NOVEL COMPOSITES OF POLY(L-LACTIDE)AND SURFACE MODIFIED BIOACTIVE SiO_2-CaO-P_2O_5 GEL NANOPARTICLES

来源 :Chinese Journal of Polymer Science | 被引量 : 0次 | 上传用户:zhangxinyao1121
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Bioactive SiO_2-CaO-P_2O_5 gel(BAG)nanoparticles with 40 nm in diameter were synthesized by the sol-gel route and further modified via the ring-opening polymerization of lactide on the surface of particles.Surface modified BAG (mBAG)was introduced in poly(L-lactide)(PLLA)matrix as bioactive filler.The dispersibility of mBAG in PLLA matrix was much higher than that of rough BAG particles.Tensile strength of the mBAG/PLLA composite could be increased to 61.2 MPa at 2 wt%filler content from 53.4 MPa for pure PLLA.The variation of moduli of the BAG/PLLA and mBAG/PLLA composites always showed an enhancement tendency with the increasing content of filler loading.The SEM photographs of the fracture surfaces showed that mBAG could be homogeneously dispersed in the PLLA matrix,and the corrugated deformation could absorb the rupture energy effectively during the breaking of materials,In vitro bioactivity tests showed that both BAG and mBAG particles could endow the composites with ability of the calcium sediment in SBF,but the surface modification of BAG particles could weaken this capability to some extent.Biocompatibility tests showed that both BAG and mBAG particles could facilitate the attachment and proliferation of the marrow cells on the surface of the composite.All these results showed that the mBAG/PLLA composite would be a promising material for bone tissues regeneration. Bioactive SiO_2-CaO-P_2O_5 gel (BAG) nanoparticles with 40 nm in diameter were synthesized by the sol-gel route and further modified via the ring-opening polymerization of lactide on the surface of particles. Textured modified BAG (mBAG) was introduced in poly (L-lactide) (PLLA) matrix as bioactive filler. The dispersibility of mBAG in PLLA matrix was much higher than that of rough BAG particles. Tensile strength of the mBAG / PLLA composite could be increased to 61.2 MPa at 2 wt% filler content from 53.4 MPa for pure PLLA. The variation of moduli of the BAG / PLLA and mBAG / PLLA composites always showed an enhancement tendency with the increasing content of filler loading. The SEM photographs of the fracture surfaces showed that mBAG could be homogeneously dispersed in the PLLA matrix, and the corrugated deformation could absorb the rupture energy effectively during the breaking of materials, in vitro bioactivity tests showed that both both BAG and mBAG particles could endow the composites with ability of the calcium sediment in SBF, but the surface modification of BAG particles could weaken this capability to some extent. Biocompatibility tests showed that both BAG and mBAG particles could facilitate the attachment and proliferation of the marrow cells on the surface of the composite. All these results showed that the mBAG / PLLA composite would be a promising material for bone tissues regeneration.
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