We show for the first time the possibility of using networks of amyloid fibrils, adsorbed to solid supports and with plasma polymer coatings, for the fabrication of chemically homogeneous surfaces with well-defined nanoscale surface features reminiscent of the topography of the extracellular matrix. The robust nature of the fibrils allows them to withstand the plasma polymer deposition conditions used with no obvious deleterious effect, thus enabling the underlying fibril topography to be replicated at the polymer surface. This effect was seen despite the polymer coating thickness being an order of magnitude greater than the fibril network. The in vitro culture of fibroblast cells on these surfaces resulted in increased attachment and sprea...
Surface nanotopograpy has been recognized as an important regulator of cellular responses including ...
In this study, a combination of plasma and photolithographic processes for production of micro-struc...
It is thought that by understanding how cells respond to topography, that better tissue engineering ...
We show for the first time the possibility of using networks of amyloid fibrils, adsorbed to solid s...
Networks of nanoscale fibrous coatings made from self-assembled peptides are promising candidates fo...
Networks of nanoscale fibrous coatings made from self-assembled peptides are promising candidates fo...
Within the area of biomaterials research, the ability to tailor a materials surface chemistry while ...
Fibrous networks assembled from synthetic peptides are promising candidates for biomimetic cell cult...
Nanostructured surfaces presenting chemical or topographical patterns are now being increasingly dev...
In the cell microenvironment, cells experience simultaneously a range of chemical, topographical and...
Microstructured surfaces are widely used in cell culture experiments to understand the fundamentals ...
Cell-adhesive and cell-repulsive coatings have been plasma-deposited on poly(ethylene terephthalate)...
In this study, microstructured surfaces are produced by a spatial arrangement of different functiona...
PURPOSE: It is known that surface nanotopography influences cell adhesion and differentiation. Our a...
In general, there is a need for passivation of nanopatterned biomaterial surfaces if cells are inten...
Surface nanotopograpy has been recognized as an important regulator of cellular responses including ...
In this study, a combination of plasma and photolithographic processes for production of micro-struc...
It is thought that by understanding how cells respond to topography, that better tissue engineering ...
We show for the first time the possibility of using networks of amyloid fibrils, adsorbed to solid s...
Networks of nanoscale fibrous coatings made from self-assembled peptides are promising candidates fo...
Networks of nanoscale fibrous coatings made from self-assembled peptides are promising candidates fo...
Within the area of biomaterials research, the ability to tailor a materials surface chemistry while ...
Fibrous networks assembled from synthetic peptides are promising candidates for biomimetic cell cult...
Nanostructured surfaces presenting chemical or topographical patterns are now being increasingly dev...
In the cell microenvironment, cells experience simultaneously a range of chemical, topographical and...
Microstructured surfaces are widely used in cell culture experiments to understand the fundamentals ...
Cell-adhesive and cell-repulsive coatings have been plasma-deposited on poly(ethylene terephthalate)...
In this study, microstructured surfaces are produced by a spatial arrangement of different functiona...
PURPOSE: It is known that surface nanotopography influences cell adhesion and differentiation. Our a...
In general, there is a need for passivation of nanopatterned biomaterial surfaces if cells are inten...
Surface nanotopograpy has been recognized as an important regulator of cellular responses including ...
In this study, a combination of plasma and photolithographic processes for production of micro-struc...
It is thought that by understanding how cells respond to topography, that better tissue engineering ...