Cell–substrate interaction is a process influenced by severalvariables. The topography, the chemical and mechanicalproperties of a biomaterial can influence significantly specificintracellular signalling cascades that exert control over adhe-sion, proliferation, self-renewal, migration and cell differentia-tion. Through a bioinformatics approach, we evaluated thepathways that are modulated by topographies on differentbiomaterials. Nanofibers are biomaterials with a topographythat well mimics naturally occurring extracellular environmentable to establish symbiotic-like relationships with the cells. In-teractions with the contact area of the cells and the focalcontacts represent a link between the extracellular matrix andthe cytoskeleton, cap...
Mastering the interaction between cells and extracellular environment is a fundamental prerequisite ...
The fundamental understanding of cell-material interactions plays a central role in the development ...
Regulation of cell behavior in response to nanoscale features has been the focus of much research in...
Cell–substrate interaction is a process influenced by severalvariables. The topography, the chemical...
This work of thesis aims to investigate the role of biophysical signals expressed by material surfac...
Surface interaction at the biomaterial�cell interface is essential for a variety of cellular funct...
In their natural environment, cells are constantly exposed to a cohort of biochemical and biophysica...
Surface properties of biomaterials, such as chemistry and morphology, have a major role in modulatin...
Surface properties of biomaterials, such as chemistry and morphology, have a major role in modulatin...
Surface properties of biomaterials, such as chemistry and morphology, have a major role in modulatin...
Mastering the interaction between cells and extracellular environment is a fundamental prerequisite ...
Complexe materiaalgrensvlakken zijn ontworpen voor het exploreren van cel-materiaal interactions om ...
The interface between cells and materials is a dynamic and complex environment where cells in contac...
Polymers have gained a remarkable place in the biomedical fi eld as materials for the fabrication o...
Control of cell–surface interaction is necessary for biomaterial applications such as cell sheets, i...
Mastering the interaction between cells and extracellular environment is a fundamental prerequisite ...
The fundamental understanding of cell-material interactions plays a central role in the development ...
Regulation of cell behavior in response to nanoscale features has been the focus of much research in...
Cell–substrate interaction is a process influenced by severalvariables. The topography, the chemical...
This work of thesis aims to investigate the role of biophysical signals expressed by material surfac...
Surface interaction at the biomaterial�cell interface is essential for a variety of cellular funct...
In their natural environment, cells are constantly exposed to a cohort of biochemical and biophysica...
Surface properties of biomaterials, such as chemistry and morphology, have a major role in modulatin...
Surface properties of biomaterials, such as chemistry and morphology, have a major role in modulatin...
Surface properties of biomaterials, such as chemistry and morphology, have a major role in modulatin...
Mastering the interaction between cells and extracellular environment is a fundamental prerequisite ...
Complexe materiaalgrensvlakken zijn ontworpen voor het exploreren van cel-materiaal interactions om ...
The interface between cells and materials is a dynamic and complex environment where cells in contac...
Polymers have gained a remarkable place in the biomedical fi eld as materials for the fabrication o...
Control of cell–surface interaction is necessary for biomaterial applications such as cell sheets, i...
Mastering the interaction between cells and extracellular environment is a fundamental prerequisite ...
The fundamental understanding of cell-material interactions plays a central role in the development ...
Regulation of cell behavior in response to nanoscale features has been the focus of much research in...