Objectives: Creation of functional, durable vasculature remains an important goal within the field of regenerative medicine. Engineered biological vasculature has the potential to restore or improve human tissue function. We hypothesized that the pleotropic effects of insulin-like growth factor 1 (IGF1) would enhance the engineering of capillary-like vasculature. Materials and methods: The impact of IGF1 upon vasculogenesis was examined in in vitro cultures for a period of up to 40 days and as subcutaneous implants within immunodeficient mice. Co-cultures of human umbilical vein endothelial cells and human bone marrow-derived mesenchymal stem cells in collagen-fibronectin hydrogels were supplemented with either recombinant IGF1 protein o...
Aim: After in vivo implantation of cell-loaded devices, only the cells close to the capillaries can ...
Therapeutic angiogenesis holds great promise as a therapy to treat ischemic diseases and reduce dama...
The circulatory system, composed of an intricate hierarchical network of branching blood vessels, de...
Objectives: Creation of functional, durable vasculature remains an important goal within the field o...
Background: IGF-1 is a potent mitogen for vascular smooth muscle cells, but exerts protective effect...
Contains fulltext : 51608schalkwijk.pdf (publisher's version ) (Closed access)An i...
Enhancement of the angiogenic potential of implantable tissue scaffolds is the focus of considerable...
Enhanced vascularization is critical to the treatment of ischemic tissues and the engineering of new...
Growth factor driven neovascularization is a major strategy to form new vessels for the treatment of...
[Excerpt] Diseases of the blood vessels, particularly of small diameter arteries are responsible for...
Angiogenesis in adipose tissue is promoted by insulin-like growth factor 1 signaling. We analyzed wh...
doi:10.3791/3065 (2011). The future of tissue engineering and cell-based therapies for tissue regene...
The generation of functional microvascular networks is critical for the development of advanced in v...
A major problem in the field of tissue engineering (TE) is graft failure due to avascular necrosis o...
Proper growth of blood vessels is critical for development, wound healing and homeostasis. This proc...
Aim: After in vivo implantation of cell-loaded devices, only the cells close to the capillaries can ...
Therapeutic angiogenesis holds great promise as a therapy to treat ischemic diseases and reduce dama...
The circulatory system, composed of an intricate hierarchical network of branching blood vessels, de...
Objectives: Creation of functional, durable vasculature remains an important goal within the field o...
Background: IGF-1 is a potent mitogen for vascular smooth muscle cells, but exerts protective effect...
Contains fulltext : 51608schalkwijk.pdf (publisher's version ) (Closed access)An i...
Enhancement of the angiogenic potential of implantable tissue scaffolds is the focus of considerable...
Enhanced vascularization is critical to the treatment of ischemic tissues and the engineering of new...
Growth factor driven neovascularization is a major strategy to form new vessels for the treatment of...
[Excerpt] Diseases of the blood vessels, particularly of small diameter arteries are responsible for...
Angiogenesis in adipose tissue is promoted by insulin-like growth factor 1 signaling. We analyzed wh...
doi:10.3791/3065 (2011). The future of tissue engineering and cell-based therapies for tissue regene...
The generation of functional microvascular networks is critical for the development of advanced in v...
A major problem in the field of tissue engineering (TE) is graft failure due to avascular necrosis o...
Proper growth of blood vessels is critical for development, wound healing and homeostasis. This proc...
Aim: After in vivo implantation of cell-loaded devices, only the cells close to the capillaries can ...
Therapeutic angiogenesis holds great promise as a therapy to treat ischemic diseases and reduce dama...
The circulatory system, composed of an intricate hierarchical network of branching blood vessels, de...