AbstractThe association between monovalent salts and neutral lipid bilayers is known to influence global bilayer structural properties such as headgroup conformational fluctuations and the dipole potential. The local influence of the ions, however, has been unknown due to limited structural resolution of experimental methods. Molecular dynamics simulations are used here to elucidate local structural rearrangements upon association of a series of monovalent Na+ salts to a palmitoyl-oleoyl-phosphatidylcholine bilayer. We observe association of all ion types in the interfacial region. Larger anions, which are meant to rationalize data regarding a Hofmeister series of anions, bind more deeply within the bilayer than either Cl− or Na+. Although ...
The effect of ion binding on the structural, mechanical, dynamic and electrostatic properties of a 1...
Lipid bilayers are important biological structures. The changes in bilayer properties are induced by...
The extent to which current force fields faithfully reproduce conformational properties of lipids in...
ABSTRACT The association between monovalent salts and neutral lipid bilayers is known to influence g...
AbstractThe association between monovalent salts and neutral lipid bilayers is known to influence gl...
AbstractDifferences of ionic concentrations across lipid bilayers are some of the primary energetic ...
AbstractTwo 40ns molecular dynamics simulations of a palmitoyl-oleoyl phosphatidylserine (POPS) lipi...
To gain a better understanding of how monovalent salt under physiological conditions affects plasma ...
An atomic-scale understanding of cationic lipid membranes is required for development of gene delive...
Interactions of monovalent salts with lipid membranes are explored with molecular dynamics (MD) simu...
An atomic-scale understanding of cationic lipid membranes is required for development of gene delive...
AbstractWe studied the influence of sodium and calcium chloride on the global and local membrane pro...
AbstractTo better understand bilayer property dependency on lipid electrostatics and headgroup size,...
Molecular dynamics simulations are performed on two hydrated dipalmitoylphosphatidylcholine bilayer ...
AbstractMolecular dynamics simulations are performed on two hydrated dipalmitoylphosphatidylcholine ...
The effect of ion binding on the structural, mechanical, dynamic and electrostatic properties of a 1...
Lipid bilayers are important biological structures. The changes in bilayer properties are induced by...
The extent to which current force fields faithfully reproduce conformational properties of lipids in...
ABSTRACT The association between monovalent salts and neutral lipid bilayers is known to influence g...
AbstractThe association between monovalent salts and neutral lipid bilayers is known to influence gl...
AbstractDifferences of ionic concentrations across lipid bilayers are some of the primary energetic ...
AbstractTwo 40ns molecular dynamics simulations of a palmitoyl-oleoyl phosphatidylserine (POPS) lipi...
To gain a better understanding of how monovalent salt under physiological conditions affects plasma ...
An atomic-scale understanding of cationic lipid membranes is required for development of gene delive...
Interactions of monovalent salts with lipid membranes are explored with molecular dynamics (MD) simu...
An atomic-scale understanding of cationic lipid membranes is required for development of gene delive...
AbstractWe studied the influence of sodium and calcium chloride on the global and local membrane pro...
AbstractTo better understand bilayer property dependency on lipid electrostatics and headgroup size,...
Molecular dynamics simulations are performed on two hydrated dipalmitoylphosphatidylcholine bilayer ...
AbstractMolecular dynamics simulations are performed on two hydrated dipalmitoylphosphatidylcholine ...
The effect of ion binding on the structural, mechanical, dynamic and electrostatic properties of a 1...
Lipid bilayers are important biological structures. The changes in bilayer properties are induced by...
The extent to which current force fields faithfully reproduce conformational properties of lipids in...