We describe the design of micropatterned surfaces for single cell studies, based on thermoresponsive polymer brushes. We show that brushes made of poly(N-isopropylacrylamide) grafted at high surface density display excellent protein and cell anti-adhesive properties. Such brushes are readily patterned at the micron scale via deep UV photolithography. A proper choice of the adhesive pattern shapes, combined with the temperature-dependent swelling properties of PNIPAM, allow us to use the polymer brush as a microactuator which induces cell detachment when the temperature is reduced below 32degC
Fabrication, characterization, and application of micropatterned one-component poly(di(ethylene gl...
xx, 126 pages : color illustrationsPolyU Library Call No.: [THS] LG51 .H577P ITC 2017 ChenThorough u...
Fabrication, characterization, and application of micropatterned one-component poly(di(ethylene gl...
We describe the design of micropatterned surfaces for single cell studies, based on thermoresponsive...
We describe the design of micropatterned surfaces for single cell studies, based on thermoresponsive...
We report the synthesis of thermo-responsive polymer brushes with Upper Critical Solution Temperatur...
Thin, thermoresponsive polymer coatings that allow to reversibly modulate cell adhesion and detachme...
We report the synthesis of thermo-responsive polymer brushes with Upper Critical Solution Temperatur...
Cultivation of adherently growing cells in artificial environments is of utmost importance in medici...
In this novel platform, a micropatterned polymer brush was obtained by grafting poly(poly(ethylene...
AbstractThe control of the cell microenvironment on model patterned substrates allows the systematic...
Fabrication, characterization, and application of micropatterned one-component poly(di(ethylene gl...
Fabrication, characterization, and application of micropatterned one-component poly(di(ethylene gl...
Fabrication, characterization, and application of micropatterned one-component poly(di(ethylene gl...
Fabrication, characterization, and application of micropatterned one-component poly(di(ethylene gl...
Fabrication, characterization, and application of micropatterned one-component poly(di(ethylene gl...
xx, 126 pages : color illustrationsPolyU Library Call No.: [THS] LG51 .H577P ITC 2017 ChenThorough u...
Fabrication, characterization, and application of micropatterned one-component poly(di(ethylene gl...
We describe the design of micropatterned surfaces for single cell studies, based on thermoresponsive...
We describe the design of micropatterned surfaces for single cell studies, based on thermoresponsive...
We report the synthesis of thermo-responsive polymer brushes with Upper Critical Solution Temperatur...
Thin, thermoresponsive polymer coatings that allow to reversibly modulate cell adhesion and detachme...
We report the synthesis of thermo-responsive polymer brushes with Upper Critical Solution Temperatur...
Cultivation of adherently growing cells in artificial environments is of utmost importance in medici...
In this novel platform, a micropatterned polymer brush was obtained by grafting poly(poly(ethylene...
AbstractThe control of the cell microenvironment on model patterned substrates allows the systematic...
Fabrication, characterization, and application of micropatterned one-component poly(di(ethylene gl...
Fabrication, characterization, and application of micropatterned one-component poly(di(ethylene gl...
Fabrication, characterization, and application of micropatterned one-component poly(di(ethylene gl...
Fabrication, characterization, and application of micropatterned one-component poly(di(ethylene gl...
Fabrication, characterization, and application of micropatterned one-component poly(di(ethylene gl...
xx, 126 pages : color illustrationsPolyU Library Call No.: [THS] LG51 .H577P ITC 2017 ChenThorough u...
Fabrication, characterization, and application of micropatterned one-component poly(di(ethylene gl...