This study addresses endothelial cell adhesion and spreading on a family of artificial extracellular matrix (aECM) proteins designed for application in small-diameter vascular grafts. The aECM proteins contain domains derived from elastin and from fibronectin. aECM 1 contains the RGD sequence from the tenth type III domain of fibronectin; aECM 3 contains the fibronectin CS5 cell-binding domain. Negative control proteins aECM 2 and 4 are scrambled versions of aECM 1 and 3, respectively. Competitive peptide inhibition studies and comparisons of positive and negative control proteins confirm that adhesion of HUVECs to aECM proteins 1 and 3 is sequence specific. When subjected to a normal detachment force of 780 pN, 3-fold more HUVECs remained ...
The mechanisms underlying the cellular response to extracellular matrices (ECMs) that consist of mul...
Vascular endothelial cells, providing a nonthrombogenic surface to the lumenal aspect of blood vesse...
The endothelium is an essential modulator of vascular tone and thrombogenicity and a critical barrie...
This study examines the spreading and adhesion of human umbilical vein endothelial cells (HUVEC) on ...
A family of artificial extracellular matrix proteins developed for application in small-diameter vas...
Protein-based biomaterials that promote rapid wound healing are prepared by expression of artificial...
To design synthetic microenvironments that elicit desired cell behaviors, we must better understand ...
Artificial extracellular matrix proteins were synthesized using recombinant DNA technology. These pr...
Interactions between cell-surface integrins and extracellular matrix proteins underlie a versatile r...
Genetic engineering methods were used for the preparation of artificial proteins containing sequence...
Principles of genetic engineering and recombinant DNA technology were applied to the modification an...
The extracellular matrix (ECM) consists of a complex mixture of biochemical and physical stimuli tha...
We have found a novel adhesion receptor on the human endothelial cell for the peptide sequence Arg-G...
Recombinant technology is a versatile platform to create novel artificial proteins with tunable prop...
Atherosclerosis, which involves arterial hardening, is a common cause of cardiovascular diseases. Al...
The mechanisms underlying the cellular response to extracellular matrices (ECMs) that consist of mul...
Vascular endothelial cells, providing a nonthrombogenic surface to the lumenal aspect of blood vesse...
The endothelium is an essential modulator of vascular tone and thrombogenicity and a critical barrie...
This study examines the spreading and adhesion of human umbilical vein endothelial cells (HUVEC) on ...
A family of artificial extracellular matrix proteins developed for application in small-diameter vas...
Protein-based biomaterials that promote rapid wound healing are prepared by expression of artificial...
To design synthetic microenvironments that elicit desired cell behaviors, we must better understand ...
Artificial extracellular matrix proteins were synthesized using recombinant DNA technology. These pr...
Interactions between cell-surface integrins and extracellular matrix proteins underlie a versatile r...
Genetic engineering methods were used for the preparation of artificial proteins containing sequence...
Principles of genetic engineering and recombinant DNA technology were applied to the modification an...
The extracellular matrix (ECM) consists of a complex mixture of biochemical and physical stimuli tha...
We have found a novel adhesion receptor on the human endothelial cell for the peptide sequence Arg-G...
Recombinant technology is a versatile platform to create novel artificial proteins with tunable prop...
Atherosclerosis, which involves arterial hardening, is a common cause of cardiovascular diseases. Al...
The mechanisms underlying the cellular response to extracellular matrices (ECMs) that consist of mul...
Vascular endothelial cells, providing a nonthrombogenic surface to the lumenal aspect of blood vesse...
The endothelium is an essential modulator of vascular tone and thrombogenicity and a critical barrie...