New high-throughput technologies for cell–material interaction studies provide researchers with powerful tools to speed up research in the field of biomaterial–cell interactions. However, sharing technologies is often difficult due to the necessity of specific knowledge and experiences. Engineered surfaces can elucidate effects of surface topography on cell behavior, which is of critical value for gaining control over cellular processes. Here, the translation of a gradient-based high-throughput cell screening approach for aligned nano/micro topographies interacting with cells is presented. An aligned topography 96-well plate is created by upscaling of highly specific gradient technology. The resulting cell culture dishes are compatible with...
A cell’s interaction with its extracellular environment is critical to tissue structure and function...
Nanoscale surface topography exerts profound effects on stem cell behaviour. Detailed knowledge of t...
Cell culture substrates for contact guidance studies can be developed through polymer processing to ...
New high-throughput technologies for cell–material interaction studies provide researchers with powe...
A novel approach was developed using PDMS-substrates with surface-aligned nanotopography gradients, ...
High -throughput screening (HTS) methods based on topography gradients or arrays have been extensive...
Cells are able to perceive complex mechanical cues across both the micro- and nanoscale which can in...
Cells can perceive complex mechanical cues across both the micro‐ and nanoscale which can influence ...
The field of biomaterial engineering is increasingly using high‐throughput approaches to investigate...
High-throughput screening (HTS) methods based on anisotropically topography gradients have been broa...
High-throughput screening (HTS) methods based on topography gradients or arrays have been extensivel...
The field of biomaterial engineering is increasingly using high‐throughput approaches to investigate...
A cell’s interaction with its extracellular environment is critical to tissue structure and function...
Nanoscale surface topography exerts profound effects on stem cell behaviour. Detailed knowledge of t...
Cell culture substrates for contact guidance studies can be developed through polymer processing to ...
New high-throughput technologies for cell–material interaction studies provide researchers with powe...
A novel approach was developed using PDMS-substrates with surface-aligned nanotopography gradients, ...
High -throughput screening (HTS) methods based on topography gradients or arrays have been extensive...
Cells are able to perceive complex mechanical cues across both the micro- and nanoscale which can in...
Cells can perceive complex mechanical cues across both the micro‐ and nanoscale which can influence ...
The field of biomaterial engineering is increasingly using high‐throughput approaches to investigate...
High-throughput screening (HTS) methods based on anisotropically topography gradients have been broa...
High-throughput screening (HTS) methods based on topography gradients or arrays have been extensivel...
The field of biomaterial engineering is increasingly using high‐throughput approaches to investigate...
A cell’s interaction with its extracellular environment is critical to tissue structure and function...
Nanoscale surface topography exerts profound effects on stem cell behaviour. Detailed knowledge of t...
Cell culture substrates for contact guidance studies can be developed through polymer processing to ...