AbstractObjectiveWe investigated the influence of smooth muscle cells (SMC) on endothelial cell (EC) retention on polytetrafluoroethylene (PTFE) grafts and the effect of SMC seeding on intimal hyperplasia in vivo in a rabbit model.MethodsFibronectin-coated PTFE grafts (4 mm diameter) were seeded with either EC alone, SMC alone, or SMC followed 24 hours later by EC. The grafts were connected to an extracorporal aortic shunt for 1 hour or were individually implanted for 1, 30, and 100 days into the infrarenal aorta as an end-to-side bypass graft. The number of retained cells was compared at 1 hour and at 1 day after implantation. Neointimal thickness was measured 30 and 100 days after implantation.ResultsAfter 1-hour exposure to blood flow, E...
AIM: Seeding venous endothelial cells (EC) onto damaged vascular surfaces attenuates the development...
ObjectiveThe objective of this study was to examine the effect of tissue plasminogen activator (tPA)...
AbstractPurpose: Seeding a prosthetic graft with genetically engineered vascular endothelial cells (...
AbstractObjective: The purpose of this study was to enhance the retention of seeded endothelial cell...
AbstractObjective: The purpose of this study was to enhance the retention of seeded endothelial cell...
AbstractBackground: Restenosis of arteries or bypass grafts after vascular reconstruction is a commo...
ObjectiveThe objective of this study was to examine the effect of tissue plasminogen activator (tPA)...
AbstractObjective: The absence of endothelial cells at the luminal surface of a prosthetic vascular ...
AbstractPurpose: Intimal hyperplasia is one of the main responses of the vascular wall to injury. In...
ObjectivesThere is significant room for improvement in the development of tissue-engineered blood ve...
Endothelial cell (EC) seeding represents a promising approach to provide a nonthrombogenic surface o...
AbstractIntroduction: fat derived microvascular endothelial cells (MVEC) seeded on prosthetic vascul...
BackgroundWe evaluated the possibility of restoring a physiologic vascular wall using undifferentiat...
BackgroundWe evaluated the possibility of restoring a physiologic vascular wall using undifferentiat...
AbstractBackground: Restenosis of arteries or bypass grafts after vascular reconstruction is a commo...
AIM: Seeding venous endothelial cells (EC) onto damaged vascular surfaces attenuates the development...
ObjectiveThe objective of this study was to examine the effect of tissue plasminogen activator (tPA)...
AbstractPurpose: Seeding a prosthetic graft with genetically engineered vascular endothelial cells (...
AbstractObjective: The purpose of this study was to enhance the retention of seeded endothelial cell...
AbstractObjective: The purpose of this study was to enhance the retention of seeded endothelial cell...
AbstractBackground: Restenosis of arteries or bypass grafts after vascular reconstruction is a commo...
ObjectiveThe objective of this study was to examine the effect of tissue plasminogen activator (tPA)...
AbstractObjective: The absence of endothelial cells at the luminal surface of a prosthetic vascular ...
AbstractPurpose: Intimal hyperplasia is one of the main responses of the vascular wall to injury. In...
ObjectivesThere is significant room for improvement in the development of tissue-engineered blood ve...
Endothelial cell (EC) seeding represents a promising approach to provide a nonthrombogenic surface o...
AbstractIntroduction: fat derived microvascular endothelial cells (MVEC) seeded on prosthetic vascul...
BackgroundWe evaluated the possibility of restoring a physiologic vascular wall using undifferentiat...
BackgroundWe evaluated the possibility of restoring a physiologic vascular wall using undifferentiat...
AbstractBackground: Restenosis of arteries or bypass grafts after vascular reconstruction is a commo...
AIM: Seeding venous endothelial cells (EC) onto damaged vascular surfaces attenuates the development...
ObjectiveThe objective of this study was to examine the effect of tissue plasminogen activator (tPA)...
AbstractPurpose: Seeding a prosthetic graft with genetically engineered vascular endothelial cells (...