To achieve spatial control of fibroblast cell attachment and spreading on a biocompatible polymer coating, the effect of poly(acrylamide) (PAAm) brushes with varied grafting density was investigated. The synthesis of the brushes was performed by surface-initiated atom transfer radical polymerization (SI-ATRP). Gold substrates were modified with binary self-assembled monolayers (SAMs) of an initiator and 16-mercaptohexadecanoic acid (MHDA) as an “inert” thiol to initiate the ATRP of AAm. By using different mixtures for the binary SAMs, a series of polymer brushes with varied grafting densities were prepared. The fractional coverage of surface bound initiator was determined by grazing incidence Fourier transform infrared (FTIR) spectroscop...
Material technology platforms able to modulate the communication with cells at the interface of biom...
We describe a method for grafting PEG-based polymer chains of variable surface density using a subst...
Thermoresponsive polymers are being used increasingly in cell culture applications due to their temp...
A method is presented to prevent microbial adhesion to solid surfaces exploiting the unique properti...
In this study, the fabrication, detailed characterization, and application of long-term stable micro...
Polymeric coatings which allow the effective control of biointerfacial interactions and cellular res...
A method is presented to prevent microbial adhesion to solid surfaces exploiting the unique properti...
A new versatile method for tuning the thickness of surface-tethered polymer brushes is introduced. I...
A method is presented to prevent microbial adhesion to solid surfaces exploiting the unique properti...
A method is presented to prevent microbial adhesion to solid surfaces exploiting the unique properti...
A method is presented to prevent microbial adhesion to solid surfaces exploiting the unique properti...
A method is presented to prevent microbial adhesion to solid surfaces exploiting the unique properti...
A variety of poly(N-isopropylacrylamide) (PIPAAm)-grafted surfaces have been reported for temperatur...
The term polymer brush refers to a well defined arrangement of polymer chains, which are tethered wi...
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...
We describe a method for grafting PEG-based polymer chains of variable surface density using a subst...
Thermoresponsive polymers are being used increasingly in cell culture applications due to their temp...
A method is presented to prevent microbial adhesion to solid surfaces exploiting the unique properti...
In this study, the fabrication, detailed characterization, and application of long-term stable micro...
Polymeric coatings which allow the effective control of biointerfacial interactions and cellular res...
A method is presented to prevent microbial adhesion to solid surfaces exploiting the unique properti...
A new versatile method for tuning the thickness of surface-tethered polymer brushes is introduced. I...
A method is presented to prevent microbial adhesion to solid surfaces exploiting the unique properti...
A method is presented to prevent microbial adhesion to solid surfaces exploiting the unique properti...
A method is presented to prevent microbial adhesion to solid surfaces exploiting the unique properti...
A method is presented to prevent microbial adhesion to solid surfaces exploiting the unique properti...
A variety of poly(N-isopropylacrylamide) (PIPAAm)-grafted surfaces have been reported for temperatur...
The term polymer brush refers to a well defined arrangement of polymer chains, which are tethered wi...
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...
We describe a method for grafting PEG-based polymer chains of variable surface density using a subst...
Thermoresponsive polymers are being used increasingly in cell culture applications due to their temp...