While small molecules have been used to induce anesthesia in a clinical setting for well over a century, a detailed understanding of the molecular mechanism remains elusive. In this study, we utilize ab initio calculations to develop a novel set of CHARMM-compatible parameters for the ubiquitous modern anesthetics desflurane, isoflurane, sevoflurane, and propofol for use in molecular dynamics (MD) simulations. The parameters generated were rigorously tested against known experimental physicochemical properties including dipole moment, density, enthalpy of vaporization, and free energy of solvation. In all cases, the anesthetic parameters were able to reproduce experimental measurements, signifying the robustness and accuracy of the atomisti...
ABSTRACT To gain insights into the molecular level mechanism of drug action at the membrane site, we...
Despite the widespread clinical use of anesthetics since the 19th century, a clear understanding of ...
AbstractThe structural perturbations of the fully hydrated dimyristoyl-phosphatidylcholine bilayer i...
While small molecules have been used to induce anesthesia in a clinical setting for well over a cent...
ABSTRACT: While small molecules have been used to induce anesthesia in a clinical setting for well o...
Since almost all biologically relevant cell membranes are formed by phospholipid bilayers, the inves...
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...
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...
Atomistic molecular dynamics (MD) and steered MD simulations in combination with umbrella sampling m...
Molecular dynamics simulations of the fully hydrated neat dipalmitoylphosphatidylcholine (DPPC) memb...
The lipid membrane is considered a crucial component of opioid general anesthesia. The main drug use...
In spite of extensive research and use in medical practice, the precise molecular mechanism of volat...
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...
Despite the widespread clinical use of anesthetics since the 19th century, a clear understanding of ...
AbstractThe structural perturbations of the fully hydrated dimyristoyl-phosphatidylcholine bilayer i...
While small molecules have been used to induce anesthesia in a clinical setting for well over a cent...
ABSTRACT: While small molecules have been used to induce anesthesia in a clinical setting for well o...
Since almost all biologically relevant cell membranes are formed by phospholipid bilayers, the inves...
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...
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...
Atomistic molecular dynamics (MD) and steered MD simulations in combination with umbrella sampling m...
Molecular dynamics simulations of the fully hydrated neat dipalmitoylphosphatidylcholine (DPPC) memb...
The lipid membrane is considered a crucial component of opioid general anesthesia. The main drug use...
In spite of extensive research and use in medical practice, the precise molecular mechanism of volat...
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...
Despite the widespread clinical use of anesthetics since the 19th century, a clear understanding of ...
AbstractThe structural perturbations of the fully hydrated dimyristoyl-phosphatidylcholine bilayer i...