AI Article Synopsis

  • Electromagnetic fields (EMFs) are associated with both increased cancer and neurodegenerative disease risks, but they can also have positive effects on biological systems, particularly through redox status.
  • A study investigated if short, repeated pulsed EMF (PEMF) exposure could boost cellular defenses against oxidative stress in a neuronal cell model, finding improved enzyme activity and reduced reactive oxygen species production following PEMF treatment.
  • The results suggest that PEMF may enhance cellular resilience against oxidative damage, potentially offering therapeutic insights for conditions linked to oxidative stress, although further research with normal neuronal cells is needed.

Article Abstract

Electromagnetic fields (EMFs) have been linked to increased risk of cancers and neurodegenerative diseases; however, EMFs can also elicit positive effects on biological systems, and redox status seems crucially involved in EMF biological effects. This study aimed to assess whether a short and repeated pulsed EMF (PEMF) could trigger adaptive responses against an oxidative insult in a neuronal cellular model. We found that a 40 min overall (four times a week, 10 min each) pre-exposure to PEMF did not affect major physiological parameters and led to a significant increase of Mn-dependent superoxide dismutase activity in the human neuroblastoma SH-SY5Y cell line. In addition, we found PEMF-pre-exposed cells exhibited decreased reactive oxygen species production following a 30 min H2 O2 challenge, with respect to non pre-exposed cells. Our findings might provide new insights on the role played by short and repeated PEMF stimulations in the enhancement of cellular defenses against oxidative insults. Although studies in normal neuronal cells would be useful to further confirm our hypothesis, we suggest that specific PEMF treatments may have potential biological repercussions in diseases where oxidative stress is implicated.

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Source
http://dx.doi.org/10.1002/bem.21900DOI Listing

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