We investigate with computer simulations the critical radius of pores in a lipid bilayer membrane. Ilton et al. (Ilton et al. 2016 Phys. Rev. Lett.117, 257801 (doi:10.1103/PhysRevLett.117.257801)) recently showed that nucleated pores in a homopolymer film can increase or decrease in size, depending on whether they are larger or smaller than a critical size which scales linearly with film thickness. Using dissipative particle dynamics, a particle-based simulation method, we investigate the same scenario for a lipid bilayer membrane whose structure is determined by lipid–water interactions. We simulate a perforated membrane in which holes larger than a critical radius grow, while holes smaller than the critical radius close, as in the experim...
AbstractA new simulation method, dissipative particle dynamics, is applied to model biological membr...
Atomistic molecular dynamics simulations of a lipid bilayer were performed to calculate the free ene...
We investigate pores in fluid membranes by molecular dynamics simulations of an amphiphile-solvent m...
We investigate with computer simulations the critical radius of pores in a lipid bilayer membrane. I...
Hydrophilic pores are formed in peptide free lipid bilayers under mechanical stress. It has been pro...
Hydrophilic pores are formed in peptide free lipid bilayers under mechanical stress. It has been pro...
AbstractHydrophilic pores are formed in peptide free lipid bilayers under mechanical stress. It has ...
ABSTRACT Hydrophilic pores are formed in peptide free lipid bilayers under mechanical stress. It has...
AbstractCellular membranes separate distinct aqueous compartments, but can be breached by transient ...
Biological membranes play a pivotal role in almost all cellular phenomena as highly versatile physio...
Cell-penetrating and antimicrobial peptides show a remarkable ability to translocate across physiolo...
In the absence of external stress, the surface tension of a lipid membrane vanishes at equilibrium, ...
All organisms have cell membranes which are composed of lipids. The length of lipids affects the ela...
The molecular interaction between common polymer chains and the cell membrane is unknown. Molecular ...
We have constructed a model for the kinetics of rupture of membranes under tension, applying physica...
AbstractA new simulation method, dissipative particle dynamics, is applied to model biological membr...
Atomistic molecular dynamics simulations of a lipid bilayer were performed to calculate the free ene...
We investigate pores in fluid membranes by molecular dynamics simulations of an amphiphile-solvent m...
We investigate with computer simulations the critical radius of pores in a lipid bilayer membrane. I...
Hydrophilic pores are formed in peptide free lipid bilayers under mechanical stress. It has been pro...
Hydrophilic pores are formed in peptide free lipid bilayers under mechanical stress. It has been pro...
AbstractHydrophilic pores are formed in peptide free lipid bilayers under mechanical stress. It has ...
ABSTRACT Hydrophilic pores are formed in peptide free lipid bilayers under mechanical stress. It has...
AbstractCellular membranes separate distinct aqueous compartments, but can be breached by transient ...
Biological membranes play a pivotal role in almost all cellular phenomena as highly versatile physio...
Cell-penetrating and antimicrobial peptides show a remarkable ability to translocate across physiolo...
In the absence of external stress, the surface tension of a lipid membrane vanishes at equilibrium, ...
All organisms have cell membranes which are composed of lipids. The length of lipids affects the ela...
The molecular interaction between common polymer chains and the cell membrane is unknown. Molecular ...
We have constructed a model for the kinetics of rupture of membranes under tension, applying physica...
AbstractA new simulation method, dissipative particle dynamics, is applied to model biological membr...
Atomistic molecular dynamics simulations of a lipid bilayer were performed to calculate the free ene...
We investigate pores in fluid membranes by molecular dynamics simulations of an amphiphile-solvent m...