AbstractCellular membranes separate distinct aqueous compartments, but can be breached by transient hydrophilic pores. A large energetic cost prevents pore formation, which is largely dependent on the composition and structure of the lipid bilayer. The softness of bilayers and the disordered structure of pores make their characterization difficult. We use molecular-dynamics simulations with atomistic detail to study the thermodynamics, kinetics, and mechanism of pore formation and closure in DLPC, DMPC, and DPPC bilayers, with pore formation free energies of 17, 45, and 78 kJ/mol, respectively. By using atomistic computer simulations, we are able to determine not only the free energy for pore formation, but also the enthalpy and entropy, wh...
We investigate with computer simulations the critical radius of pores in a lipid bilayer membrane. I...
AbstractThe spontaneous formation of the phospholipid bilayer underlies the permeability barrier fun...
The asymmetric insertion of amphiphiles into biological membranes compromises the balance between th...
AbstractCellular membranes separate distinct aqueous compartments, but can be breached by transient ...
Cell-penetrating and antimicrobial peptides show a remarkable ability to translocate across physiolo...
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 ...
Hydrophilic pores are formed in peptide free lipid bilayers under mechanical stress. It has been pro...
ABSTRACT Hydrophilic pores are formed in peptide free lipid bilayers under mechanical stress. It has...
Atomistic molecular dynamics simulations of a lipid bilayer were performed to calculate the free ene...
Biological membranes play a pivotal role in almost all cellular phenomena as highly versatile physio...
The formation of a pore in a membrane requires a considerable rearrangement of the amphiphilic molec...
Patel, SandeepStructural mechanisms and underlying thermodynamic determinants of efficient internali...
Membrane topology changes such as poration, stalk formation, and hemifusion rupture are essential to...
The potential of mean force (PMF) of a phospholipid in a bilayer is a key thermodynamic property tha...
We investigate with computer simulations the critical radius of pores in a lipid bilayer membrane. I...
AbstractThe spontaneous formation of the phospholipid bilayer underlies the permeability barrier fun...
The asymmetric insertion of amphiphiles into biological membranes compromises the balance between th...
AbstractCellular membranes separate distinct aqueous compartments, but can be breached by transient ...
Cell-penetrating and antimicrobial peptides show a remarkable ability to translocate across physiolo...
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 ...
Hydrophilic pores are formed in peptide free lipid bilayers under mechanical stress. It has been pro...
ABSTRACT Hydrophilic pores are formed in peptide free lipid bilayers under mechanical stress. It has...
Atomistic molecular dynamics simulations of a lipid bilayer were performed to calculate the free ene...
Biological membranes play a pivotal role in almost all cellular phenomena as highly versatile physio...
The formation of a pore in a membrane requires a considerable rearrangement of the amphiphilic molec...
Patel, SandeepStructural mechanisms and underlying thermodynamic determinants of efficient internali...
Membrane topology changes such as poration, stalk formation, and hemifusion rupture are essential to...
The potential of mean force (PMF) of a phospholipid in a bilayer is a key thermodynamic property tha...
We investigate with computer simulations the critical radius of pores in a lipid bilayer membrane. I...
AbstractThe spontaneous formation of the phospholipid bilayer underlies the permeability barrier fun...
The asymmetric insertion of amphiphiles into biological membranes compromises the balance between th...