Impact of extremely low-frequency magnetic fields on neuroinflammation and synaptic protein development in prenatal and postnatal rat brainsImpact of extremely low-frequency magnetic fields on neuroinflammation and synaptic protein development in prenatal and postnatal rat brains

ÖZTÜRK et al.: EFFECTS OF ELF-MF ON BRAIN AND NEUROINFLAMMATION

Authors

  • Hilal Öztürk Karadeniz Technical University, Faculty of Medicine, Department of Biophysics, Trabzon, Turkey
  • Mahmut Alp Kılıç Aydın Adnan Menderes University, Faculty of Medicine, Department of Biophysics, Aydın, Turkey
  • Alev Meltem Ercan 3 Istanbul University-Cerrahpaşa, Cerrahpaşa Faculty of Medicine, Department of Biophysics, Istanbul, Turkey
  • Devrim Saribal Istanbul University-Cerrahpasa

DOI:

https://doi.org/10.56042/ijeb.v64i09.28373

Keywords:

ELF-MF, IL-17A, IFN-γ, Developing brain, Neuroinflammation

Abstract

Brain development during prenatal and postnatal periods is critical, and external stressors such as electromagnetic fields can significantly influence this process. Although there are numerous studies on this topic, our understanding of how electromagnetic fields affect the central nervous system remains limited. In this study, we investigated the effects of extremely low-frequency magnetic fields (ELF-MF) on the developing brains of Sprague-Dawley rats. The rats were exposed to 50 Hz, 500 µT ELF-MF during prenatal, postnatal, or both periods. Using ELISA, we assessed inflammatory markers and synaptic protein levels in two brain regions. Combined prenatal and postnatal exposure to ELF-MF significantly increased IL-17A levels in the hippocampus and cortex and elevated IFN-γ levels in the cortex. However, there was no change in IL-4 levels. Additionally, in the combined prenatal and postnatal exposure group, ELF-MF significantly reduced PSD-95 levels in both the cortex and hippocampus, and Syn1 levels in the hippocampus. Our results suggest that ELF-MF may trigger inflammation in the brains of young rats, potentially impairing synaptic transmission, particularly in the hippocampus where reduced Syn1 may limit presynaptic neurotransmitter release. This study provides new insights into the impact of ELF-MF on brain development and underscores the need for further research in this field.

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Published

21-08-2026

How to Cite

Impact of extremely low-frequency magnetic fields on neuroinflammation and synaptic protein development in prenatal and postnatal rat brainsImpact of extremely low-frequency magnetic fields on neuroinflammation and synaptic protein development in prenatal and postnatal rat brains: ÖZTÜRK et al.: EFFECTS OF ELF-MF ON BRAIN AND NEUROINFLAMMATION. (2026). Indian Journal of Experimental Biology (IJEB), 64(09), 835-845. https://doi.org/10.56042/ijeb.v64i09.28373

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