The field of biomaterial engineering is increasingly using high‐throughput approaches to investigate cell–material interactions. Because most material libraries are prepared as chips, immunofluorescence‐based read‐outs are used to uniquely image individual materials. This paper proposes to produce libraries of materials using a well‐based strategy in which each material is physically separated, and thus compatible with standard biochemical assays. In this work, the TopoWellPlate, a novel system to study cell–surface topography interaction in high‐throughput is presented. From a larger library of topographies, 87 uniquely defined bioactive surface topographies are identified, which induce a wide variety of cellular morphologies. Topographica...
We demonstrate the first 96-well plate platform to screen effects of micro- and nanotopographies on ...
It is increasingly recognized that material surface topography is able to evoke specific cellular re...
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...
The field of biomaterial engineering is increasingly using high‐throughput approaches to investigate...
The control of biomaterial surface topography is emerging as a tool to influence cells and tissues. ...
New high-throughput technologies for cell-material interaction studies provide researchers with powe...
High throughput biomaterials screening largely remains unexplored. The present study was an attempt ...
MasterThe study of surface topographic effect on cell behaviors is getting attention these days due ...
The technological advances in the field of material science coupled with the improved understanding ...
High-throughput screening (HTS) methods based on anisotropically topography gradients have been broa...
Surface topographies of materials considerably impact cellular behavior as they have been shown to a...
We demonstrate the first 96-well plate platform to screen effects of micro- and nanotopographies on ...
It is increasingly recognized that material surface topography is able to evoke specific cellular re...
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...
The field of biomaterial engineering is increasingly using high‐throughput approaches to investigate...
The control of biomaterial surface topography is emerging as a tool to influence cells and tissues. ...
New high-throughput technologies for cell-material interaction studies provide researchers with powe...
High throughput biomaterials screening largely remains unexplored. The present study was an attempt ...
MasterThe study of surface topographic effect on cell behaviors is getting attention these days due ...
The technological advances in the field of material science coupled with the improved understanding ...
High-throughput screening (HTS) methods based on anisotropically topography gradients have been broa...
Surface topographies of materials considerably impact cellular behavior as they have been shown to a...
We demonstrate the first 96-well plate platform to screen effects of micro- and nanotopographies on ...
It is increasingly recognized that material surface topography is able to evoke specific cellular re...
Cells can perceive complex mechanical cues across both the micro‐ and nanoscale which can influence ...