The safe integration of cardiovascular devices requires the sustainable coverage of their luminal surface by endothelial cells (ECs). The engineering of active surface textures has the potential to coordinate cellular adhesion and migration under the action of hemodynamic forces. We define a paradigm to rationally design textures maximizing EC activities as a function of the applied stresses. This is based on harnessing the adhesions established by ECs through fine-tuning of the vertical extend of the underlying surface nanotopography
It is great challenge to generate multifunctionality of vascular grafts and stents to enable vascula...
This project investigated the technical feasibility of creating an adherent layer of endothelial cel...
Through the interaction with topographical features, endothelial cells tune their ability to populat...
ABSTRACT: The safe integration of cardiovascular devices requires the sustainable coverage of their ...
Endothelialization of cardiovascular implants, such as ventricular assist devices, is a promising ap...
International audienceIn many cell types, shape and function are intertwined. In vivo, vascular endo...
Endothelialization strategies aim at protecting the surface of cardiovascular devices upon their int...
In this work, well-aligned endothelial cell (EC) layers were prepared by culturing ECs on surfaces c...
The vascular system, one of the bases of life mechanisms, connects tissues and organs by means of bl...
Endothelialization of therapeutic cardiovascular implants is essential for their intravascular hemoc...
PhDA promising approach to overcome thrombus and neointima formation on vascular grafts is to create...
AbstractA topographically patterned substrate with stochastic surface order that closely mimics the ...
The effect of grating textures on the alignment of cell shape and intracellular actin cytoskeleton h...
Thrombogenicity remains a major issue in cardiovascular implants (CVIs). Complete surficial coverage...
Endothelial cells are known to respond directly to their physical environment, with morphological ch...
It is great challenge to generate multifunctionality of vascular grafts and stents to enable vascula...
This project investigated the technical feasibility of creating an adherent layer of endothelial cel...
Through the interaction with topographical features, endothelial cells tune their ability to populat...
ABSTRACT: The safe integration of cardiovascular devices requires the sustainable coverage of their ...
Endothelialization of cardiovascular implants, such as ventricular assist devices, is a promising ap...
International audienceIn many cell types, shape and function are intertwined. In vivo, vascular endo...
Endothelialization strategies aim at protecting the surface of cardiovascular devices upon their int...
In this work, well-aligned endothelial cell (EC) layers were prepared by culturing ECs on surfaces c...
The vascular system, one of the bases of life mechanisms, connects tissues and organs by means of bl...
Endothelialization of therapeutic cardiovascular implants is essential for their intravascular hemoc...
PhDA promising approach to overcome thrombus and neointima formation on vascular grafts is to create...
AbstractA topographically patterned substrate with stochastic surface order that closely mimics the ...
The effect of grating textures on the alignment of cell shape and intracellular actin cytoskeleton h...
Thrombogenicity remains a major issue in cardiovascular implants (CVIs). Complete surficial coverage...
Endothelial cells are known to respond directly to their physical environment, with morphological ch...
It is great challenge to generate multifunctionality of vascular grafts and stents to enable vascula...
This project investigated the technical feasibility of creating an adherent layer of endothelial cel...
Through the interaction with topographical features, endothelial cells tune their ability to populat...