The ability to control protein and cell positioning on a microscopic scale is crucial in many biomedical applications, such as single cell studies. We have developed and investigated the grafting of poly(ethylene glycol) (PEG) brushes onto poly(D,L-lactide-co-glycolide) (PLGA) thin films, which can be micro-patterned by exploiting their spontaneous dewetting on top of polystyrene (PS) films. Dense PEG brushes with excellent protein repellence were achieved on PLGA by using cloud point grafting conditions, and selective adsorption of proteins on the micro-patterned substrates was achieved by exploiting the different affinity protein adsorption onto the PEG brushes and the PS holes. PEG-grafted PLGA films showed better resistance against spon...
Grafting of poly(ethylene glycol) (PEG) is a common strategy for reducing nonspecific interactions o...
Surface modification of biomaterials with polymer chains has attracted great attention because of th...
We present a new grafting-to method for resistant "non-fouling" poly(ethylene glycol) brushes, which...
The ability to control protein and cell positioning on a microscopic scale is crucial in many biomed...
In this novel platform, a micropatterned polymer brush was obtained by grafting poly(poly(ethylene...
A simple technique for patterning proteins utilizing dewetted polystyrene (PS) droplets is demonstra...
The ability to control protein and cell positioning on a microscopic scale is crucial in many biomed...
We present a simple, direct soft lithographic method to fabricate poly(ethylene glycol) (PEG) micros...
The ability to control protein and cell positioning on a microscopic scale is crucial in many biomed...
This article presents a new technique to fabricate patterns of functional molecules surrounded by a ...
Creating patterns of biomolecules and cells has been applied widely in many fields associated with t...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Chemical Engineering, 2004.Includes...
Polyethylene glycol (PEG) brushes are very effective at controlling non-specific deposition of biolo...
This work used a hydrophobic polymer pair, i.e. polystyrene (PS) and polyisoprene (PI), to construct...
Tethered polymer chains that are grafted to a solid substrate by one chain end (polymer brushes) ma...
Grafting of poly(ethylene glycol) (PEG) is a common strategy for reducing nonspecific interactions o...
Surface modification of biomaterials with polymer chains has attracted great attention because of th...
We present a new grafting-to method for resistant "non-fouling" poly(ethylene glycol) brushes, which...
The ability to control protein and cell positioning on a microscopic scale is crucial in many biomed...
In this novel platform, a micropatterned polymer brush was obtained by grafting poly(poly(ethylene...
A simple technique for patterning proteins utilizing dewetted polystyrene (PS) droplets is demonstra...
The ability to control protein and cell positioning on a microscopic scale is crucial in many biomed...
We present a simple, direct soft lithographic method to fabricate poly(ethylene glycol) (PEG) micros...
The ability to control protein and cell positioning on a microscopic scale is crucial in many biomed...
This article presents a new technique to fabricate patterns of functional molecules surrounded by a ...
Creating patterns of biomolecules and cells has been applied widely in many fields associated with t...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Chemical Engineering, 2004.Includes...
Polyethylene glycol (PEG) brushes are very effective at controlling non-specific deposition of biolo...
This work used a hydrophobic polymer pair, i.e. polystyrene (PS) and polyisoprene (PI), to construct...
Tethered polymer chains that are grafted to a solid substrate by one chain end (polymer brushes) ma...
Grafting of poly(ethylene glycol) (PEG) is a common strategy for reducing nonspecific interactions o...
Surface modification of biomaterials with polymer chains has attracted great attention because of th...
We present a new grafting-to method for resistant "non-fouling" poly(ethylene glycol) brushes, which...