Composites of biodegradable phosphate glass fiber and polylactic acid (PGF/PLA) show potential for bone tissue engineering scaffolds, due to their ability to release Ca, P, and Mg during degradation, thus promoting the bone repair. Nevertheless, glass degradation tends to acidify the surrounding aqueous environment, which may adversely affect the viability and bone-forming activities of osteoblasts. In this work, MgO was investigated as a neutralizing agent. Porous network-phase gyroid scaffolds were additive-manufactured using four different materials: PLA, MgO/PLA, PGF/PLA, and (MgO + PGF)/PLA. The addition of PGF enhanced compressive properties of scaffolds, and the resultant scaffolds were comparably strong and stiff with human trabecul...
Tissue engineered scaffolds are porous structures whose purpose is to act as temporary platforms for...
Magnesium-based ceramics are involved in orthopedic applications such as bone scaffolds or implant c...
Tissue engineering utilizes artificial porous structures, scaffolds, to temporarily replace parts of...
Composites of biodegradable phosphate glass fiber and polylactic acid (PGF/PLA) show potential for b...
Composites of biodegradable phosphate glass fiber and polylactic acid (PGF/PLA) show potential for b...
Phosphate glass/polylactic acid (PG/PLA) composites are prospective materials for biodegradable bone...
Phosphate glass/polylactic acid (PG/PLA) composites are prospective materials for biodegradable bone...
Phosphate glass (PG) of the composition 0.46(CaO)-0.04(Na(2)O)- 0.5(P(2)O(5)) was used as filler in ...
Phosphate glass/polylactide (PG/PLA) composites were additively manufactured via fused deposition mo...
A previous study demonstrated that the incorporation of bioactive glass (BG) into poly (lactic-co-gl...
Abstract: Phosphate glass (PG) of the composition 0.46(CaO)–0.04(Na2O)–0.5(P2O5) was used as filler ...
A previous study demonstrated that the incorporation of bioactive glass (BG) into poly (lactic-co-gl...
3D printed bioactive glass or bioceramic particle reinforced composite scaffolds for bone tissue eng...
3D printed bioactive glass or bioceramic particle reinforced composite scaffolds for bone tissue eng...
Tissue engineered scaffolds are porous structures whose purpose is to act as temporary platforms for...
Tissue engineered scaffolds are porous structures whose purpose is to act as temporary platforms for...
Magnesium-based ceramics are involved in orthopedic applications such as bone scaffolds or implant c...
Tissue engineering utilizes artificial porous structures, scaffolds, to temporarily replace parts of...
Composites of biodegradable phosphate glass fiber and polylactic acid (PGF/PLA) show potential for b...
Composites of biodegradable phosphate glass fiber and polylactic acid (PGF/PLA) show potential for b...
Phosphate glass/polylactic acid (PG/PLA) composites are prospective materials for biodegradable bone...
Phosphate glass/polylactic acid (PG/PLA) composites are prospective materials for biodegradable bone...
Phosphate glass (PG) of the composition 0.46(CaO)-0.04(Na(2)O)- 0.5(P(2)O(5)) was used as filler in ...
Phosphate glass/polylactide (PG/PLA) composites were additively manufactured via fused deposition mo...
A previous study demonstrated that the incorporation of bioactive glass (BG) into poly (lactic-co-gl...
Abstract: Phosphate glass (PG) of the composition 0.46(CaO)–0.04(Na2O)–0.5(P2O5) was used as filler ...
A previous study demonstrated that the incorporation of bioactive glass (BG) into poly (lactic-co-gl...
3D printed bioactive glass or bioceramic particle reinforced composite scaffolds for bone tissue eng...
3D printed bioactive glass or bioceramic particle reinforced composite scaffolds for bone tissue eng...
Tissue engineered scaffolds are porous structures whose purpose is to act as temporary platforms for...
Tissue engineered scaffolds are porous structures whose purpose is to act as temporary platforms for...
Magnesium-based ceramics are involved in orthopedic applications such as bone scaffolds or implant c...
Tissue engineering utilizes artificial porous structures, scaffolds, to temporarily replace parts of...