Biophysical studies of model cell membranes at full and low hydration are usually carried out using scattering measurements on multi-bilayer systems. Molecular simulations of lipid bilayers aimed at reproducing those experimental conditions are usually conducted using single bilayers with different amounts of water. These simulation conditions may lead to artifacts arising from size effects and self-interactions because of periodic boundary conditions. We have tested the influence of the size and number of bilayers on membrane properties using the Lipid14 force field for lipids in molecular dynamics simulations of 1,2-dioleoyl-sn-glycero-3-phosphocholine bilayers at full hydration (44 water molecules per lipid), low hydration (18 water mole...
AbstractMolecular simulations of hydrated dipalmitoylphosphatidylcholine lipid bilayers have been pe...
To reach their biological target, drugs have to cross cell membranes, and understanding passive memb...
AbstractTo reach their biological target, drugs have to cross cell membranes, and understanding pass...
Molecular dynamics simulations of fully hydrated pure bilayers of four widely studied phospholipids,...
AbstractThe structure and dynamics of the lipid and water components of dioleoylphosphatidylcholine ...
The sensitivity of the structure and dynamics of a fully hydrated pure bilayer of 1,2-dipalmitoyl-sn...
In the absence of external stress, the surface tension of a lipid membrane vanishes at equilibrium, ...
Molecular dynamics simulations of 1,2-di-O-acyl-3-O-β-D-galactopyranosyl-sn-glycerol (MGDG) and 1,2-...
AbstractThe structure and dynamics of the lipid and water components of dioleoylphosphatidylcholine ...
AbstractAlthough lipid force fields (FFs) used in molecular dynamics (MD) simulations have proved to...
A potential energy function for unsaturated hydrocarbons is proposed and is shown to agree well with...
A molecular-level self-consistent-field (SCF) theory is applied to model the lipid bilayer structure...
A recently developed coarse-grain model is applied to simulate hydrated membranes containing the lam...
A molecular-level self-consistent-field (SCF) theory is applied to model the lipid bilayer structure...
In this paper we report on the molecular dynamics simulation of a fluid phase hydrated dimyristoylph...
AbstractMolecular simulations of hydrated dipalmitoylphosphatidylcholine lipid bilayers have been pe...
To reach their biological target, drugs have to cross cell membranes, and understanding passive memb...
AbstractTo reach their biological target, drugs have to cross cell membranes, and understanding pass...
Molecular dynamics simulations of fully hydrated pure bilayers of four widely studied phospholipids,...
AbstractThe structure and dynamics of the lipid and water components of dioleoylphosphatidylcholine ...
The sensitivity of the structure and dynamics of a fully hydrated pure bilayer of 1,2-dipalmitoyl-sn...
In the absence of external stress, the surface tension of a lipid membrane vanishes at equilibrium, ...
Molecular dynamics simulations of 1,2-di-O-acyl-3-O-β-D-galactopyranosyl-sn-glycerol (MGDG) and 1,2-...
AbstractThe structure and dynamics of the lipid and water components of dioleoylphosphatidylcholine ...
AbstractAlthough lipid force fields (FFs) used in molecular dynamics (MD) simulations have proved to...
A potential energy function for unsaturated hydrocarbons is proposed and is shown to agree well with...
A molecular-level self-consistent-field (SCF) theory is applied to model the lipid bilayer structure...
A recently developed coarse-grain model is applied to simulate hydrated membranes containing the lam...
A molecular-level self-consistent-field (SCF) theory is applied to model the lipid bilayer structure...
In this paper we report on the molecular dynamics simulation of a fluid phase hydrated dimyristoylph...
AbstractMolecular simulations of hydrated dipalmitoylphosphatidylcholine lipid bilayers have been pe...
To reach their biological target, drugs have to cross cell membranes, and understanding passive memb...
AbstractTo reach their biological target, drugs have to cross cell membranes, and understanding pass...