Effects of Intermediate Frequency (150 kHz) Electromagnetic Radiation on the Vital Organs of Female Sprague Dawley Rats

Author:

Sundaram Venkatesan1ORCID,Mohammed Stephanie2ORCID,Cockburn Brian N.3ORCID,Srinivasan M. R.4ORCID,Venkata Chalapathi R. Adidam5,Johnson Jenelle6,Gilkes Lester1,Jones Kegan Romelle1ORCID,Zyuzikov Nikolay2ORCID

Affiliation:

1. Department of Basic Veterinary Sciences, School of Veterinary Medicine, Faculty of Medical Sciences, The University of the West Indies, St. Augustine 999183, Trinidad and Tobago

2. Department of Physics, Faculty of Science and Technology, The University of the West Indies, St. Augustine 999183, Trinidad and Tobago

3. Department of Life Sciences, Faculty of Science and Technology, The University of the West Indies, St. Augustine 999183, Trinidad and Tobago

4. Laboratory Animal Medicine Unit, Directorate of Centre for Animal Health Studies, Tamil Nadu Veterinary and Animal Sciences University, Chennai 600016, Tamil Nadu, India

5. Department of Paraclinical Sciences, Faculty of Medical Sciences, The University of the West Indies, St. Augustine 999183, Trinidad and Tobago

6. Department of Clinical Veterinary Sciences, School of Veterinary Medicine, Faculty of Medical Sciences, The University of the West Indies, St. Augustine 999183, Trinidad and Tobago

Abstract

Exposure to electromagnetic radiation (EMR) from intermediate frequency sources has increased exponentially in recent years. The consequences of this exposure on biological systems are prompting scientists to study the effects on human health. This current study aimed to determine the effects of intermediate frequency (150 kHz) EMR exposure on the vital organs of female Sprague Dawley rats. The EMR group (n = 10 animals) was exposed to a frequency of 150 kHz with an intensity of 65 ± 15 μW/cm2 for two months. The control group (n = 10 animals) was exposed to an intensity of 35 ± 15 nW/cm2. Haematological, histochemical, gross, and histopathological profiles of all major organs of all animals were then performed using standard procedures. All major organs generally showed no significant detectable effects in either the control or EMR groups. However, gross and histopathological examinations revealed the effects of EMR on the liver and lungs, which showed inflammatory changes without significant biochemical/haematological manifestations. In addition, a significant increase in serum sodium level and a decrease in serum urea level were also observed in the EMR group. It can be concluded that the current frequency and duration of exposure trigger the changes in the liver and lungs but are not sufficient to cause clinical and functional manifestations. Therefore, a long-term exposure study might be helpful to determine the effects of 150 kHz IF EMR on these organs.

Funder

The author thanks the School of Graduate Studies and Research, The University of the West Indies, St. Augustine, Trinidad, and Tobago

Publisher

MDPI AG

Subject

General Agricultural and Biological Sciences,General Immunology and Microbiology,General Biochemistry, Genetics and Molecular Biology

Reference56 articles.

1. International Commission on Non-Ionizing Radiation Protection (2020). Guidelines for limiting exposure to time-varying electric, magnetic, and electromagnetic fields (up to 300 GHz). Health Phys., 74, 494–522.

2. World Health Organization (2022, March 14). Electromagnetic Fields and Public Health Intermediate Frequencies (IF), International EMF Project Information Sheet 1–4. Available online: https://www.who.int/pehemf/publications/facts/intermediatefrequencies_infosheet.pdf.

3. Systematic review on the bio-logical effects of electric, magnetic and electromagnetic fields in the intermediate frequency range (300 Hz to 1 MHz);Bodewein;Environ. Res.,2019

4. Safety assessment of human exposure to intermediate frequency electromagnetic fields;Yamazaki;Electr. Eng. Jpn.,2016

5. Occupational exposure to intermediate frequency and extremely low magnetic fields among personnel working near electronic article surveillance systems;Roivainen;Bioelectromagnetics,2014

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