A microsphere composite made of poly(DL-lactic-co-glycolic acid) (PLGA), mesoporous silica nanoparticle (MSN), and nanohydroxyapatite (nHA) (PLGA-MSN/nHA) was prepared and evaluated as bone tissue engineering materials. The objective of this study was to investigate the synergistic effect of MSN/nHA on biocompatibility as well as its potential ability for bone formation. First, we found that this PLGA-MSN/nHA composite performed good characteristics on microstructure, mechanical strength, and wettability. By cell culture experiments, the adhesion and proliferation rate of the cells seeded on PLGA-MSN/nHA composite was higher than those of the controls and high levels of osteogenetic factors such as ALP and Runx-2 were detected by reverse tr...
Human bone is a composite material composed of an organic matrix (mainly collagen) and an inorganic ...
The purpose of this study was to evaluate the potential of porous poly (d,l-lactic-co-glycolic acid)...
One of the main goals of bone tissue engineering is to develop suitable bio-acceptable materials for...
Composite scaffolds of poly(l-lactide acid) and hydroxyapatite are of great interest in bone tissue ...
Bone defects caused by osteomyelitis can lead to severe disability. Surgeons still face significant ...
A novel three-dimensional biomimetic porous microsphere was successfully designed in this study, whi...
[[abstract]]The development of a novel alloplastic graft with both osteoinductive and osteoconductiv...
Nanocomposite of hydroxyapatite (HAP) surface-grafted with poly(L-lactide) (PLLA) (g-HAP) shows a wi...
Biomimetic scaffolds with a structural and chemical composition similar to native bone tissue may be...
Tissue engineering offers new approaches to repair bone defects, which cannot be repaired physiologi...
Tissue engineering offers new approaches to repair bone defects, which cannot be repaired physiologi...
Nanocomposite of hydroxyapatite (HA) surface grafted with l-lactic acid oligomer (LAc oligomer) (op-...
BackgroundNanomaterials have unique advantages in controlling stem cell function due to their biomim...
Porous hydroxyapatite (HAp) scaffolds are commonly used for hard tissue regeneration because of thei...
Scaffolds for bone tissue regeneration should provide the right cues for stem cell adhesion and prol...
Human bone is a composite material composed of an organic matrix (mainly collagen) and an inorganic ...
The purpose of this study was to evaluate the potential of porous poly (d,l-lactic-co-glycolic acid)...
One of the main goals of bone tissue engineering is to develop suitable bio-acceptable materials for...
Composite scaffolds of poly(l-lactide acid) and hydroxyapatite are of great interest in bone tissue ...
Bone defects caused by osteomyelitis can lead to severe disability. Surgeons still face significant ...
A novel three-dimensional biomimetic porous microsphere was successfully designed in this study, whi...
[[abstract]]The development of a novel alloplastic graft with both osteoinductive and osteoconductiv...
Nanocomposite of hydroxyapatite (HAP) surface-grafted with poly(L-lactide) (PLLA) (g-HAP) shows a wi...
Biomimetic scaffolds with a structural and chemical composition similar to native bone tissue may be...
Tissue engineering offers new approaches to repair bone defects, which cannot be repaired physiologi...
Tissue engineering offers new approaches to repair bone defects, which cannot be repaired physiologi...
Nanocomposite of hydroxyapatite (HA) surface grafted with l-lactic acid oligomer (LAc oligomer) (op-...
BackgroundNanomaterials have unique advantages in controlling stem cell function due to their biomim...
Porous hydroxyapatite (HAp) scaffolds are commonly used for hard tissue regeneration because of thei...
Scaffolds for bone tissue regeneration should provide the right cues for stem cell adhesion and prol...
Human bone is a composite material composed of an organic matrix (mainly collagen) and an inorganic ...
The purpose of this study was to evaluate the potential of porous poly (d,l-lactic-co-glycolic acid)...
One of the main goals of bone tissue engineering is to develop suitable bio-acceptable materials for...