Mimicking the in vivo microenvironment of cells is a challenging task in engineering in vitro cell models. Surface functionalization is one of the key components providing biochemical cues to regulate the interaction between cells and their substrate. In this study, two different approaches yield biofunctional surface patterns on thermoformed polymer films. The first strategy based on maskless projection lithography enables the creation of grayscale patterns of biological ligands with a resolution of 7.5 μm in different shapes on a protein layer adsorbed on a polymer film. In the second strategy, polymer films are micropatterned with different functional groups via chemical vapor deposition polymerization. After thermoforming, both types of...
Two simple approaches to build up micropatterned functionalized polymer films are reported here. Bot...
Design of 2D and 3D micropatterned materials is highly important for printing technology, microfluid...
Polymers are widely used in bioengineering for a wide range of applications, including substrates fo...
Mimicking the in vivo microenvironment of cells is a challenging task in engineering in vitro cell m...
The microenvironment of cells in vivo is defined by spatiotemporal patterns of chemical and biophysi...
Creating patterns of biomolecules and cells has been applied widely in many fields associated with t...
The extracellular matrix is an important regulator of cell function. Environmental cues existing in ...
We present a fabrication process for the production of 3-dimensional micro-structured polymeric film...
The functionalization of biomaterials substrates used for cell culture is gearing towards an increas...
The interaction of biological systems with synthetic material surfaces is an important issue for man...
Bioadhesive micropatterns, capable of laterally confining cells to a 2D lattice, have proven effecti...
We present a method to produce micropatterns of cells on tissue culture substrates. A network of dee...
A four-step soft lithographic process based on microcontact printing of organic monolayers, hyperbra...
In this study, microstructured surfaces are produced by a spatial arrangement of different functiona...
Design of 2D and 3D micropatterned materials is highly important for printing technology, microfluid...
Two simple approaches to build up micropatterned functionalized polymer films are reported here. Bot...
Design of 2D and 3D micropatterned materials is highly important for printing technology, microfluid...
Polymers are widely used in bioengineering for a wide range of applications, including substrates fo...
Mimicking the in vivo microenvironment of cells is a challenging task in engineering in vitro cell m...
The microenvironment of cells in vivo is defined by spatiotemporal patterns of chemical and biophysi...
Creating patterns of biomolecules and cells has been applied widely in many fields associated with t...
The extracellular matrix is an important regulator of cell function. Environmental cues existing in ...
We present a fabrication process for the production of 3-dimensional micro-structured polymeric film...
The functionalization of biomaterials substrates used for cell culture is gearing towards an increas...
The interaction of biological systems with synthetic material surfaces is an important issue for man...
Bioadhesive micropatterns, capable of laterally confining cells to a 2D lattice, have proven effecti...
We present a method to produce micropatterns of cells on tissue culture substrates. A network of dee...
A four-step soft lithographic process based on microcontact printing of organic monolayers, hyperbra...
In this study, microstructured surfaces are produced by a spatial arrangement of different functiona...
Design of 2D and 3D micropatterned materials is highly important for printing technology, microfluid...
Two simple approaches to build up micropatterned functionalized polymer films are reported here. Bot...
Design of 2D and 3D micropatterned materials is highly important for printing technology, microfluid...
Polymers are widely used in bioengineering for a wide range of applications, including substrates fo...