4.4 Article

Magneto-Permeabilization of Viable Cell Membrane Using High Pulsed Magnetic Field

期刊

IEEE TRANSACTIONS ON MAGNETICS
卷 51, 期 9, 页码 -

出版社

IEEE-INST ELECTRICAL ELECTRONICS ENGINEERS INC
DOI: 10.1109/TMAG.2015.2439638

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Biological cells; cell permeability; electromagnetics; generators

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In this paper, we present novel experimental data of the magnetic permeabilization of the mammalian cells in high pulsed magnetic fields up to 16.4 T. Two designs of the multilayer solenoid-type pulsed inductors, which were adapted for the biological experiments, are presented. The induced electric field is analyzed using the finite-element method analysis. The experimental methodology and the pulsed magnetic field setups are overviewed. The experimental results with mouse myeloma cell line Sp2/0 in pulsed magnetic field after pulse bursts and single-pulse treatment are presented. The SYTOX Green dye was used for the estimation of the permeabilization process efficacy. It has been shown that the 16.4 T submillisecond low (<1.1 x 10(5) T/s) dB/dt magnetic field pulses do not cause any observable dye uptake changes using the proposed methodology. The short repetitive microsecond range pulses (d B/dt > 0.8 x 10(6) T/s) result in an average up to 2.6% +/- 0.5% increase of the dye uptake.

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