Material technology platforms able to modulate the communication with cells at the interface of biomaterials are being increasingly experimented on. Progress in the fabrication of supports is simultaneously introducing new surface modification strategies aimed at turning these supports from passive to active components in engineered preparations. Among these platforms, polymer brushes are arising not only as coatings determining the physical and (bio)chemical surface properties of biomaterials, but also as smart linkers between surfaces and biological cues. Their peculiar properties, especially when brushes are synthesized by “grafting-from” methods, enable closer mimicking of the complex and heterogeneous biological microenvironments. Insp...
While the bulk structure of a material determines its mechanical properties, its surface plays a key...
The development of biomedical devices, biosensors, and medical implants is critically dependent on t...
The development of biomedical devices, biosensors, and medical implants is critically dependent on t...
Material technology platforms able to modulate the communication with cells at the interface of biom...
Material technology platforms able to modulate the communication with cells at the interface of biom...
Material technology platforms able to modulate the communication with cells at the interface of biom...
Material technology platforms able to modulate the communication with cells at the interface of biom...
Material technology platforms able to modulate the communication with cells at the interface of biom...
Material technology platforms able to modulate the communication with cells at the interface of biom...
Material technology platforms able to modulate the communication with cells at the interface of biom...
Surface engineering of tailored materials with adjustable characteristics in relation to biological ...
Surface engineering of tailored materials with adjustable characteristics in relation to biological ...
Understanding and controlling the interactions between synthetic and biol. materials is of great imp...
The fabrication of polymer brushes via surface-initiated controlled radical polymerizations has prog...
The term polymer brush refers to a well defined arrangement of polymer chains, which are tethered wi...
While the bulk structure of a material determines its mechanical properties, its surface plays a key...
The development of biomedical devices, biosensors, and medical implants is critically dependent on t...
The development of biomedical devices, biosensors, and medical implants is critically dependent on t...
Material technology platforms able to modulate the communication with cells at the interface of biom...
Material technology platforms able to modulate the communication with cells at the interface of biom...
Material technology platforms able to modulate the communication with cells at the interface of biom...
Material technology platforms able to modulate the communication with cells at the interface of biom...
Material technology platforms able to modulate the communication with cells at the interface of biom...
Material technology platforms able to modulate the communication with cells at the interface of biom...
Material technology platforms able to modulate the communication with cells at the interface of biom...
Surface engineering of tailored materials with adjustable characteristics in relation to biological ...
Surface engineering of tailored materials with adjustable characteristics in relation to biological ...
Understanding and controlling the interactions between synthetic and biol. materials is of great imp...
The fabrication of polymer brushes via surface-initiated controlled radical polymerizations has prog...
The term polymer brush refers to a well defined arrangement of polymer chains, which are tethered wi...
While the bulk structure of a material determines its mechanical properties, its surface plays a key...
The development of biomedical devices, biosensors, and medical implants is critically dependent on t...
The development of biomedical devices, biosensors, and medical implants is critically dependent on t...