In this study, nanopatterned crosslinked films of collagen Type I were seeded with human microvascular endothelial cells and tested for their suitability for vascular tissue engineering. Since the films will be rolled into tubes with concentric layers of collagen, nutrient transfer through the collagen films is quite crucial. Molecular diffusivity through the collagen films, cell viability, cell proliferation and cell retention following shear stress were studied. Cells were seeded onto linearly nanogrooved films (groove widths of 332.5, 500 and 650 nm), with the grooves aligned in the direction of flow. The nanopatterns did not affect cell proliferation or initial cell alignment; however, they significantly affected cell retention under fl...
Endothelial cells (ECs) line all blood contacting surfaces within the body and are exposed to hemody...
Fabrication of vascular networks is essential for engineering three-dimensional thick tissues and or...
The ability to control cell adhesion on material surfaces is critical to the performance and compati...
Nanopatterned (330 nm wide channels) type I collagen films were prepared by solvent casting on poly(...
Two major requirements for a tissue-engineered vessel are the establishment of a continuous endothel...
To the best of our knowledge, one or more authors of this paper were federal employees when contribu...
Tissue engineered constructs with cells growing in an organized manner have been shown to have impro...
Collagen is widely used for biomedical applications and it could represent a valid alternative scaff...
The role of nanotopographical extracellular matrix (ECM) cues in vascular endothelial cell (EC) orga...
Endothelialization of therapeutic cardiovascular implants is essential for their intravascular hemoc...
The vascular system, one of the bases of life mechanisms, connects tissues and organs by means of bl...
Microfluidic systems based on polydimethylsiloxane (PDMS) provide a versatile platform to study the ...
Orthogonally functionalized nanopatterend surfaces presenting discrete domains of fibronectin rangin...
<div><p>Fabrication of vascular networks is essential for engineering three-dimensional thick tissue...
Acknowledgements: This research was financially supported by the Engineering and Physical Sciences R...
Endothelial cells (ECs) line all blood contacting surfaces within the body and are exposed to hemody...
Fabrication of vascular networks is essential for engineering three-dimensional thick tissues and or...
The ability to control cell adhesion on material surfaces is critical to the performance and compati...
Nanopatterned (330 nm wide channels) type I collagen films were prepared by solvent casting on poly(...
Two major requirements for a tissue-engineered vessel are the establishment of a continuous endothel...
To the best of our knowledge, one or more authors of this paper were federal employees when contribu...
Tissue engineered constructs with cells growing in an organized manner have been shown to have impro...
Collagen is widely used for biomedical applications and it could represent a valid alternative scaff...
The role of nanotopographical extracellular matrix (ECM) cues in vascular endothelial cell (EC) orga...
Endothelialization of therapeutic cardiovascular implants is essential for their intravascular hemoc...
The vascular system, one of the bases of life mechanisms, connects tissues and organs by means of bl...
Microfluidic systems based on polydimethylsiloxane (PDMS) provide a versatile platform to study the ...
Orthogonally functionalized nanopatterend surfaces presenting discrete domains of fibronectin rangin...
<div><p>Fabrication of vascular networks is essential for engineering three-dimensional thick tissue...
Acknowledgements: This research was financially supported by the Engineering and Physical Sciences R...
Endothelial cells (ECs) line all blood contacting surfaces within the body and are exposed to hemody...
Fabrication of vascular networks is essential for engineering three-dimensional thick tissues and or...
The ability to control cell adhesion on material surfaces is critical to the performance and compati...