AbstractTo gain insights into the molecular level mechanism of drug action at the membrane site, we have carried out extensive molecular dynamics simulations of a model membrane in the presence of a volatile anesthetic using a coarse-grain model. Six different anesthetic (halothane)/lipid (dimyristoylphosphatidylcholine) ratios have been investigated, going beyond the low doses typical of medical applications. The volatile anesthetics were introduced into a preassembled fully hydrated 512-molecule lipid bilayer and each of the molecular dynamics simulations were carried out at ambient conditions, using the NPT ensemble. The area per lipid increases monotonically with the halothane concentration and the lamellar spacing decreases, whereas th...
Using a combination of high pressure wide angle X-ray scattering experiments and molecular dynamics ...
AbstractAlthough 1-alkanols have long been known to act as penetration enhancers and anesthetics, th...
ABSTRACTThe structural modifications of the dipalmitoylphosphatidylcholine (DPPC) organization induc...
To gain insights into the molecular level mechanism of drug action at the membrane site, we have car...
AbstractTo gain insights into the molecular level mechanism of drug action at the membrane site, we ...
ABSTRACT To gain insights into the molecular level mechanism of drug action at the membrane site, we...
AbstractWe report the results of constant temperature and pressure molecular dynamics calculations c...
AbstractMolecular dynamics simulations have been performed to investigate the partitioning of the vo...
Molecular dynamics simulations of the fully hydrated neat dipalmitoylphosphatidylcholine (DPPC) memb...
AbstractThe structural perturbations of the fully hydrated dimyristoyl-phosphatidylcholine bilayer i...
The molecular mechanism of general anesthesia is still a controversial issue. Direct effect by linki...
The ability of anesthetics to reversibly suppress consciousness must reside in the effects exerted o...
The molecular mechanism of general anesthesia is still a controversial issue. Direct effect by linki...
The molecular mechanism of general anesthesia is still a controversial issue. Direct effect by linki...
We use molecular dynamics simulations to investigate the effects of halothane, a volatile anesthetic...
Using a combination of high pressure wide angle X-ray scattering experiments and molecular dynamics ...
AbstractAlthough 1-alkanols have long been known to act as penetration enhancers and anesthetics, th...
ABSTRACTThe structural modifications of the dipalmitoylphosphatidylcholine (DPPC) organization induc...
To gain insights into the molecular level mechanism of drug action at the membrane site, we have car...
AbstractTo gain insights into the molecular level mechanism of drug action at the membrane site, we ...
ABSTRACT To gain insights into the molecular level mechanism of drug action at the membrane site, we...
AbstractWe report the results of constant temperature and pressure molecular dynamics calculations c...
AbstractMolecular dynamics simulations have been performed to investigate the partitioning of the vo...
Molecular dynamics simulations of the fully hydrated neat dipalmitoylphosphatidylcholine (DPPC) memb...
AbstractThe structural perturbations of the fully hydrated dimyristoyl-phosphatidylcholine bilayer i...
The molecular mechanism of general anesthesia is still a controversial issue. Direct effect by linki...
The ability of anesthetics to reversibly suppress consciousness must reside in the effects exerted o...
The molecular mechanism of general anesthesia is still a controversial issue. Direct effect by linki...
The molecular mechanism of general anesthesia is still a controversial issue. Direct effect by linki...
We use molecular dynamics simulations to investigate the effects of halothane, a volatile anesthetic...
Using a combination of high pressure wide angle X-ray scattering experiments and molecular dynamics ...
AbstractAlthough 1-alkanols have long been known to act as penetration enhancers and anesthetics, th...
ABSTRACTThe structural modifications of the dipalmitoylphosphatidylcholine (DPPC) organization induc...