AbstractThe effect of ions present in the extracellular medium on electroporation by high-intensity, short-duration pulsing is studied through molecular dynamic simulations. Our simulation results indicate that mobile ions in the medium might play a role in creating stronger local electric fields across membranes that then reinforce and strengthen electroporation. Much faster pore formation is predicted in higher conductivity media. However, the impact of extracellular conductivity on cellular inflows, which depend on transport processes such as electrophoresis, could be different as discussed here. Our simulation results also show that interactions between cations (Na+ in this case) and the carbonyl oxygen of the lipid headgroups could imp...
An improved electroporation model is used to address membrane irreversibility under ultrashort elect...
as ass Ja e 31 [10,3], and uptake of large molecules such as proteins [11–16] and DNA [17,3] into ce...
AbstractThis study expands a previously developed model of a single cell electroporated by an extern...
The effect of ions present in the extracellular medium on electroporation by high-intensity, short-d...
AbstractThe effect of ions present in the extracellular medium on electroporation by high-intensity,...
The cell membrane is a selectively permeable barrier that controls the transport of ions, molecules,...
Molecular dynamics simulations of lipid membranes reveal the nanoscale evolution of biophysical syst...
AbstractConventional electroporation (EP) changes both the conductance and molecular permeability of...
Electroporation is the phenomenon in which cell membrane permeability is increased by exposing the c...
Electric pulses (EPs) have been used for many biological applications from electrochemotherapy to wo...
Electroporation has become a powerful tool for nonviral delivery of various biomolecules such as nuc...
Molecular dynamics (MD) simulations have become a powerful tool to study electroporation (EP) in ato...
2014-04-11Electroporation provides a controllable method to introduce foreign substances into living...
An electric pulse with a sufficient amplitude can lead to electroporation of intracellular organelle...
ABSTRACT: Electroporation, the application of electric fields to alter the permeability of biologica...
An improved electroporation model is used to address membrane irreversibility under ultrashort elect...
as ass Ja e 31 [10,3], and uptake of large molecules such as proteins [11–16] and DNA [17,3] into ce...
AbstractThis study expands a previously developed model of a single cell electroporated by an extern...
The effect of ions present in the extracellular medium on electroporation by high-intensity, short-d...
AbstractThe effect of ions present in the extracellular medium on electroporation by high-intensity,...
The cell membrane is a selectively permeable barrier that controls the transport of ions, molecules,...
Molecular dynamics simulations of lipid membranes reveal the nanoscale evolution of biophysical syst...
AbstractConventional electroporation (EP) changes both the conductance and molecular permeability of...
Electroporation is the phenomenon in which cell membrane permeability is increased by exposing the c...
Electric pulses (EPs) have been used for many biological applications from electrochemotherapy to wo...
Electroporation has become a powerful tool for nonviral delivery of various biomolecules such as nuc...
Molecular dynamics (MD) simulations have become a powerful tool to study electroporation (EP) in ato...
2014-04-11Electroporation provides a controllable method to introduce foreign substances into living...
An electric pulse with a sufficient amplitude can lead to electroporation of intracellular organelle...
ABSTRACT: Electroporation, the application of electric fields to alter the permeability of biologica...
An improved electroporation model is used to address membrane irreversibility under ultrashort elect...
as ass Ja e 31 [10,3], and uptake of large molecules such as proteins [11–16] and DNA [17,3] into ce...
AbstractThis study expands a previously developed model of a single cell electroporated by an extern...