24h Extremely Low Frequency Electromagnetic Field Exposure Modulates Immune Responses in Rats

We examined the immune response induced by 24-hour continuous exposure to an ultra-low-frequency electromagnetic field (EMF) in white rats. We placed the experimental group wild-type albino rats in a special coil generating an electromagnetic field of 2 mT at a frequency of 50 Hz for 24 hours. The results of the study demonstrate that after 24 hours of continuous exposure toelectromagnetic field, a significant increase in plasma potassium concentrations collected from the rats' tail veins was recorded (from 5.49 ± 0.46 to 13.07 ± 3.05 mmol/L). At the same time, the percentage of basophils in the blood increased significantly from 0.50 ± 0.09 to 1.03 ± 0.10%, while the platelet concentration decreased from 617.8 ± 15.2 × 10 9 /L to 323.5 ± 114.5 × 10 9 /L. The high standard deviation of immune system biomarkers allows us to conclude that the body responds through the involvement of individual mechanisms.

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Publication Details

Journal
WSEAS TRANSACTIONS ON BIOLOGY AND BIOMEDICINE
Published
2026-10-06
DOI
https://doi.org/10.37394/23208.2026.23.30
Primary Topic
Electromagnetic Fields and Biological Effects
Type
article
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article

24h Extremely Low Frequency Electromagnetic Field Exposure Modulates Immune Responses in Rats

Aleksandre Tarkhnishvili, Khatuna Dondoladze, Marina Nikolaishvili, DAVID NATADZE et al.
WSEAS TRANSACTIONS ON BIOLOGY AND BIOMEDICINE
Electromagnetic Fields and Biological Effects
article

24h Extremely Low Frequency Electromagnetic Field Exposure Modulates Immune Responses in Rats

Aleksandre Tarkhnishvili, Khatuna Dondoladze, Marina Nikolaishvili, DAVID NATADZE, Ketevan Phevadze
article en

Abstract

We examined the immune response induced by 24-hour continuous exposure to an ultra-low-frequency electromagnetic field (EMF) in white rats. We placed the experimental group wild-type albino rats in a special coil generating an electromagnetic field of 2 mT at a frequency of 50 Hz for 24 hours. The results of the study demonstrate that after 24 hours of continuous exposure toelectromagnetic field, a significant increase in plasma potassium concentrations collected from the rats' tail veins was recorded (from 5.49 ± 0.46 to 13.07 ± 3.05 mmol/L). At the same time, the percentage of basophils in the blood increased significantly from 0.50 ± 0.09 to 1.03 ± 0.10%, while the platelet concentration decreased from 617.8 ± 15.2 × 10 9 /L to 323.5 ± 114.5 × 10 9 /L. The high standard deviation of immune system biomarkers allows us to conclude that the body responds through the involvement of individual mechanisms.

WSEAS TRANSACTIONS ON BIOLOGY AND BIOMEDICINEVol. 23
Openalex Percentile: Top 18%
Electromagnetic Fields and Biological Effects
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