For the effective use of live cells in biomedicine as in vitro test systems or in biotechnology, non-invasive cell processing and characterisation are key elements. Thermoresponsive polymer coatings have been demonstrated to be highly beneficial for controlling the interaction of adherent cells through their cultivation support. However, the widespread application of these coatings is hampered by limitations in their adaptability to different cell types and because the full range of applications has not yet been fully explored. In the work presented here, we address these issues by focusing on three different aspects. With regard to the first aspect, by using well-defined laminar flow in a microchannel, a highly controllable and reproducibl...
This work describes the results of experimental study of the flow of soft objects (microgels) throug...
We describe the design of micropatterned surfaces for single cell studies, based on thermoresponsive...
Thermoresponsive poly(N-isopropylacrylamide) (PNIPAM) microgel films are shown to allow controlled d...
For the effective use of live cells in biomedicine as in vitro test systems or in biotechnology, non...
For the effective use of live cells in biomedicine as in vitro test systems or in biotechnology, non...
Cultivation of adherently growing cells in artificial environments is of utmost importance in medici...
Flechner M, Schaller J, Stahl M, et al. Adhesion, proliferation and detachment of various cell types...
Uhlig K, Wegener T, He J, et al. Patterned Thermoresponsive Microgel Coatings for Noninvasive Proces...
The control of cell adhesion is crucial in many procedures in cellular biotechnology. A thermo-respo...
This work reports the formation of thermoresponsive poly(<i>N</i>-isopropylacrylamide-<i>co</i>-sty...
Thermoresponsive polymer coatings allow the control of adhesion of cells on synthetic substrates. In...
Thermoresponsive polymer coatings allow the control of adhesion of cells on synthetic substrates. In...
We describe the design of micropatterned surfaces for single cell studies, based on thermoresponsive...
Microgels are solvent swollen, cross-linked polymer macromolecules of micro or nanoscale dimensions....
We describe the design of micropatterned surfaces for single cell studies, based on thermoresponsive...
This work describes the results of experimental study of the flow of soft objects (microgels) throug...
We describe the design of micropatterned surfaces for single cell studies, based on thermoresponsive...
Thermoresponsive poly(N-isopropylacrylamide) (PNIPAM) microgel films are shown to allow controlled d...
For the effective use of live cells in biomedicine as in vitro test systems or in biotechnology, non...
For the effective use of live cells in biomedicine as in vitro test systems or in biotechnology, non...
Cultivation of adherently growing cells in artificial environments is of utmost importance in medici...
Flechner M, Schaller J, Stahl M, et al. Adhesion, proliferation and detachment of various cell types...
Uhlig K, Wegener T, He J, et al. Patterned Thermoresponsive Microgel Coatings for Noninvasive Proces...
The control of cell adhesion is crucial in many procedures in cellular biotechnology. A thermo-respo...
This work reports the formation of thermoresponsive poly(<i>N</i>-isopropylacrylamide-<i>co</i>-sty...
Thermoresponsive polymer coatings allow the control of adhesion of cells on synthetic substrates. In...
Thermoresponsive polymer coatings allow the control of adhesion of cells on synthetic substrates. In...
We describe the design of micropatterned surfaces for single cell studies, based on thermoresponsive...
Microgels are solvent swollen, cross-linked polymer macromolecules of micro or nanoscale dimensions....
We describe the design of micropatterned surfaces for single cell studies, based on thermoresponsive...
This work describes the results of experimental study of the flow of soft objects (microgels) throug...
We describe the design of micropatterned surfaces for single cell studies, based on thermoresponsive...
Thermoresponsive poly(N-isopropylacrylamide) (PNIPAM) microgel films are shown to allow controlled d...