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In vitro increase of the fluid-phase endocytosis induced by pulsed radiofrequency electromagnetic fields: importance of the electric field component
Authors:Nawel Mahrour,Mihaela G. Moisescu,Sté  phane Orlowski,Lluis M. Mir
Affiliation:a Laboratoire de Vectorologie et Transfert de Gènes, UMR 8121 CNRS, Institut Gustave-Roussy, 39 rue Camille Desmoulins, 94805 Villejuif Cedex, France
b Department of Biophysics, University of Medicine and Pharmacy “Carol Davila”, Bucharest, Romania
c SBFM/DBJC, CEA and URA 2096 CNRS, Centre d'Etudes de Saclay, 91191 Gif sur Yvette, France
d Institut de Recherche en Communications Optiques et Micro-ondes, UMR 6615 CNRS, Université de Limoges, 87060 Limoges, France
Abstract:Nowadays, due to the wide use of mobile phones, the possible biological effects of electromagnetic fields (EMF) become a public health general concern. Despite intensive research, there are no widely accepted theories about the interactions between EMFs and living cells, and the experimental data are often controversial. We examined the effects of mobile phones EMF (envelope frequency of 217 Hz, carrier frequency of 900 MHz and pulse duration of 580 μs) or its pure, low-frequency pulsed electric field component on fluid-phase endocytosis. In both cases, with exposures exceeding 10 min, an increase of the fluid-phase endocytosis rate was observed (≈1.5-fold), on three different cell types. This increase is an all-or-nothing type of response that is occurring for threshold values comprised between 1.3 and 2.6 W/kg for the delivered EMF powers and between 1.1 and 1.5 V/cm for the electric fields intensities depending upon the cell type. The electric component of these EMFs is shown to be responsible for the observed increase. Variations of frequency or pulse duration of the electric pulses are shown to be without effect. Thus, EMF, via their electrical component, can perturb one of the most fundamental physiological functions of the cells—endocytosis.
Keywords:EMF, electromagnetic field   LY, Lucifer Yellow   FD, FITC-Dextran   GSM, Global System for Mobile communications   CW, continuous wave   SAR, specific absorption rate
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