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Published on: May 2, 2018
Assessment of Genotoxicity in Human Cells Exposed to Modulated Electromagnetic Fields of Wireless Communication
David Schuermann1, Christina Ziemann2, Zeinab Barekati1
1Department of Biomedicine, University of Basel, Mattenstrasse 28, CH-4058 Basel, Switzerland.
Abstract:
Modulated electromagnetic fields (wEMFs), as generated by modern communication technologies, have raised concerns about adverse health effects. The International Agency for Research on Cancer (IARC) classifies them as "possibly carcinogenic to humans" (Group 2B), yet, the underlying molecular mechanisms initiating and promoting tumorigenesis remain elusive. Here, we comprehensively assess the impact of technologically relevant wEMF modulations on the genome integrity of cultured human cells, investigating cell type-specificities as well as time- and dose-dependencies. Classical and advanced methodologies of genetic toxicology and DNA repair were applied, and key experiments were performed in two separate laboratories. Overall, we found no conclusive evidence for an induction of DNA damage nor for alterations of the DNA repair capacity in cells exposed to several wEMF modulations (i.e., GSM, UMTS, WiFi, and RFID). Previously reported observations of increased DNA damage after exposure of cells to GSM-modulated signals could not be reproduced. Experimental variables, presumably underlying the discrepant observations, were investigated and are discussed. On the basis of our data, we conclude that the possible carcinogenicity of wEMF modulations cannot be explained by an effect on genome integrity through direct DNA damage. However, we cannot exclude non-genotoxic, indirect, or secondary effects of wEMF exposure that may promote tumorigenesis in other ways.
Insights
This study found no evidence that wireless electromagnetic fields (wEMFs) damage human cell DNA or affect DNA repair. Therefore, wEMF carcinogenicity is unlikely due to direct genotoxic effects.
Area of Science:
- Environmental Health
- Molecular Biology
- Genetic Toxicology
Background:
- Concerns exist regarding health effects of wireless electromagnetic fields (wEMFs) from modern technology.
- The International Agency for Research on Cancer classifies wEMFs as possibly carcinogenic (Group 2B).
- Molecular mechanisms linking wEMFs to cancer initiation remain unclear.
Purpose of the Study:
- To assess wEMF impact on human cell genome integrity.
- To investigate cell type, time, and dose dependencies.
- To clarify mechanisms of wEMF-induced tumorigenesis.
Main Methods:
- Utilized genetic toxicology and DNA repair assays on cultured human cells.
- Exposed cells to various wEMF modulations (GSM, UMTS, WiFi, RFID).
- Conducted key experiments in two independent laboratories.
Main Results:
- No conclusive evidence of DNA damage induction by wEMFs was found.
- No alterations in DNA repair capacity were observed after wEMF exposure.
- Previously reported DNA damage from GSM signals was not reproduced.
Conclusions:
- wEMF carcinogenicity is not explained by direct DNA damage or impaired repair.
- Non-genotoxic, indirect, or secondary mechanisms of wEMF-induced tumorigenesis cannot be excluded.
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