Static magnetic field (SMF) interacts with mammal skeletal muscle; however, SMF effects on skeletal muscle cells are poorly investigated. The myogenic cell line L6, an in vitro model of muscle development, was used to investigate the effect of a 80 +/- mT SMF generated by a custom-made magnet. SMF promoted myogenic cell differentiation and hypertrophy, i.e., increased accumulation of actin and myosin and formation of large multinucleated myotubes. The elevated number of nuclei per myotube was derived from increased cell fusion efficiency, with no changes in cell proliferation upon SMF exposure. No alterations in myogenin expression, a modulator of myogenesis, occurred upon SMF exposure. SMF induced cells to align in parallel bundles, an ori...
Weak electromagnetic fields (WEF) alter Ca2+ handling in skeletal muscle myotubes. Owing to the invo...
International audiencePURPOSE: To evaluate whether static high magnetic fields (HMFs), in the range ...
This study deals with the morphofunctional influence of 72 h exposure to a 6 mT static magnetic fiel...
There is continuing progress in studies of the effect of static magnetic field (SMF) on cell growth...
Skeletal muscle tissue engineering (SMTE) aims at the in vitro generation of 3D skeletal muscle engi...
The effect of a magnetic field at an extremely low frequency on proliferation and orientation of cul...
Tissue-engineering strategies for the treatment of osteoarthritis would benefit from the ability to ...
We present here a morphological, cytochemical and bio-chemical study of the macrophagic differentiat...
The potential hazardous effects of magnetic field (MF) exposures on individual have been extensively...
We present here a morphological, cytochemical and biochemical study of the macrophagic differentiati...
It has been shown that static magnetic field (SMF) of moderate intensity produces considerable impac...
The interaction of static magnetic fields (SMFs) with living organisms is a rapidly growing field of...
The effect of a magnetic field on adhesion of cultured muscle cells to the culture plate has been st...
This study analyzed the effects of a static electromagnetic field (EMF) on the L6 cell line (from ra...
Weak electromagnetic fields (WEF) alter Ca2+ handling in skeletal muscle myotubes. Owing to the invo...
Weak electromagnetic fields (WEF) alter Ca2+ handling in skeletal muscle myotubes. Owing to the invo...
International audiencePURPOSE: To evaluate whether static high magnetic fields (HMFs), in the range ...
This study deals with the morphofunctional influence of 72 h exposure to a 6 mT static magnetic fiel...
There is continuing progress in studies of the effect of static magnetic field (SMF) on cell growth...
Skeletal muscle tissue engineering (SMTE) aims at the in vitro generation of 3D skeletal muscle engi...
The effect of a magnetic field at an extremely low frequency on proliferation and orientation of cul...
Tissue-engineering strategies for the treatment of osteoarthritis would benefit from the ability to ...
We present here a morphological, cytochemical and bio-chemical study of the macrophagic differentiat...
The potential hazardous effects of magnetic field (MF) exposures on individual have been extensively...
We present here a morphological, cytochemical and biochemical study of the macrophagic differentiati...
It has been shown that static magnetic field (SMF) of moderate intensity produces considerable impac...
The interaction of static magnetic fields (SMFs) with living organisms is a rapidly growing field of...
The effect of a magnetic field on adhesion of cultured muscle cells to the culture plate has been st...
This study analyzed the effects of a static electromagnetic field (EMF) on the L6 cell line (from ra...
Weak electromagnetic fields (WEF) alter Ca2+ handling in skeletal muscle myotubes. Owing to the invo...
Weak electromagnetic fields (WEF) alter Ca2+ handling in skeletal muscle myotubes. Owing to the invo...
International audiencePURPOSE: To evaluate whether static high magnetic fields (HMFs), in the range ...
This study deals with the morphofunctional influence of 72 h exposure to a 6 mT static magnetic fiel...