Nanocomposite of hydroxyapatite (HAP) surface-grafted with poly(L-lactide) (PLLA) (g-HAP) shows a wide application for bone fixation materials due to its improved interface compatibility, mechanical property and biocompatibility in our previous study. In this paper, a 3-D porous scaffold of g-HAP/poly (lactide-co-glycolide) (PLGA) was fabricated using the solvent casting/particulate leaching method to investigate its applications in bone replacement and tissue engineering. The composite of un-grafted HAP/PLGA and neat PLGA were used as controls. Their in vivo mineralization and osteogenesis were investigated by intramuscular implantation and replacement for repairing radius defects of rabbits. After surface modification, more uniform distri...
Poly-lactic-glycolic acid (PLGA) has been widely used as a scaffold material for bone tissue enginee...
Composite scaffolds of poly(l-lactide acid) and hydroxyapatite are of great interest in bone tissue ...
Guoqiang Zhou,1–3 Sudan Liu,1 Yanyan Ma,1 Wenshi Xu,1 Wei Meng,1 Xue Lin,1 Wenying Wang,1,3 Sh...
Nanocomposite of hydroxyapatite (HA) surface grafted with l-lactic acid oligomer (LAc oligomer) (op-...
Nanohydroxyapatite (op-HA) surface-modified with L-lactic acid oligomer (LAc oligomer) was prepared ...
The hydroxyapatite (HA) nanocrystals of 100-200 nm in length and 20-30 nm in width were hydrothermal...
This study examined the potential of a new porous calcium hydroxyapatite scaffold covered with poly ...
This study examined the potential of a new porous calcium hydroxyapatite scaffold covered with poly ...
This study examined the potential of a new porous calcium hydroxyapatite scaffold covered with poly ...
Poly(lactid-glycolide acid)/hydroxyapatite (PLGA/HA) materials, as a class of composites,which have ...
Three-dimensional (3D) composite porous scaffolds containing hydroxyapatite (HA) and polymer matrix ...
A combination of bioceramics and polymeric nanofibers holds promising potential for bone tissue engi...
Porous scaffolds consisting of bioactive inorganic nanoparticles and biodegradable polymers have gai...
[EN] Polymer ceramic composites obtained as the result of a mineralization process hold great promis...
A combination of bioceramics and polymeric nanofibers holds promising potential for bone tissue engi...
Poly-lactic-glycolic acid (PLGA) has been widely used as a scaffold material for bone tissue enginee...
Composite scaffolds of poly(l-lactide acid) and hydroxyapatite are of great interest in bone tissue ...
Guoqiang Zhou,1–3 Sudan Liu,1 Yanyan Ma,1 Wenshi Xu,1 Wei Meng,1 Xue Lin,1 Wenying Wang,1,3 Sh...
Nanocomposite of hydroxyapatite (HA) surface grafted with l-lactic acid oligomer (LAc oligomer) (op-...
Nanohydroxyapatite (op-HA) surface-modified with L-lactic acid oligomer (LAc oligomer) was prepared ...
The hydroxyapatite (HA) nanocrystals of 100-200 nm in length and 20-30 nm in width were hydrothermal...
This study examined the potential of a new porous calcium hydroxyapatite scaffold covered with poly ...
This study examined the potential of a new porous calcium hydroxyapatite scaffold covered with poly ...
This study examined the potential of a new porous calcium hydroxyapatite scaffold covered with poly ...
Poly(lactid-glycolide acid)/hydroxyapatite (PLGA/HA) materials, as a class of composites,which have ...
Three-dimensional (3D) composite porous scaffolds containing hydroxyapatite (HA) and polymer matrix ...
A combination of bioceramics and polymeric nanofibers holds promising potential for bone tissue engi...
Porous scaffolds consisting of bioactive inorganic nanoparticles and biodegradable polymers have gai...
[EN] Polymer ceramic composites obtained as the result of a mineralization process hold great promis...
A combination of bioceramics and polymeric nanofibers holds promising potential for bone tissue engi...
Poly-lactic-glycolic acid (PLGA) has been widely used as a scaffold material for bone tissue enginee...
Composite scaffolds of poly(l-lactide acid) and hydroxyapatite are of great interest in bone tissue ...
Guoqiang Zhou,1–3 Sudan Liu,1 Yanyan Ma,1 Wenshi Xu,1 Wei Meng,1 Xue Lin,1 Wenying Wang,1,3 Sh...