Creating biomimetic materials with tailored cellular responses upon engaging with cells is a core challenge in biomaterials, medical devices and tissue regenerative medicine. The cell machinery is enormously complex with precisely regulated cues present in space and time. Fine tuning the spacing between artificial bioactive cues on surfaces has shown to be a crucial design criterium for cells that interact with materials. By adding dynamicity and control over temporal positioning of ligands, stimuli-responsive surfaces of biomaterials and devices open up new opportunities to steer cellular fate and study cellular mechanisms. Supramolecular host-guest interactions are in itself dynamic in nature due to non-covalent interactions between molec...
Properly functioning cell-instructive biointerfaces are critical for healthy integration of biomedic...
The purpose of this highlight is to define the emerging field of bioactive surfaces. In recent years...
ABSTRACT: Due to the highly complex nature of the extracellular matrix (ECM), the design and impleme...
Creating biomimetic materials with tailored cellular responses upon engaging with cells is a core ch...
The cell machinery is very complex, precisely regulated by cues in space and time. Fine tuning bioac...
In complex organisms, cells are often dependent on their extracellular matrix (ECM) for structural i...
In complex organisms, cells are often dependent on their extracellular matrix (ECM) for structural i...
Biomimetic and stimuli-responsive cell-material interfaces are actively being developed to study and...
Biomimetic and stimuli-responsive cell-material interfaces are actively being developed to study and...
Biomimetic and stimuli-responsive cell-material interfaces are actively being developed to study and...
Biomimetic and stimuli-responsive cell-material interfaces are actively being developed to study and...
Biophysical and biochemical signals of material surfaces potently regulate cell functions and fate. ...
Cell adhesion is the first step of cell response to materials and the extracellular matrix (ECM), an...
Biophysical and biochemical signals of material surfaces potently regulate cell functions and fate. ...
Biophysical and biochemical signals of material surfaces potently regulate cell functions and fate. ...
Properly functioning cell-instructive biointerfaces are critical for healthy integration of biomedic...
The purpose of this highlight is to define the emerging field of bioactive surfaces. In recent years...
ABSTRACT: Due to the highly complex nature of the extracellular matrix (ECM), the design and impleme...
Creating biomimetic materials with tailored cellular responses upon engaging with cells is a core ch...
The cell machinery is very complex, precisely regulated by cues in space and time. Fine tuning bioac...
In complex organisms, cells are often dependent on their extracellular matrix (ECM) for structural i...
In complex organisms, cells are often dependent on their extracellular matrix (ECM) for structural i...
Biomimetic and stimuli-responsive cell-material interfaces are actively being developed to study and...
Biomimetic and stimuli-responsive cell-material interfaces are actively being developed to study and...
Biomimetic and stimuli-responsive cell-material interfaces are actively being developed to study and...
Biomimetic and stimuli-responsive cell-material interfaces are actively being developed to study and...
Biophysical and biochemical signals of material surfaces potently regulate cell functions and fate. ...
Cell adhesion is the first step of cell response to materials and the extracellular matrix (ECM), an...
Biophysical and biochemical signals of material surfaces potently regulate cell functions and fate. ...
Biophysical and biochemical signals of material surfaces potently regulate cell functions and fate. ...
Properly functioning cell-instructive biointerfaces are critical for healthy integration of biomedic...
The purpose of this highlight is to define the emerging field of bioactive surfaces. In recent years...
ABSTRACT: Due to the highly complex nature of the extracellular matrix (ECM), the design and impleme...