Despite their structural resemblance, a pair of cyclic halogenated compounds, 1-chloro-1,2,2-trifluorocyclobutane (F3) and 1,2-dichlorohexafluorocyclobutane (F6), exhibit completely different anesthetic properties. Whereas the former is a potent general anesthetic, the latter produces no anesthesia. Two linear compounds, isoflurane and 2,3-dichlorooctofluorobutane (F8), although not a structural pair, also show the same anesthetic discrepancy. Using 19F nuclear magnetic spectroscopy, we investigated the time-averaged submolecular distribution of these compounds in a vesicle suspension of phosphatidylcholine lipids. A two-site exchange model was used to interpret the observed changes in resonance frequencies as a function of the solubilizati...
AbstractTo gain insights into the molecular level mechanism of drug action at the membrane site, we ...
Fluorine is often incorporated into the aromatic moieties of synthetic bioactive molecules such as p...
We use molecular dynamics simulations to investigate the effects of halothane, a volatile anesthetic...
[Objectives] To investigate the interaction of a general anesthetic with biological membranes, we me...
AbstractThe incorporation of two fluorine-containing general anesthetic agents, halothane and methox...
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...
AbstractNew lines of evidence suggest that volatile anesthetics interact specifically with proteins....
The interactions of the local anesthetic tetracaine with multilamellar dispersions of dimyristoylpho...
Fluorine-19 nuclear magnetic resonance at 235 MHz has been used to characterize the NMR properties o...
The first quantitative insight has been obtained into the effects that volatile anesthetics have on ...
AbstractThe membrane location of the local anesthetics (LA) lidocaine, dibucaine, tetracaine, and pr...
Enflurane is a fluorinated volatile anesthetic, whose bioactive conformation is not known. Actually,...
AbstractThe structural perturbations of the fully hydrated dimyristoyl-phosphatidylcholine bilayer i...
AbstractTo gain insights into the molecular level mechanism of drug action at the membrane site, we ...
Fluorine is often incorporated into the aromatic moieties of synthetic bioactive molecules such as p...
We use molecular dynamics simulations to investigate the effects of halothane, a volatile anesthetic...
[Objectives] To investigate the interaction of a general anesthetic with biological membranes, we me...
AbstractThe incorporation of two fluorine-containing general anesthetic agents, halothane and methox...
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...
AbstractNew lines of evidence suggest that volatile anesthetics interact specifically with proteins....
The interactions of the local anesthetic tetracaine with multilamellar dispersions of dimyristoylpho...
Fluorine-19 nuclear magnetic resonance at 235 MHz has been used to characterize the NMR properties o...
The first quantitative insight has been obtained into the effects that volatile anesthetics have on ...
AbstractThe membrane location of the local anesthetics (LA) lidocaine, dibucaine, tetracaine, and pr...
Enflurane is a fluorinated volatile anesthetic, whose bioactive conformation is not known. Actually,...
AbstractThe structural perturbations of the fully hydrated dimyristoyl-phosphatidylcholine bilayer i...
AbstractTo gain insights into the molecular level mechanism of drug action at the membrane site, we ...
Fluorine is often incorporated into the aromatic moieties of synthetic bioactive molecules such as p...
We use molecular dynamics simulations to investigate the effects of halothane, a volatile anesthetic...