This paper reports a strategy that uses microfluidic networks to pattern self-assembled monolayers with gradient microislands for the attachment of individual cells. A microfluidic network is first used to pattern a monolayer into square regions that present maleimide groups and then used to flow a solution having a gradient of the cell adhesion peptide Arg-Gly-Asp over the substrate. In this way, the surface is patterned with microislands approximately 33 x 33 micrometers in size and each having a defined gradient of immobilized cell adhesion ligand. B16F10 cells were allowed to attach to the patterned islands and were found to display a nonuniform distribution of cytoskeletal structures in response to the gradient of adhesion ligand. This...
AbstractBackground: Bioactive molecules that are covalently immobilized in patterns on surfaces have...
In vivo cells reside in a complex extracellular matrix (ECM) that presents spatially distributed bio...
Microfluidics, the science of engineering fluid streams at the micrometer scale, offers unique tools...
This paper reports a strategy that uses microfluidic networks to pattern self-assembled monolayers w...
Mammalian and bacterial cells live in gradients. Soluble and immobilized gradients of signaling prot...
In vivo cell migration and location are orchestrally guided by soluble and bound chemical gradients....
In vivo cell migration and location are orchestrally guided by soluble and bound chemical gradients....
Cell migration is a cellular fate process essential for embryogenesis, tissue regeneration and wound...
Biomolecular concentration gradients play relevant roles in many biological phenomena including deve...
We describe the use of a microfluidic device to micropattern cells in a microchannel and investigate...
AbstractBackground: Bioactive molecules that are covalently immobilized in patterns on surfaces have...
The binding interaction between specialized proteins within the extracellular matrix (ECM) and speci...
Cells respond to adhesive and soluble cues in the extracellular matrix by modulating their behaviour...
Surface gradients can be used to perform a wide range of functions and represent a novel experimenta...
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...
In vivo cells reside in a complex extracellular matrix (ECM) that presents spatially distributed bio...
Microfluidics, the science of engineering fluid streams at the micrometer scale, offers unique tools...
This paper reports a strategy that uses microfluidic networks to pattern self-assembled monolayers w...
Mammalian and bacterial cells live in gradients. Soluble and immobilized gradients of signaling prot...
In vivo cell migration and location are orchestrally guided by soluble and bound chemical gradients....
In vivo cell migration and location are orchestrally guided by soluble and bound chemical gradients....
Cell migration is a cellular fate process essential for embryogenesis, tissue regeneration and wound...
Biomolecular concentration gradients play relevant roles in many biological phenomena including deve...
We describe the use of a microfluidic device to micropattern cells in a microchannel and investigate...
AbstractBackground: Bioactive molecules that are covalently immobilized in patterns on surfaces have...
The binding interaction between specialized proteins within the extracellular matrix (ECM) and speci...
Cells respond to adhesive and soluble cues in the extracellular matrix by modulating their behaviour...
Surface gradients can be used to perform a wide range of functions and represent a novel experimenta...
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...
In vivo cells reside in a complex extracellular matrix (ECM) that presents spatially distributed bio...
Microfluidics, the science of engineering fluid streams at the micrometer scale, offers unique tools...