Literature DB >> 23046051

Exposure of rats to extremely low-frequency electromagnetic fields (ELF-EMF) alters cytokines production.

Iraj Salehi1, Karim Ghazikhanlou Sani, Alireza Zamani.   

Abstract

Investigations indicate a potential link between exposure to extremely low-frequency electromagnetic field (ELF-EMF) and some cancers. Carcinogenesis of ELF-EMF may be mediated by effect on the immune system. During an immune response, naïve T cells differentiate to effector type 1 helper T cells (T(H)1), T(H)2, or T(H)17 subsets according to existence of different cytokines and T(H)1 is important in defense against tumors. Therefore, it will be reasonable to test whether ELF-EMF can change cytokines like interferon gamma (IFN-γ), interleukin-4 (IL-4), IL-6, and IL-12 that regulate T(H)1/T(H)2/T(H)17 balance. Forty adult male rats were randomly separated into ELF-EMF-exposed and sham-exposed control groups. The ELF-EMF group was exposed to a flux density of 100 μT, frequency 50 Hz, 2 h/day for 3 months. The controls were placed in identical chamber without ELF-EMF. The results showed there were no significant differences between the mean mass of rats, thymuses, and spleens in ELF-EMF exposed group compared with controls. Serum IL-12 level was decreased from 418 ± 47 pg/ml in controls to 300 ± 23 pg/ml (p < 0.05) in ELF-EMF-exposed group. Phytohemagglutinin activated of in vitro production of IL-6 by the whole spleen culture (1356 ± 92 pg/ml) and total blood culture (418 ± 40 pg/ml) of ELF-EMF-exposed rats were higher (p < 0.001) comparing with controls (905 ± 74 pg/ml), (182 ± 26 pg/ml), respectively. However, the levels of IFN-γ, IL-4, and IL-6 of serum and IFN-γ, IL-4, and IL-12 in spleen culture and total blood culture of two groups were not significantly different. It seems that ELF-EMF may change T(H)1/T(H)2/T(H)17 balance toward down regulation of T(H)1 and upregulation T(H)17 type responses.

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Year:  2012        PMID: 23046051     DOI: 10.3109/15368378.2012.692343

Source DB:  PubMed          Journal:  Electromagn Biol Med        ISSN: 1536-8386            Impact factor:   2.882


  11 in total

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3.  The Energy Metabolism in Caenorhabditis elegans under The Extremely Low-Frequency Electromagnetic Field Exposure.

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Review 4.  The influence of electromagnetic pollution on living organisms: historical trends and forecasting changes.

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Journal:  Biomed Res Int       Date:  2015-02-25       Impact factor: 3.411

5.  Collective responses in electrical activities of neurons under field coupling.

Authors:  Ying Xu; Ya Jia; Jun Ma; Tasawar Hayat; Ahmed Alsaedi
Journal:  Sci Rep       Date:  2018-01-22       Impact factor: 4.379

6.  Effects of Various Densities of 50 Hz Electromagnetic Field on Serum IL-9, IL-10, and TNF-α Levels.

Authors:  Hanie Mahaki; Naghi Jabarivasal; Khosro Sardanian; Alireza Zamani
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7.  Antibacterial Susceptibility Pattern of the Pseudomonas aeruginosa and Staphylococcus aureus after Exposure to Electromagnetic Waves Emitted from Mobile Phone Simulator.

Authors:  M M Movahedi; F Nouri; A Tavakoli Golpaygani; L Ataee; S Amani; M Taheri
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8.  The use of a bed with an insulating system of electromagnetic fields improves immune function, redox and inflammatory states, and decrease the rate of aging.

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Review 9.  Immune-Modulating Perspectives for Low Frequency Electromagnetic Fields in Innate Immunity.

Authors:  Maria Manuela Rosado; Myrtill Simkó; Mats-Olof Mattsson; Claudio Pioli
Journal:  Front Public Health       Date:  2018-03-26

10.  Association Between Maternal Exposure to Magnetic Field Nonionizing Radiation During Pregnancy and Risk of Attention-Deficit/Hyperactivity Disorder in Offspring in a Longitudinal Birth Cohort.

Authors:  De-Kun Li; Hong Chen; Jeannette R Ferber; Andrew K Hirst; Roxana Odouli
Journal:  JAMA Netw Open       Date:  2020-03-02
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