Static magnetic field induced hypovitaminosis D in rat

Lahbib Aïda1, Lecomte Frédéric, Ghodbane Soumaya

  • 1Laboratory of Integrative Physiology, Faculty of Sciences of Bizerte, Carthage University, Jarzouna, Tunisia.

Insights

Static magnetic field (SMF) exposure decreased 25-hydroxyvitamin D3 levels in rats. Oral vitamin D supplementation effectively corrected this SMF-induced hypovitaminosis D, though calcium homeostasis remained unaffected.

Area of Science:

  • Biophysics
  • Endocrinology
  • Nutritional Science

Background:

  • Static magnetic fields (SMF) are increasingly utilized in various applications.
  • The biological effects of SMF exposure, particularly on vitamin D metabolism, require further investigation.
  • Understanding the interplay between SMF and calcium homeostasis is crucial for public health.

Purpose of the Study:

  • To investigate the impact of controlled static magnetic field (SMF) exposure on 25-hydroxyvitamin D3 levels and calcium homeostasis in Wistar male rats.
  • To assess the efficacy of vitamin D supplementation in counteracting potential SMF-induced alterations in vitamin D status and calcium balance.

Main Methods:

  • Wistar male rats were divided into four groups: control, SMF-exposed, co-exposed (SMF + vitamin D), and vitamin D supplemented.
  • SMF exposure was administered at 128 mT for 1 hour daily over 5 consecutive days.
  • Plasma levels of 25-hydroxyvitamin D3, calcium, and phosphorus were measured, along with body, liver, and kidney weights.

Main Results:

  • SMF exposure significantly decreased plasma 25-hydroxyvitamin D3 levels (P < 0.001).
  • No significant alterations were observed in calcium, phosphorus, body weight, or relative organ weights.
  • Oral vitamin D supplementation successfully reversed the hypovitaminosis D induced by SMF exposure.

Conclusions:

  • Static magnetic field exposure can induce hypovitaminosis D in rats.
  • Vitamin D supplementation is effective in correcting SMF-induced decreases in 25-hydroxyvitamin D3.
  • Further research is warranted to elucidate the precise mechanisms by which SMF affects vitamin D metabolism.