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High-strength hydroxyapatite/poly(l-lactide) composite for internal fixation of bone fractures: evaluation of its bonding ability to bone

机译:用于骨折内固定的高强度羟基磷灰石/聚(L-丙交酯)复合材料:对骨骼的粘合能力评估

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High-strength hydroxyapatite (HA)/poly (L-lactide) (PLLA) composites for use as biodegradable fracture-fixation devices have been produced using a new compression molding method. The purpose of this study was to investigate the bone-bonding ability of these HA/PLLA composites. The composites contained 30percent by weight of HA particles with a mean diameter of 3 mu m. The initial bending strength and flexural elastic modulus of this composite were 280 MPa and 7.8 GPa, respectively. Rectangular plates made of this composite and of unfilled PLLA were implanted into the proximal tibiae of mature rabbits. Detaching tests and histological examinations were performed at 8 and 25 weeks after implantation. The tensile failure loads of the composite and unfilled PLLA were 1.39 kgfand 0.05 kgfat 8 weeks, and 2.60 kgfand 0.25 kgfat 25 weeks, respectively. There were significant differences between the composite and unfilled PLLA during the experiment (p< 0.05 at each point: two-way ANOVA). Histological examination showed that HA/PLLA bonded directly to bone throughout the experimental period, while unfilled PLLA exhibited intervening fibrous tissue between bone and plate. No inflammatory cells were found in the vicinity of either composite or unfilled PLLA plates, even at 25 weeks. These results indicate that the bone-bonding ability of the HA/PLLA composite could enhance fixation stability in the treatment of fractured bones.
机译:使用新的压缩成型方法生产用于可生物降解的骨折固定装置的高强度羟基磷灰石(HA)/聚(L-丙交酯)(PLLA)复合材料。本研究的目的是研究这些HA / PLLA复合材料的骨粘合能力。复合材料以平均直径为3μm的HA颗粒重量30%。该复合材料的初始弯曲强度和弯曲弹性模量分别为280MPa和7.8GPa。将该复合材料和未填充的PLLA制成的矩形板植入成熟兔的近端胫骨中。分离试验和组织学检查在植入后的8周和25周进行。复合材料和未填充PLLA的拉伸破坏载荷为1.39kgfand 0.05kgfat 8周,分别为2.60kgfand 0.25 kgfat 25周。在实验期间复合材料和未填充的PLLA之间存在显着差异(每个点P <0.05:双向ANOVA)。组织学检查表明,HA / PLLA在整个实验期间直接键合在骨中,而未填充的PLLA在骨和板之间表现出介入纤维组织。即使在25周,也没有在复合材料或未填充的PLLA板附近发现炎症细胞。这些结果表明,HA / PLLA复合材料的骨粘合能力可以增强治疗骨折骨骼的固定稳定性。

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