AbstractWe present molecular dynamics simulations of a multicomponent, asymmetric bilayer in mixed aqueous solutions of sodium and potassium chloride. Because of the geometry of the system, there are two aqueous solution regions in our simulations: one mimics the intracellular region, and one mimics the extracellular region. Ion-specific effects are evident at the membrane/aqueous solution interface. Namely, at equal concentrations of sodium and potassium, sodium ions are more strongly adsorbed to carbonyl groups of the lipid headgroups. A significant concentration excess of potassium is needed for this ion to overwhelm the sodium abundance at the membrane. Ion-membrane interactions also lead to concentration-dependent and cation-specific b...
A Molecular Dynamics Simulation study of the steady and dynamic properties of an asymmetric phosphol...
It is well-established that native plasma membranes are characterized by an asymmetric distribution ...
To study the pore-mediated transport of ionic species across a lipid membrane, a series of molecular...
We present molecular dynamics simulations of a multicomponent, asymmetric bilayer in mixed aqueous s...
The specific ionic composition differs considerably at both sides of biological membranes and specif...
AbstractDifferences of ionic concentrations across lipid bilayers are some of the primary energetic ...
Molecular dynamics simulations are performed on two hydrated dipalmitoylphosphatidylcholine bilayer ...
Two mixed bilayers containing dipalmitoylphosphatidylcholine and dipalmitoylphosphatidylserine at a ...
AbstractWe have employed atomic-scale molecular dynamics simulations to address ion leakage through ...
ABSTRACT We have employed atomic-scale molecular dynamics simulations to address ion leakage through...
ABSTRACT: As plasma membranes of animal cells are known to be asymmetric, the transmembrane lipid as...
AbstractTwo mixed bilayers containing dipalmitoylphosphatidylcholine and dipalmitoylphosphatidylseri...
AbstractAn electro-osmotic model is developed to examine the influence of plasma membrane superficia...
Passive or unassisted ion permeation through lipid bilayers involves a type of rare events by which ...
To gain a better understanding of how monovalent salt under physiological conditions affects plasma ...
A Molecular Dynamics Simulation study of the steady and dynamic properties of an asymmetric phosphol...
It is well-established that native plasma membranes are characterized by an asymmetric distribution ...
To study the pore-mediated transport of ionic species across a lipid membrane, a series of molecular...
We present molecular dynamics simulations of a multicomponent, asymmetric bilayer in mixed aqueous s...
The specific ionic composition differs considerably at both sides of biological membranes and specif...
AbstractDifferences of ionic concentrations across lipid bilayers are some of the primary energetic ...
Molecular dynamics simulations are performed on two hydrated dipalmitoylphosphatidylcholine bilayer ...
Two mixed bilayers containing dipalmitoylphosphatidylcholine and dipalmitoylphosphatidylserine at a ...
AbstractWe have employed atomic-scale molecular dynamics simulations to address ion leakage through ...
ABSTRACT We have employed atomic-scale molecular dynamics simulations to address ion leakage through...
ABSTRACT: As plasma membranes of animal cells are known to be asymmetric, the transmembrane lipid as...
AbstractTwo mixed bilayers containing dipalmitoylphosphatidylcholine and dipalmitoylphosphatidylseri...
AbstractAn electro-osmotic model is developed to examine the influence of plasma membrane superficia...
Passive or unassisted ion permeation through lipid bilayers involves a type of rare events by which ...
To gain a better understanding of how monovalent salt under physiological conditions affects plasma ...
A Molecular Dynamics Simulation study of the steady and dynamic properties of an asymmetric phosphol...
It is well-established that native plasma membranes are characterized by an asymmetric distribution ...
To study the pore-mediated transport of ionic species across a lipid membrane, a series of molecular...