In this work, we evaluate the in vitro response of endothelial cells (EC) to variation in precisely-defined, micrometer to sub-micrometer scale topography on two different substrate materials, titanium (Ti) and silicon (Si). Both substrates possess identically-patterned surfaces composed of microfabricated, groove-based gratings with groove widths ranging from 0.5 to 50 µm, grating pitch twice the groove width, and groove depth of 1.3 µm. These specific materials are chosen due to their relevance for implantable microdevice applications, while grating-based patterns are chosen for the potential they afford for inducing elongated and aligned cellular morphologies reminiscent of the native endothelium. Using EA926 cells, a human EC variant, w...
Cell culture substrates for contact guidance studies can be developed through polymer processing to ...
Various micropatterns have been fabricated and used to regulate cell adhesion, morphology and functi...
Thrombogenicity remains a major issue in cardiovascular implants (CVIs). Complete surficial coverage...
In this work, we evaluate the in vitro response of endothelial cells (EC) to variation in precisely-...
Drug-eluting stents have revolutionized the field of interventional cardiology by reducing incidence...
The effect of grating textures on the alignment of cell shape and intracellular actin cytoskeleton h...
The effect of grating textures on the alignment of cell shape and intracellular actin cytoskeleton h...
The thrombogenecity of synthetic vascular grafts can be improved by applying a quiescent monolayer o...
International audienceIn many cell types, shape and function are intertwined. In vivo, vascular endo...
It is great challenge to generate multifunctionality of vascular grafts and stents to enable vascula...
Abstract The generation of micro- and nano-topography similar to those found in the extra cellular m...
In this work, well-aligned endothelial cell (EC) layers were prepared by culturing ECs on surfaces c...
<p>Each micrograph depicts a single field of view located at the boundary between the 0.5 µm and 50 ...
AbstractA topographically patterned substrate with stochastic surface order that closely mimics the ...
BackgroundEndothelialization of small diameter synthetic vascular grafts is a potential solution to ...
Cell culture substrates for contact guidance studies can be developed through polymer processing to ...
Various micropatterns have been fabricated and used to regulate cell adhesion, morphology and functi...
Thrombogenicity remains a major issue in cardiovascular implants (CVIs). Complete surficial coverage...
In this work, we evaluate the in vitro response of endothelial cells (EC) to variation in precisely-...
Drug-eluting stents have revolutionized the field of interventional cardiology by reducing incidence...
The effect of grating textures on the alignment of cell shape and intracellular actin cytoskeleton h...
The effect of grating textures on the alignment of cell shape and intracellular actin cytoskeleton h...
The thrombogenecity of synthetic vascular grafts can be improved by applying a quiescent monolayer o...
International audienceIn many cell types, shape and function are intertwined. In vivo, vascular endo...
It is great challenge to generate multifunctionality of vascular grafts and stents to enable vascula...
Abstract The generation of micro- and nano-topography similar to those found in the extra cellular m...
In this work, well-aligned endothelial cell (EC) layers were prepared by culturing ECs on surfaces c...
<p>Each micrograph depicts a single field of view located at the boundary between the 0.5 µm and 50 ...
AbstractA topographically patterned substrate with stochastic surface order that closely mimics the ...
BackgroundEndothelialization of small diameter synthetic vascular grafts is a potential solution to ...
Cell culture substrates for contact guidance studies can be developed through polymer processing to ...
Various micropatterns have been fabricated and used to regulate cell adhesion, morphology and functi...
Thrombogenicity remains a major issue in cardiovascular implants (CVIs). Complete surficial coverage...