Platelet-derived growth factor (PDGF) exerts multiple cellular effects that stimulate wound repair in multiple tissues. However, a major obstacle for its successful clinical application is the delivery system, which ultimately controls the in vivo release rate of PDGF. Polylactic-co-glycolic acid (PLGA) microspheres (MS) in nanofibrous scaffolds (NFS) have been shown to control the release of rhPDGF-BB in vitro. In order to investigate the effects of rhPDGF-BB release from MS in NFS on gene expression and enhancement of soft tissue engineering, rhPDGF-BB was incorporated into differing molecular weight (MW) polymeric MS. By controlling the MW of the MS over a range of 6.5 KDa-64 KDa, release rates of PDGF can be regulated over periods of we...
The success of any tissue engineering implant relies upon prompt vascularization of the cellular con...
Therapeutic angiogenesis holds great promise as a therapy to treat ischemic diseases and reduce dama...
To achieve controlled release of different growth factors at different periods (i.e. vascular endoth...
Using delivery systems to control the in vivo release of growth factors (GFs) for tissue engineering...
Tissue engineering aims to generate or facilitate regrowth or healing of damaged tissues by applying...
Platelet-derived growth factor-bb (PDGF-BB) is a potent chemokine and mitogen for fibroblasts, kerat...
The use of nanomaterials as carriers for the delivery of growth factors has been applied to a multit...
This study aimed to design a growth factor loaded copolyester of 3-hydroxybutyrate and 3-hydroxyhexa...
New blood vessel formation is a critical requirement for treating many vascular and ischemia related...
Polymeric microspheres have been widely investigated as delivery systems and are clinically used tod...
This study aimed to design a growth factor loaded copolyester of 3-hydroxybutyrate and 3-hydroxyhexa...
Diabetic skin ulcers are difficult to heal spontaneously due to the reduced levels and activity of e...
AbstractA novel therapeutic scaffolding system of engineered nanocarriers within a foam matrix for t...
The association of bioactive molecules, such as vascular endothelial growth factor (VEGF), with nano...
The success of any tissue engineering implant relies upon prompt vascularization of the cellular con...
The success of any tissue engineering implant relies upon prompt vascularization of the cellular con...
Therapeutic angiogenesis holds great promise as a therapy to treat ischemic diseases and reduce dama...
To achieve controlled release of different growth factors at different periods (i.e. vascular endoth...
Using delivery systems to control the in vivo release of growth factors (GFs) for tissue engineering...
Tissue engineering aims to generate or facilitate regrowth or healing of damaged tissues by applying...
Platelet-derived growth factor-bb (PDGF-BB) is a potent chemokine and mitogen for fibroblasts, kerat...
The use of nanomaterials as carriers for the delivery of growth factors has been applied to a multit...
This study aimed to design a growth factor loaded copolyester of 3-hydroxybutyrate and 3-hydroxyhexa...
New blood vessel formation is a critical requirement for treating many vascular and ischemia related...
Polymeric microspheres have been widely investigated as delivery systems and are clinically used tod...
This study aimed to design a growth factor loaded copolyester of 3-hydroxybutyrate and 3-hydroxyhexa...
Diabetic skin ulcers are difficult to heal spontaneously due to the reduced levels and activity of e...
AbstractA novel therapeutic scaffolding system of engineered nanocarriers within a foam matrix for t...
The association of bioactive molecules, such as vascular endothelial growth factor (VEGF), with nano...
The success of any tissue engineering implant relies upon prompt vascularization of the cellular con...
The success of any tissue engineering implant relies upon prompt vascularization of the cellular con...
Therapeutic angiogenesis holds great promise as a therapy to treat ischemic diseases and reduce dama...
To achieve controlled release of different growth factors at different periods (i.e. vascular endoth...