research article
The nanocomposite scaffold of poly(lactide-co-glycolide) and hydroxyapatite surface-grafted with L-lactic acid oligomer for bone repair
Abstract
Nanohydroxyapatite (op-HA) surface-modified with L-lactic acid oligomer (LAc oligomer) was prepared by LAc oligomer grafted onto the hydroxyapatite (HA) surface. The nanocomposite of op-HA/PLGA with different op-HA contents of 5, 10, 20 and 40 wt.% in the composite was fabricated into three-dimensional scaffolds by the melt-molding and particulate leaching methods. PLGA and the nanocomposite of HA/PLGA with 10 wt.% of ungrafted hydroxyapatite were used as the controls. The scaffolds were highly porous with evenly distributed and interconnected pore structures, and the porosity was around 90%. Besides the macropores of 100-300 mu m created by the leaching of NaCl particles, the micropores (1-50 mu m) in the pore walls increased with increasing content of op-HA in the composites of op-HA/PLGA. The op-HA particles could disperse more uniformly than those of pure HA in PLGA matrix. The 20 wt.% op-HA/PLGA sample exhibited the maximum mechanical strength, including bending strength (4.14 MPa) and compressive strength (2.31 MPa). The cell viability and the areas of the attached osteoblasts on the films of 10 wt.% op-HA/PLGA and 20 wt.% op-HA/PLGA were evidently higher than those on the other composites- 期刊论文
- IN-VITRO
- PART I
- COMPOSITES
- TISSUE
- POLY(L-LACTIDE)
- POLYMERIZATION
- OSTEOGENESIS
- ATTACHMENT
- PARTICLES
- CERAMICS
- In vitro
- Composites
- Composite materials
- tissue
- Polymerization
- Bone formation
- Bones--Growth
- Attachment
- Particles
- Ceramics
- MATERIAUX COMPOSITES
- VERBUNDSTOFFE
- 复合材料
- Composites (Materials)
- Multiphase materials
- Reinforced solids
- Solids, Reinforced
- Two phase materials
- aggregates (materials)
- stone (material)
- aggregation
- diffusion-limited aggregation
- carbon fibre reinforced composites
- carbon fiber reinforced composites
- graphite fibre reinforced composites
- carbon fibre reinforced plastics
- carbon fiber reinforced plastics
- CFRP
- graphite fibre reinforced plastics
- carbon fibres
- carbon fibers
- graphite fibres
- composite material interfaces
- ecocomposites
- natural fiber composites
- natural fibre composites
- wood-plastic composites
- filled polymers
- glass fibre reinforced plastics
- GFRP
- glass fiber reinforced plastics
- interface phenomena
- boundaries
- Kapitza resistance
- laminates
- nematic liquid crystals
- particle reinforced composites
- metal matrix composites, particle reinforced
- polymer dispersed liquid crystals
- liquid crystal dispersed polymers
- liquid crystal doped polymers
- semiconductor doped polymers
- composite material
- Polymer-dispersed liquid crystals
- LAMINATE
- LAMINES
- pyrographalloy
- laminated materials
- laminations
- multilayer structures
- pyrolytic graphite
- reinforced materials
- wood plastic composites
- plastic wood composites
- 聚集
- 团聚[作用]
- Lamina
- Laminae
- 共聚合[反应]
- Polymers and polymerization
- Polymerisation
- Polymers
- Polymere
- Polymeride
- Copolymerization
- Photopolymerization
- copolymerisation
- plasma polymerisation
- polymerising
- polymerizing
- 聚合[反应]
- callus formation (bones)
- ossification
- osteogenesis
- Bone--Growth
- Bone development
- Bone growth
- skeletal development
- reattachment
- Size of particles
- GRAINS (FRANCAIS)
- PARTICULES
- TEILCHEN
- Microparticles
- Ceramic technology
- Industrial ceramics
- Keramics
- ceramic insulation
- ceramic insulating materials
- porcelain insulation
- ceramic insulators
- composite insulators
- ferroelectric ceramics
- ferroceramics
- hot pressing
- piezoceramics
- piezoelectric ceramics
- porcelain insulators
- relaxor ferroelectrics
- CERAMIQUES
- KERAMISCHE WERKSTOFFE
- Ceramics technology
- Astroceram
- Electroceramics
- Pyroceram
- Hot compression
- Pressure sintering