The adhesion of lipid vesicles to solid supports represents an important step in the molecular self-assembly of model membrane platforms. A wide range of experimental parameters are involved in controlling this process, including substrate material and topology, lipid composition, vesicle size, solution pH, ionic strength, and osmotic pressure. At present, it is not well understood how the magnitude and direction of the osmotic pressure exerted on a vesicle influence the corresponding adsorption kinetics. In this work, using quartz crystal microbalance with dissipation (QCM-D) monitoring, we have experimentally studied the role of osmotic pressure in the adsorption of zwitterionic vesicles onto silicon oxide. The osmotic pressure was induce...
In vivo, high protein and ion concentrations determine the preferred volumes of cells, organelles, a...
Supported lipid bilayers (SLBs) are popular models of cell membranes with potential biotechnological...
In vivo, high protein and ion concentrations determine the preferred volumes of cells, organelles, a...
The pathway of vesicle adsorption onto a solid support depends on the material composition of the un...
The pathway of vesicle adsorption onto a solid support depends on the material composition of the un...
There is currently a lack of comprehensive understanding of osmotic effect on lipid vesicle fusion o...
Titanium oxide is a biocompatible material that supports vesicle adhesion. Depending on experimental...
Titanium oxide is a biocompatible material that supports vesicle adhesion. Depending on experimental...
The fate of adsorbed lipid vesicles on solid supports depends on numerous experimental parameters an...
The fate of adsorbed lipid vesicles on solid supports depends on numerous experimental parameters an...
Titanium oxide is a biocompatible material that supports vesicle adhesion. Depending on experimental...
Supported lipid bilayers (SLBs) have been used extensively in a variety of biotechnology application...
This thesis is focused on the effects of osmotic pressure and transbilayer area asymmetry on the mor...
We have used the quartz crystal microbalance with dissipation monitoring (QCM-D) technique to invest...
Supported lipid bilayers (SLBs) are popular models of cell membranes with potential biotechnological...
In vivo, high protein and ion concentrations determine the preferred volumes of cells, organelles, a...
Supported lipid bilayers (SLBs) are popular models of cell membranes with potential biotechnological...
In vivo, high protein and ion concentrations determine the preferred volumes of cells, organelles, a...
The pathway of vesicle adsorption onto a solid support depends on the material composition of the un...
The pathway of vesicle adsorption onto a solid support depends on the material composition of the un...
There is currently a lack of comprehensive understanding of osmotic effect on lipid vesicle fusion o...
Titanium oxide is a biocompatible material that supports vesicle adhesion. Depending on experimental...
Titanium oxide is a biocompatible material that supports vesicle adhesion. Depending on experimental...
The fate of adsorbed lipid vesicles on solid supports depends on numerous experimental parameters an...
The fate of adsorbed lipid vesicles on solid supports depends on numerous experimental parameters an...
Titanium oxide is a biocompatible material that supports vesicle adhesion. Depending on experimental...
Supported lipid bilayers (SLBs) have been used extensively in a variety of biotechnology application...
This thesis is focused on the effects of osmotic pressure and transbilayer area asymmetry on the mor...
We have used the quartz crystal microbalance with dissipation monitoring (QCM-D) technique to invest...
Supported lipid bilayers (SLBs) are popular models of cell membranes with potential biotechnological...
In vivo, high protein and ion concentrations determine the preferred volumes of cells, organelles, a...
Supported lipid bilayers (SLBs) are popular models of cell membranes with potential biotechnological...
In vivo, high protein and ion concentrations determine the preferred volumes of cells, organelles, a...