Article ID Journal Published Year Pages File Type
1948559 Biochimica et Biophysica Acta (BBA) - General Subjects 2007 12 Pages PDF
Abstract

Electroporation is a process where increased permeability of cells exposed to an electric field is observed. It is used in many biomedical applications including electrogene transfection and electrochemotherapy. Although the increased permeability of the membrane is believed to be the result of pores due to an induced transmembrane voltage Um, the exact molecular mechanisms are not fully explained.In this study we analyze transient conductivity changes during the electric pulses and increased membrane permeability for ions and molecules after the pulses in order to determine which parameters affect stabilization of pores, and to analyze the relation between transient pores and long-lived transport pores. By quantifying ion diffusion, fraction of transport pores fper was obtained. A simple model, which assumes a quadratic dependence of fper on E in the area where Um > Uc very accurately describes experimental values, suggesting that fper increases with higher electric field due to larger permeabilized area and due to higher energy available for pore formation. The fraction of transport pores increases also with the number of pulses N, which suggest that each pulse contributes to formation of more and/or larger stable transport pores, whereas the number of transient pores does not depend on N.

Related Topics
Life Sciences Biochemistry, Genetics and Molecular Biology Biochemistry
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