Mammalian cells have been widely shown to respond to nano-and microtopography that mimics the extracellular matrix. Synthetic nano-and micron-sized structures are therefore of great interest in the field of tissue engineering, where polymers are particularly attractive due to excellent biocompatibility and versatile fabrication methods. Ordered arrays of polymeric pillars provide a controlled topographical environment to study and manipulate cells, but processing methods are typically either optimized for the nano-or microscale. Here, we demonstrate polymeric nanopillar (NP) fabrication using 3D direct laser writing (3D DLW), which offers a rapid prototyping across both size regimes. The NPs are interfaced with NIH3T3 cells and the effect o...
The interface between living cells and artificial surfaces is highly relevant for biomedical applica...
In this review, we present the most recent and relevant research that has been done regarding the fa...
Three-dimensional (3D) thermal drawing at nanoscale as a novel rapid prototyping method was demonstr...
Micro and nanoscale topographical structuring of biomaterial surfaces has been a valuable tool for i...
Over the last few decades, stereolithography has emerged as a leading additive manufacturing techniq...
The interaction of cells with nanoscale topography has proven to be an important modality in control...
Micro and nanopatterned surfaces are powerful experimental platforms for investigating the mechanism...
Fabricating large areas of geometrically complex and precisely controlled topographies is required f...
In vitro cell culture platforms are important tools for the study of neural functions in health and ...
In this dissertation, the fabrication, characterization, and application examples of 3D multicompone...
Herein we exploit direct laser writing as a means to fabricate negative masters for the generation o...
The surface topography of biomaterials can have an important impact on cellular adhesion, growth and...
Abstract Polymer nanopillars (40-80 nm in diameter and 100 nm in pitch) were fabricated at high dens...
The fabrication of complex, reproducible, and accurate micro-and nanostructured interfaces that impe...
International audienceThe realization of 3D architectures for the study of cell growth, proliferatio...
The interface between living cells and artificial surfaces is highly relevant for biomedical applica...
In this review, we present the most recent and relevant research that has been done regarding the fa...
Three-dimensional (3D) thermal drawing at nanoscale as a novel rapid prototyping method was demonstr...
Micro and nanoscale topographical structuring of biomaterial surfaces has been a valuable tool for i...
Over the last few decades, stereolithography has emerged as a leading additive manufacturing techniq...
The interaction of cells with nanoscale topography has proven to be an important modality in control...
Micro and nanopatterned surfaces are powerful experimental platforms for investigating the mechanism...
Fabricating large areas of geometrically complex and precisely controlled topographies is required f...
In vitro cell culture platforms are important tools for the study of neural functions in health and ...
In this dissertation, the fabrication, characterization, and application examples of 3D multicompone...
Herein we exploit direct laser writing as a means to fabricate negative masters for the generation o...
The surface topography of biomaterials can have an important impact on cellular adhesion, growth and...
Abstract Polymer nanopillars (40-80 nm in diameter and 100 nm in pitch) were fabricated at high dens...
The fabrication of complex, reproducible, and accurate micro-and nanostructured interfaces that impe...
International audienceThe realization of 3D architectures for the study of cell growth, proliferatio...
The interface between living cells and artificial surfaces is highly relevant for biomedical applica...
In this review, we present the most recent and relevant research that has been done regarding the fa...
Three-dimensional (3D) thermal drawing at nanoscale as a novel rapid prototyping method was demonstr...