Methods for determining how a drug interacts with cellular membranes at the molecular level can give valuable insight into the mode of action of the drug and its absorption, distribution and metabolism profile. A procedure is described here to determine the orientation and location of the lipophilic drug trifluoperazine (TFP) intercalated into dimyristoylphosphatidylcholine (DMPC) bilayers, by using a novel combination of high-resolution solid-state nuclear magnetic resonance (SSNMR) methods to observe signals from (13)C within the drug at natural abundance. SSNMR measurements of (1)H-(13)C dipolar couplings for TFP and selective broadening of (13)C NMR peaks by paramagnetic Mn(2+) together suggest a model for the location, orientation and ...
AbstractInvestigations of lipid membranes using NMR spectroscopy generally require isotopic labeling...
Interactions between anesthetics (lidocaine and short chain alcohols) and lipid membranes formed by ...
Interactions between anesthetics (lidocaine and short chain alcohols) and lipid membranes formed by ...
Solid-state 19F-NMR spectroscopy is frequently used to analyze the structure and dynamics of lipophi...
In this thesis, the successful application of phosphorus-31, nitrogen-14 and nitrogen-15 solid state...
In this thesis, the successful application of phosphorus-31, nitrogen-14 and nitrogen-15 solid state...
To explore drug-membrane interactions by high-resolution NMR, we have established a novel membrane b...
To explore drug-membrane interactions by high-resolution NMR, we have established a novel membrane b...
Solid-state nuclear magnetic resonance (ssNMR) is a powerful non-destructive tool in the analysis of...
Several analytical methods are available for determining the partition coefficients of drug compound...
This thesis work concerns the study of the interactions between the synthetic antimicrobial peptide ...
Hydrated dipalmitoylphosphatidylcholine (DPPC) multilayers were used as a model membrane system to s...
AbstractPhosphatidylserine (PS) extracted from pig brain and synthetic dipalmitoylphosphatidylcholin...
AbstractInteractions between anesthetics (lidocaine and short chain alcohols) and lipid membranes fo...
With molecular dynamics simulations of phospholipid membranes becoming a reality, there is a growing...
AbstractInvestigations of lipid membranes using NMR spectroscopy generally require isotopic labeling...
Interactions between anesthetics (lidocaine and short chain alcohols) and lipid membranes formed by ...
Interactions between anesthetics (lidocaine and short chain alcohols) and lipid membranes formed by ...
Solid-state 19F-NMR spectroscopy is frequently used to analyze the structure and dynamics of lipophi...
In this thesis, the successful application of phosphorus-31, nitrogen-14 and nitrogen-15 solid state...
In this thesis, the successful application of phosphorus-31, nitrogen-14 and nitrogen-15 solid state...
To explore drug-membrane interactions by high-resolution NMR, we have established a novel membrane b...
To explore drug-membrane interactions by high-resolution NMR, we have established a novel membrane b...
Solid-state nuclear magnetic resonance (ssNMR) is a powerful non-destructive tool in the analysis of...
Several analytical methods are available for determining the partition coefficients of drug compound...
This thesis work concerns the study of the interactions between the synthetic antimicrobial peptide ...
Hydrated dipalmitoylphosphatidylcholine (DPPC) multilayers were used as a model membrane system to s...
AbstractPhosphatidylserine (PS) extracted from pig brain and synthetic dipalmitoylphosphatidylcholin...
AbstractInteractions between anesthetics (lidocaine and short chain alcohols) and lipid membranes fo...
With molecular dynamics simulations of phospholipid membranes becoming a reality, there is a growing...
AbstractInvestigations of lipid membranes using NMR spectroscopy generally require isotopic labeling...
Interactions between anesthetics (lidocaine and short chain alcohols) and lipid membranes formed by ...
Interactions between anesthetics (lidocaine and short chain alcohols) and lipid membranes formed by ...