Methods for generating surface-immobilized biomolecular patterns and gradients have provided invaluable insight into the molecular basis of numerous complex biological processes. Herein, we describe the development of a general, photochemical method for creating biointerface substrates presenting single- and multi-component biomolecular patterns and gradients. In our approach, the generation of a light density gradient across a photoactive benzophenone monolayer on glass results in covalent attachment of solution-phase biomolecules onto the surface. This simple, direct and molecularly general approach was used to generate surface-immobilized biomolecular gradient substrates for proof-of-principle biomolecular photopatterning demonstration...
Cell adhesion to biomaterials is an important prerequisite of tissue cells in successful incorporati...
The development of surfaces that have switchable properties, also known as smart surfaces, have been...
Techniques that enable the creation of instructive biomaterials have the potential to advance our un...
<p>Glass slides chemically-modified to present benzophenone moieties were immersed in a solution con...
Recent surface chemical approaches to physically modeling the extra-cellular matrix (ECM) have provi...
The interactions among cells, biological molecules and surfaces have long been the subject of much s...
AbstractBackground: Bioactive molecules that are covalently immobilized in patterns on surfaces have...
Techniques that enable the creation of instructive biomaterials have the potential to advance our un...
Cell adhesion is the first step of cell response to materials and the extracellular matrix (ECM), an...
Understanding and controlling interactions between cells and material surfaces are essential to desi...
AbstractBackground: Bioactive molecules that are covalently immobilized in patterns on surfaces have...
Surface engineering provides a powerful tool to create model systems to investigate the complex inte...
Surface engineering provides a powerful tool to create model systems to investigate the complex inte...
Engineered in-vitro platforms or patterned biomaterials enabled a wide range of studies that led a d...
The development of surfaces that have switchable properties, also known as smart surfaces, have been...
Cell adhesion to biomaterials is an important prerequisite of tissue cells in successful incorporati...
The development of surfaces that have switchable properties, also known as smart surfaces, have been...
Techniques that enable the creation of instructive biomaterials have the potential to advance our un...
<p>Glass slides chemically-modified to present benzophenone moieties were immersed in a solution con...
Recent surface chemical approaches to physically modeling the extra-cellular matrix (ECM) have provi...
The interactions among cells, biological molecules and surfaces have long been the subject of much s...
AbstractBackground: Bioactive molecules that are covalently immobilized in patterns on surfaces have...
Techniques that enable the creation of instructive biomaterials have the potential to advance our un...
Cell adhesion is the first step of cell response to materials and the extracellular matrix (ECM), an...
Understanding and controlling interactions between cells and material surfaces are essential to desi...
AbstractBackground: Bioactive molecules that are covalently immobilized in patterns on surfaces have...
Surface engineering provides a powerful tool to create model systems to investigate the complex inte...
Surface engineering provides a powerful tool to create model systems to investigate the complex inte...
Engineered in-vitro platforms or patterned biomaterials enabled a wide range of studies that led a d...
The development of surfaces that have switchable properties, also known as smart surfaces, have been...
Cell adhesion to biomaterials is an important prerequisite of tissue cells in successful incorporati...
The development of surfaces that have switchable properties, also known as smart surfaces, have been...
Techniques that enable the creation of instructive biomaterials have the potential to advance our un...