of direct effects of 1950 MHz, LTE signal. Moreover, they further support our previous findings on the capability of radiofrequency pre-exposure to induce protection from a subsequent toxic treatment, and the key role of the modulated signals and the experimental conditions adopted in eliciting the effect.

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中国仓鼠肺成纤维细胞 V79 暴露于射频 LTE 信号和同时暴露于丝裂霉素-C 的影响。
本研究旨在探讨单独或与丝裂霉素-C(MMC)(一种著名的细胞毒剂)联合使用时,射频暴露(1950 MHz,长期演进(LTE)信号)对细胞的影响。在严格控制电磁和环境参数的条件下,将中国仓鼠肺成纤维细胞(V79)置于波导系统中进行暴露/半暴露,比吸收率(SAR)分别为 0.3 和 1.25 W/kg。对暴露和共同暴露后的染色体损伤(微核形成)、氧化应激(活性氧 [ROS] 形成)和细胞周期进展进行了分析。在所有测试的实验条件和调查的生物终点中,仅进行射频暴露后,未发现暴露样本与假对照样本之间存在差异。当射频暴露后进行 MMC 处理时,暴露前 3 小时不会改变 MMC 诱导的微核。每公斤 0.3 瓦的射频照射 20 小时不会改变 MMC 诱导的微核数量,而每公斤 1.25 瓦的射频照射则会显著减少 MMC 诱导的损伤。在两个 SAR 水平下,使用 CW 也不会产生影响。在所研究的两个 SAR 水平下,MMC 诱导的 ROS 形成都明显减少,而细胞增殖和细胞周期的进展则不受共同暴露的影响。本文报告的结果没有证明 1950 MHz LTE 信号有直接影响。此外,这些结果还进一步证实了我们之前的研究结果,即射频预暴露能够诱导保护细胞免受后续毒性处理的影响,以及调制信号和实验条件在诱发该效应中的关键作用。
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来源期刊
Bioelectromagnetics
Bioelectromagnetics 生物-生物物理
CiteScore
4.60
自引率
0.00%
发文量
44
审稿时长
6-12 weeks
期刊介绍: Bioelectromagnetics is published by Wiley-Liss, Inc., for the Bioelectromagnetics Society and is the official journal of the Bioelectromagnetics Society and the European Bioelectromagnetics Association. It is a peer-reviewed, internationally circulated scientific journal that specializes in reporting original data on biological effects and applications of electromagnetic fields that range in frequency from zero hertz (static fields) to the terahertz undulations and visible light. Both experimental and clinical data are of interest to the journal''s readers as are theoretical papers or reviews that offer novel insights into or criticism of contemporary concepts and theories of field-body interactions. The Bioelectromagnetics Society, which sponsors the journal, also welcomes experimental or clinical papers on the domains of sonic and ultrasonic radiation.
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