Topographical features on a substrate can greatly influence stem cell fate through contact guidance. While the response of stem cells to topography at the nano-, micro-, and meso-scale has been studied extensively, little is known about the interplay of surface features acting simultaneously across multiple length scales. A limiting factor has been the availability of high throughput methods for probing the potentially unlimited parameter space. Herein we describe a facile method for rapidly generating a hierarchy of multi-scaled topographical features on polymer substrates via the self-assembly of surfactants at the monomer/water interface. Having previously assembled polydimethylsiloxane-diacrylate (PDMS-DA) into surfaces resembling multi...
It is increasingly recognized that material surface topography is able to evoke specific cellular re...
Polymerized high internal phase emulsion (polyHIPE) foams are extremely versatile materials for inve...
Polymerized high internal phase emulsion (polyHIPE) foams are extremely versatile materials for inve...
The surface nanotopography of polymer scaffolds is one of the most critical factors affecting cell p...
In tissue engineering, the nanoscale topography of the substrate is important, because transplanted ...
The differentiation of stem cells can be modulated by physical factors such as the micro- and nano-t...
Mechanical stimuli are an integrant component of the microenvironment controlling the differentiatio...
Mechanical stimuli are an integrant component of the microenvironment controlling the differentiatio...
This study reports how extracellular matrix (ECM) ligand self-assembly on biomaterial surfaces and t...
This study reports how extracellular matrix (ECM) ligand self-assembly on biomaterial surfaces and t...
In vivo cell niches are complex architectures that provide a wide range of biochemical and mechanica...
Much attention has been paid to understanding the individual effects of surface chemistry or topogra...
In vivo cell niches are complex architectures that provide a wide range of biochemical and mechanica...
In vivo cell niches are complex architectures that provide a wide range of biochemical and mechanica...
In vivo cell niches are complex architectures that provide a wide range of biochemical and mechanica...
It is increasingly recognized that material surface topography is able to evoke specific cellular re...
Polymerized high internal phase emulsion (polyHIPE) foams are extremely versatile materials for inve...
Polymerized high internal phase emulsion (polyHIPE) foams are extremely versatile materials for inve...
The surface nanotopography of polymer scaffolds is one of the most critical factors affecting cell p...
In tissue engineering, the nanoscale topography of the substrate is important, because transplanted ...
The differentiation of stem cells can be modulated by physical factors such as the micro- and nano-t...
Mechanical stimuli are an integrant component of the microenvironment controlling the differentiatio...
Mechanical stimuli are an integrant component of the microenvironment controlling the differentiatio...
This study reports how extracellular matrix (ECM) ligand self-assembly on biomaterial surfaces and t...
This study reports how extracellular matrix (ECM) ligand self-assembly on biomaterial surfaces and t...
In vivo cell niches are complex architectures that provide a wide range of biochemical and mechanica...
Much attention has been paid to understanding the individual effects of surface chemistry or topogra...
In vivo cell niches are complex architectures that provide a wide range of biochemical and mechanica...
In vivo cell niches are complex architectures that provide a wide range of biochemical and mechanica...
In vivo cell niches are complex architectures that provide a wide range of biochemical and mechanica...
It is increasingly recognized that material surface topography is able to evoke specific cellular re...
Polymerized high internal phase emulsion (polyHIPE) foams are extremely versatile materials for inve...
Polymerized high internal phase emulsion (polyHIPE) foams are extremely versatile materials for inve...