AbstractIn this work, the effect of extra-cellular conductivity on electroporation-mediated molecular delivery efficiency is investigated. A numerical model combining the Smoluchowski equation for membrane permeabilization and the Nernst–Planck equations for ion transport is used to simulate the evolution of ion concentration spatially and temporally. The results are compared with and used to interpret trends observed from previous experimental measurements. Agreements are found which suggest the critical importance of electrophoretic transport. This mechanism controls delivery efficiency on the quantitative level. Meanwhile, a simple formula is developed to predict the molecular content delivered via electrophoresis. The formula can be use...
Copyright © 2016 by ASME. This study develops a macroscopic model of mass transport in electroporate...
Electroporation is a widely established method that uses electric fields to enhance molecular transp...
AbstractThe efficacy of electroporation is known to vary significantly across a wide variety of biol...
AbstractIn this work, the effect of extra-cellular conductivity on electroporation-mediated molecula...
In electroporation, electric fields are used to transiently permeabilize the cellular membrane to fa...
AbstractThe effect of ions present in the extracellular medium on electroporation by high-intensity,...
Electroporation has become a powerful tool for nonviral delivery of various biomolecules such as nuc...
Electroporation is believed to involve the creation of aqueous pathways in lipid bilayer membranes b...
Electroporation is believed to involve a temporary structural rearrangement of lipid bilayer membran...
AbstractThe transport mechanisms in electroporation-mediated molecular delivery are experimentally i...
The effect of ions present in the extracellular medium on electroporation by high-intensity, short-d...
Background: Applications of electric-field-induced permeabilization of cells range from cancer thera...
Neumann E, Kakorin S, Tönsing K. Fundamentals of electroporative delivery of drugs and genes. BIOELE...
Electroporation is the phenomenon in which cell membrane permeability is increased by exposing the c...
The detailed molecular mechanisms underlying the permeabilization of cell membranes by pulsed electr...
Copyright © 2016 by ASME. This study develops a macroscopic model of mass transport in electroporate...
Electroporation is a widely established method that uses electric fields to enhance molecular transp...
AbstractThe efficacy of electroporation is known to vary significantly across a wide variety of biol...
AbstractIn this work, the effect of extra-cellular conductivity on electroporation-mediated molecula...
In electroporation, electric fields are used to transiently permeabilize the cellular membrane to fa...
AbstractThe effect of ions present in the extracellular medium on electroporation by high-intensity,...
Electroporation has become a powerful tool for nonviral delivery of various biomolecules such as nuc...
Electroporation is believed to involve the creation of aqueous pathways in lipid bilayer membranes b...
Electroporation is believed to involve a temporary structural rearrangement of lipid bilayer membran...
AbstractThe transport mechanisms in electroporation-mediated molecular delivery are experimentally i...
The effect of ions present in the extracellular medium on electroporation by high-intensity, short-d...
Background: Applications of electric-field-induced permeabilization of cells range from cancer thera...
Neumann E, Kakorin S, Tönsing K. Fundamentals of electroporative delivery of drugs and genes. BIOELE...
Electroporation is the phenomenon in which cell membrane permeability is increased by exposing the c...
The detailed molecular mechanisms underlying the permeabilization of cell membranes by pulsed electr...
Copyright © 2016 by ASME. This study develops a macroscopic model of mass transport in electroporate...
Electroporation is a widely established method that uses electric fields to enhance molecular transp...
AbstractThe efficacy of electroporation is known to vary significantly across a wide variety of biol...