Recent studies have demonstrated the angiogenic potential of 45S5 Bioglass. However, it is not known whether the angiogenic properties of Bioglass remain when the bioactive glass particles are incorporated into polymer composites. The objectives of the current study were to investigate the angiogenic properties of 45S5 Bioglass particles incorporated into biodegradable polymer composites. In vitro studies demonstrated that fibroblasts cultured on discs consisting of specific quantities of Bioglass particles mixed into poly(D,L-lactide-co-glycolide) secreted significantly increased quantities of vascular endothelial growth factor. The optimal quantity of Bioglass particles determined from the in vitro experiments was incorporated into three-...
AbstractBioactive-glass scaffolds are crucial in bone tissue engineering since they act as temporary...
Highly porous composites scaffolds of poly-D,L-lactide (PDLLA) and poly(lactide-co-glycolide) (PLGA)...
Constructing the interconnected porous biomaterials scaffolds with osteogenesis and angiogenesis cap...
Recent studies have demonstrated the angiogenic potential of 45S5 Bioglass (R). However, it is not k...
The angiogenic properties of micron-sized (m-BG) and nano-sized (n-BG) bioactive glass (BG) filled p...
The incorporation of bioactive glass into tissue engineering scaffolds can be widely beneficial in r...
The incorporation of bioactive glass into bone tissue-engineered scaffolds can be widely beneficial ...
A major limitation of using synthetic scaffolds in tissue engineering applications is insufficient a...
Bioresorbable and bioactive tissue engineering scaffolds based on bioactive glass (45S5 Bioglass®) p...
Bioactive and bioresorbable composite materials were fabricated using macroporous poly(DL-lactide) (...
Highly porous poly(D,L-lactide)/Bioglass composites scaffolds were prepared by thermally induced pha...
Attempts to stimulate therapeutic angiogenesis using gene therapy or delivery of recombinant growth ...
The primary research objective of this project is to investigate the ability of adipose derived mese...
Bio-based and patient-specific three-dimensional (3D) scaffolds can present next generation strategi...
There is a need for development of versatile soft tissue scaffolds which can interface with tissue j...
AbstractBioactive-glass scaffolds are crucial in bone tissue engineering since they act as temporary...
Highly porous composites scaffolds of poly-D,L-lactide (PDLLA) and poly(lactide-co-glycolide) (PLGA)...
Constructing the interconnected porous biomaterials scaffolds with osteogenesis and angiogenesis cap...
Recent studies have demonstrated the angiogenic potential of 45S5 Bioglass (R). However, it is not k...
The angiogenic properties of micron-sized (m-BG) and nano-sized (n-BG) bioactive glass (BG) filled p...
The incorporation of bioactive glass into tissue engineering scaffolds can be widely beneficial in r...
The incorporation of bioactive glass into bone tissue-engineered scaffolds can be widely beneficial ...
A major limitation of using synthetic scaffolds in tissue engineering applications is insufficient a...
Bioresorbable and bioactive tissue engineering scaffolds based on bioactive glass (45S5 Bioglass®) p...
Bioactive and bioresorbable composite materials were fabricated using macroporous poly(DL-lactide) (...
Highly porous poly(D,L-lactide)/Bioglass composites scaffolds were prepared by thermally induced pha...
Attempts to stimulate therapeutic angiogenesis using gene therapy or delivery of recombinant growth ...
The primary research objective of this project is to investigate the ability of adipose derived mese...
Bio-based and patient-specific three-dimensional (3D) scaffolds can present next generation strategi...
There is a need for development of versatile soft tissue scaffolds which can interface with tissue j...
AbstractBioactive-glass scaffolds are crucial in bone tissue engineering since they act as temporary...
Highly porous composites scaffolds of poly-D,L-lactide (PDLLA) and poly(lactide-co-glycolide) (PLGA)...
Constructing the interconnected porous biomaterials scaffolds with osteogenesis and angiogenesis cap...