Microstructured surfaces are widely used in cell culture experiments to understand the fundamentals of cell-material interactions by a spatial control of cell adhesion and spreading. Recent studies have documented that both substrate chemistry and topography are tightly correlated to cell behaviours. For this reason a wide range of techniques have been explored for obtaining in a simple and cheap way reproducible patterned substrates. This paper describes how to produce micropatterned substrates by a spatial microarrangment of chemically different domains, produced by plasma deposition. Cell-repulsive zones, obtained by plasma deposited PolyethyleneOxide-like (PEO-like) coating, were alternated with cell-adhesive tracks, namely plasma depos...
This article demonstrates that the micro-topography of the surface with respect to the pattern size ...
The processes of plasma deposition and treatment for micro- and nano-patterning biomedical polymers ...
Micropatterning is a powerful technique to custom-make and precisely control the surface topography ...
Microstructured surfaces are widely used in cell culture experiments to understand the fundamentals ...
Microstructured surfaces are widely used in cell culture experiments to understand the fundamentals ...
In this study, a combination of plasma and photolithographic processes for production of micro-struc...
Mixtures of diethyl glycol dimethyl ether vapors and argon were used to feed RF (13.56 MHz) glow dis...
Mixtures of diethyl glycol dimethyl ether vapors and argon were used to feed RF (13.56 MHz) glow dis...
Plasma processes of interest for tissue engineering, biosensors and related applications have been u...
In this study, microstructured surfaces are produced by a spatial arrangement of different functiona...
Cell-adhesive and cell-repulsive coatings have been plasma-deposited on poly(ethylene terephthalate)...
This work reports the design of and experimentation with a topographically patterned cell culture su...
This article demonstrates that the micro-topography of the surface with respect to the pattern size ...
A four-step soft lithographic process based on microcontact printing of organic monolayers, hyperbra...
The processes of plasma deposition and treatment for micro- and nano-patterning biomedical polymers ...
This article demonstrates that the micro-topography of the surface with respect to the pattern size ...
The processes of plasma deposition and treatment for micro- and nano-patterning biomedical polymers ...
Micropatterning is a powerful technique to custom-make and precisely control the surface topography ...
Microstructured surfaces are widely used in cell culture experiments to understand the fundamentals ...
Microstructured surfaces are widely used in cell culture experiments to understand the fundamentals ...
In this study, a combination of plasma and photolithographic processes for production of micro-struc...
Mixtures of diethyl glycol dimethyl ether vapors and argon were used to feed RF (13.56 MHz) glow dis...
Mixtures of diethyl glycol dimethyl ether vapors and argon were used to feed RF (13.56 MHz) glow dis...
Plasma processes of interest for tissue engineering, biosensors and related applications have been u...
In this study, microstructured surfaces are produced by a spatial arrangement of different functiona...
Cell-adhesive and cell-repulsive coatings have been plasma-deposited on poly(ethylene terephthalate)...
This work reports the design of and experimentation with a topographically patterned cell culture su...
This article demonstrates that the micro-topography of the surface with respect to the pattern size ...
A four-step soft lithographic process based on microcontact printing of organic monolayers, hyperbra...
The processes of plasma deposition and treatment for micro- and nano-patterning biomedical polymers ...
This article demonstrates that the micro-topography of the surface with respect to the pattern size ...
The processes of plasma deposition and treatment for micro- and nano-patterning biomedical polymers ...
Micropatterning is a powerful technique to custom-make and precisely control the surface topography ...