We have carried out molecular dynamics simulations using NAMD to study the diffusivity of Na and Cl ions across a POPC lipid bilayer membrane. We show that an imbalance of positively and negatively charged ions on either side of the membrane leads to the diffusion of ions and water molecules. We considered the cases of both weak and very strong charge imbalance across the membrane. The diffusion coefficients of the ions have been determined from the mean square displacements of the particles as a function of time. We find that for strong electrochemical gradients, both the Na and Cl ions diffuse rapidly through pores in the membrane with diffusion coefficients up to ten times larger than in water. Rather surprisingly, we found that although...
ABSTRACT We have employed atomic-scale molecular dynamics simulations to address ion leakage through...
Two distinct mechanisms are most frequently discussed to describe the permeation of ions across the ...
Understanding the mechanism of ion permeation across lipid bilayers is key to controlling osmotic pr...
We have carried out molecular dynamics simulations using NAMD to study the diffusivity of Na and Cl ...
To study the pore-mediated transport of ionic species across a lipid membrane, a series of molecular...
AbstractMaintenance of electrochemical potential gradients across lipid membranes is critical for si...
AbstractWe have employed atomic-scale molecular dynamics simulations to address ion leakage through ...
AbstractTo study the pore-mediated transport of ionic species across a lipid membrane, a series of m...
AbstractBiological membranes composed of lipids and proteins are in contact with electrolytes like a...
The important properties of biological membranes such as elasticity and structure, and their intera...
To understand the origin of transmembrane potentials, formation of transient pores, and the movement...
Positively charged lipid bilayer systems are a promising class of nonviral vectors for safe and effi...
Molecular dynamics simulations are performed on two hydrated dipalmitoylphosphatidylcholine bilayer ...
Positively charged lipid bilayer systems are a promising class of nonviral vectors for safe and effi...
AbstractCell membrane permeation is required for most drugs to reach their biological target, and un...
ABSTRACT We have employed atomic-scale molecular dynamics simulations to address ion leakage through...
Two distinct mechanisms are most frequently discussed to describe the permeation of ions across the ...
Understanding the mechanism of ion permeation across lipid bilayers is key to controlling osmotic pr...
We have carried out molecular dynamics simulations using NAMD to study the diffusivity of Na and Cl ...
To study the pore-mediated transport of ionic species across a lipid membrane, a series of molecular...
AbstractMaintenance of electrochemical potential gradients across lipid membranes is critical for si...
AbstractWe have employed atomic-scale molecular dynamics simulations to address ion leakage through ...
AbstractTo study the pore-mediated transport of ionic species across a lipid membrane, a series of m...
AbstractBiological membranes composed of lipids and proteins are in contact with electrolytes like a...
The important properties of biological membranes such as elasticity and structure, and their intera...
To understand the origin of transmembrane potentials, formation of transient pores, and the movement...
Positively charged lipid bilayer systems are a promising class of nonviral vectors for safe and effi...
Molecular dynamics simulations are performed on two hydrated dipalmitoylphosphatidylcholine bilayer ...
Positively charged lipid bilayer systems are a promising class of nonviral vectors for safe and effi...
AbstractCell membrane permeation is required for most drugs to reach their biological target, and un...
ABSTRACT We have employed atomic-scale molecular dynamics simulations to address ion leakage through...
Two distinct mechanisms are most frequently discussed to describe the permeation of ions across the ...
Understanding the mechanism of ion permeation across lipid bilayers is key to controlling osmotic pr...