Related Experiment Video
Updated: Aug 29, 2025

Changing the Direction and Orientation of Electric Field During Electric Pulses Application Improves Plasmid Gene Transfer in vitro
Published on: September 12, 2011
High-Intensity Pulsed Electromagnetic Field-Mediated Gene Electrotransfection In Vitro
Matej Kranjc1, Janja Dermol-Černe1, Tjaša Potočnik1
1Faculty of Electrical Engineering, University of Ljubljana, 1000 Ljubljana, Slovenia.
Abstract:
A high-intensity pulsed electromagnetic field (HI-PEMF) is a non-invasive and non-contact delivery method and may, as such, have an advantage over gene electrotransfer mediated by conventional electroporation using contact electrodes. Due to the limited number of in vitro studies in the field of gene electrotransfection by HI-PEMF, we designed experiments to investigate and demonstrate the feasibility of such a technique for the non-viral delivery of genetic material into cells in vitro. We first showed that HI-PEMF causes DNA adsorption to the membrane, a generally accepted prerequisite step for successful gene electrotransfection. We also showed that HI-PEMF can induce gene electrotransfection as the application of HI-PEMF increased the percentage of GFP-positive cells for two different combinations of pDNA size and concentration. Furthermore, by measuring the uptake of larger molecules, i.e., fluorescently labelled dextrans of three different sizes, we showed endocytosis to be a possible mechanism for introducing large molecules into cells by HI-PEMF.
More Related Videos
12:55Using the Gene Pulser MXcell Electroporation System to Transfect Primary Cells with High Efficiency
Published on: January 7, 2010
07:04Electroporation-Based Genetic Modification of Primary Human Pigment Epithelial Cells Using the Sleeping Beauty Transposon System
Published on: February 4, 2021