Surface topographies are often discussed as an important parameter influencing basic cell behavior. Whereas most in vitro studies deal with microstructures with sharp edges, smooth, curved microscale topographies might be more relevant concerning in-vivo situations. Addressing the lack of highly defined surfaces with varying curvature, we present a topography chip system with 3D curved features of varying spacing, curvature radii as well as varying overall dimensions of curved surfaces. The CurvChip is produced by low-cost photolithography with thermal reflow, subsequent (repetitive) PDMS molding and hot embossing. The platform facilitates the systematic in-vitro investigation of the impact of substrate curvature on cell types like epitheli...
Cells can perceive complex mechanical cues across both the micro‐ and nanoscale which can influence ...
Recent evidence clearly shows that cells respond to various physical cues in their environments, gui...
New high-throughput technologies for cell–material interaction studies provide researchers with powe...
Surface topographies are often discussed as an important parameter influencing basic cell behavior. ...
This thesis describes the effect of geometries with controlled radius of curvature on cellular behav...
Cell culture substrates for contact guidance studies can be developed through polymer processing to ...
The use of material properties to guide cell behaviour is often utilised in the field of regenerativ...
Signals from the microenvironment around a cell are known to influence cell behavior. Material prope...
There have been considerable efforts to engineer three-dimensional (3D) microfluidic environments to...
Signals from the microenvironment around a cell are known to influence cell behavior. Material prope...
Surface topography impacts on cell growth and differentiation, but it is not trivial to generate def...
International audienceUnderstanding how topographical cues can control cell behavior is a major fund...
Cells are able to perceive complex mechanical cues across both the micro- and nanoscale which can in...
Studies have shown that pillars of specific dimensions and spatial arrangement can promote osteogeni...
In vivo cell niches are complex architectures that provide a wide range of biochemical and mechanica...
Cells can perceive complex mechanical cues across both the micro‐ and nanoscale which can influence ...
Recent evidence clearly shows that cells respond to various physical cues in their environments, gui...
New high-throughput technologies for cell–material interaction studies provide researchers with powe...
Surface topographies are often discussed as an important parameter influencing basic cell behavior. ...
This thesis describes the effect of geometries with controlled radius of curvature on cellular behav...
Cell culture substrates for contact guidance studies can be developed through polymer processing to ...
The use of material properties to guide cell behaviour is often utilised in the field of regenerativ...
Signals from the microenvironment around a cell are known to influence cell behavior. Material prope...
There have been considerable efforts to engineer three-dimensional (3D) microfluidic environments to...
Signals from the microenvironment around a cell are known to influence cell behavior. Material prope...
Surface topography impacts on cell growth and differentiation, but it is not trivial to generate def...
International audienceUnderstanding how topographical cues can control cell behavior is a major fund...
Cells are able to perceive complex mechanical cues across both the micro- and nanoscale which can in...
Studies have shown that pillars of specific dimensions and spatial arrangement can promote osteogeni...
In vivo cell niches are complex architectures that provide a wide range of biochemical and mechanica...
Cells can perceive complex mechanical cues across both the micro‐ and nanoscale which can influence ...
Recent evidence clearly shows that cells respond to various physical cues in their environments, gui...
New high-throughput technologies for cell–material interaction studies provide researchers with powe...