There is an urgent demand for analytic approaches that enable precise and representative quantification of the transport of biologically active compounds across cellular membranes. In this study, we established a new means to monitor membrane permeation kinetics, using total internal reflection fluorescence microscopy confined to a ≈500 nm thick mesoporous silica substrate, positioned underneath a planar supported cell membrane mimic. This way, we demonstrate spatiotemporally resolved membrane permeation kinetics of a small-molecule model drug, felodipine, while simultaneously controlling the integrity of, and monitoring the drug binding to, the cell membrane mimic. By contrasting the permeation behaviour of pure felodipine with felodipine ...
Cells are delineated by a lipid bilayer that physically separates the inside from the outer environm...
Supported lipid bilayers (SLBs) represent one of the most popular mimics of the cell membrane. Herei...
We have developed a new method, using a nanopipette, for controlled voltage-driven delivery of indiv...
2013-01-25The ability of a molecule to pass through the plasma membrane without the aid of any activ...
The passage of solutes across a lipid membrane plays a central role in many cellular processes. Howe...
Self-emulsifying drug-delivery systems (SEDDS) have been extensively shown to increase oral absorpti...
Quantifying drug permeability across lipid membranes is crucial for drug development. In addition, r...
Quantifying drug permeability across lipid membranes is crucial for drug development. In addition, r...
AbstractLow-molecular-weight carboxylic acids have many properties common to small molecule drugs. T...
Despite the fact that two thirds of all pharmaceuticals today target membrane proteins, we know rath...
The current lack of insight into nanoparticle-cell membrane interactions hampers smart design strate...
The ability to predict and interpret membrane permeation coefficients is of critical importance, par...
Self-emulsifying drug-delivery systems (SEDDS) have been extensively shown to increase oral absorpti...
2016-01-21Transport by passive diffusion acro ss the lipid bilayer of the plasma membrane represents...
Applications in controlled release and delivery calls for a good understanding of molecular transpor...
Cells are delineated by a lipid bilayer that physically separates the inside from the outer environm...
Supported lipid bilayers (SLBs) represent one of the most popular mimics of the cell membrane. Herei...
We have developed a new method, using a nanopipette, for controlled voltage-driven delivery of indiv...
2013-01-25The ability of a molecule to pass through the plasma membrane without the aid of any activ...
The passage of solutes across a lipid membrane plays a central role in many cellular processes. Howe...
Self-emulsifying drug-delivery systems (SEDDS) have been extensively shown to increase oral absorpti...
Quantifying drug permeability across lipid membranes is crucial for drug development. In addition, r...
Quantifying drug permeability across lipid membranes is crucial for drug development. In addition, r...
AbstractLow-molecular-weight carboxylic acids have many properties common to small molecule drugs. T...
Despite the fact that two thirds of all pharmaceuticals today target membrane proteins, we know rath...
The current lack of insight into nanoparticle-cell membrane interactions hampers smart design strate...
The ability to predict and interpret membrane permeation coefficients is of critical importance, par...
Self-emulsifying drug-delivery systems (SEDDS) have been extensively shown to increase oral absorpti...
2016-01-21Transport by passive diffusion acro ss the lipid bilayer of the plasma membrane represents...
Applications in controlled release and delivery calls for a good understanding of molecular transpor...
Cells are delineated by a lipid bilayer that physically separates the inside from the outer environm...
Supported lipid bilayers (SLBs) represent one of the most popular mimics of the cell membrane. Herei...
We have developed a new method, using a nanopipette, for controlled voltage-driven delivery of indiv...