During development and tissue repair, progenitor cells are guided by both biochemical and biophysical cues of their microenvironment, including topographical signals. The topographical cues have been shown to play an important role in controlling the fate of cells. Systematic investigation of topographical structures with different geometries and sizes under the identical experimental conditions on the same chip will enhance the understanding of the role of shape and size in cell-topography interactions. A simple customizable multi-architecture chip (MARC) array is therefore developed to incorporate, on a single chip, distinct topographies of various architectural complexities, including both isotropic and anisotropic features, in nano- to ...
This thesis uses a nanostructured platform to characterise how nanoscale topography influences human...
Biophysical cues are an important tool for neuronal tissue engineering and regenerative medicine. Cu...
In this work, nanogroove dimensions as a design input parameter for neuronal differentiation and neu...
Efficient derivation of neural cells from human embryonic stem cells (hESCs) remains an unmet need f...
Engineered topographical manipulation, a paralleling approach with conventional biochemical cues, ha...
Biophysical factors such as anisotropic topography composed of micro/nanosized structures are import...
Engineered topographical manipulation, a paralleling approach with conventional biochemical cues, ha...
Various biophysical and biochemical factors are important for determining the fate of neural stem ce...
International audienceIn this paper we investigate the role of micropatterning and molecular coating...
In this study, we designed and manufactured a series of different microstructure topographical cues ...
Background and Aims. Human pluripotent stem cell- (PSC-) derived neurons are increasingly used in th...
Cell morphology and geometry affect cellular processes such as stem cell differentiation, suggesting...
Surface topography impacts on cell growth and differentiation, but it is not trivial to generate def...
Embryonic stem (ES) cell differentiation in specific cell lineages is a major issue in cell biology ...
Human pluripotent stem cells (hPSCs), including embryonic stem cells and induced pluripotent stem ce...
This thesis uses a nanostructured platform to characterise how nanoscale topography influences human...
Biophysical cues are an important tool for neuronal tissue engineering and regenerative medicine. Cu...
In this work, nanogroove dimensions as a design input parameter for neuronal differentiation and neu...
Efficient derivation of neural cells from human embryonic stem cells (hESCs) remains an unmet need f...
Engineered topographical manipulation, a paralleling approach with conventional biochemical cues, ha...
Biophysical factors such as anisotropic topography composed of micro/nanosized structures are import...
Engineered topographical manipulation, a paralleling approach with conventional biochemical cues, ha...
Various biophysical and biochemical factors are important for determining the fate of neural stem ce...
International audienceIn this paper we investigate the role of micropatterning and molecular coating...
In this study, we designed and manufactured a series of different microstructure topographical cues ...
Background and Aims. Human pluripotent stem cell- (PSC-) derived neurons are increasingly used in th...
Cell morphology and geometry affect cellular processes such as stem cell differentiation, suggesting...
Surface topography impacts on cell growth and differentiation, but it is not trivial to generate def...
Embryonic stem (ES) cell differentiation in specific cell lineages is a major issue in cell biology ...
Human pluripotent stem cells (hPSCs), including embryonic stem cells and induced pluripotent stem ce...
This thesis uses a nanostructured platform to characterise how nanoscale topography influences human...
Biophysical cues are an important tool for neuronal tissue engineering and regenerative medicine. Cu...
In this work, nanogroove dimensions as a design input parameter for neuronal differentiation and neu...