Differential effects of high and low strength magnetic fields on mouse embryonic development and vasculogenesis of embryonic stem cells
•Exposure to high strength MFs exerted adverse effects on mouse embryonic development.•High strength MFs led to histological changes and reduced blood vessel formation.•High strength MFs provoked oxidative stress and led to increased apoptosis.•Our data identified VEGF as an important mediator durin...
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Veröffentlicht in: | Reproductive toxicology (Elmsford, N.Y.) N.Y.), 2016-10, Vol.65, p.46-58 |
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Sprache: | eng |
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Zusammenfassung: | •Exposure to high strength MFs exerted adverse effects on mouse embryonic development.•High strength MFs led to histological changes and reduced blood vessel formation.•High strength MFs provoked oxidative stress and led to increased apoptosis.•Our data identified VEGF as an important mediator during embryonic development.
Man-made magnetic fields (MFs) may exert adverse effects on mammalian embryonic development. Herein, we analysed the effect of 10mT 50Hz sinusoidal (AC) or static (DC) MFs versus 1mT MFs on embryonic development of mice. Exposure for 20days during gestation to 10mT MFs increased resorptions and dead fetuses, decreased crown-rump length and fresh weight, reduced blood vessel differentiation and caused histological changes, accompanied with diminished vascular endothelial growth factor (VEGF) protein expression in several organs. In embryonic stem (ES) cell-derived embryoid bodies exposure towards 10mT MFs increased reactive oxygen species (ROS), decreased vascular marker as well as VEGF expression and enhanced apoptosis. In conclusion, our combined data from in vivo and in vitro experiments identified VEGF as an important mediator during embryonic development that can be influenced by high strength MFs, which in consequence leads to severe abnormalities in fetus organs and blood vessel formation. |
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ISSN: | 0890-6238 1873-1708 |
DOI: | 10.1016/j.reprotox.2016.06.016 |