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Microporosity Affects Bioactivity of Macroporous Hydroxyapatite Bone Graft Substitutes

机译:微孔影响大孔羟基磷灰石骨接枝替代物的生物活性。

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This paper describes an investigation into the influence of microporosity on early osseointegration within porous hydroxyapatite scaffolds. Two batches of phase pure porous hydroxyapatite were produced with total porosities of approximately 80%, but with varied levels of microporosity such that the strut porosity of the two batches were 10 and 20%. Cylindrical specimens 4.5mm in diameter were implanted in the distal femur of 6 month New Zealand White rabbits and retrieved for histological and histomorphometric analysis at 1 and 3 weeks. Optical microscopy demonstrated variation in the degree of capillary penetration and bone morphology within scaffolds at 1 and 3 weeks, respectively. Moreover, histomorphometry demonstrated that there was significantly more bone ingrowth within HA80-2 scaffolds and that the rate of bone formation within these scaffolds was significantly faster. These results indicate that the bioactivity of porous hydroxyapatite scaffolds may be improved by increasing the level of microporosity within the ceramic struts.
机译:本文介绍了对多孔性羟基磷灰石支架内的早期骨整合的影响的调查。产生了两批相纯多孔羟基磷灰石,其总孔隙率约为80%,但微孔隙水平各不相同,因此两批的支撑孔隙率分别为10%和20%。将直径为4.5mm的圆柱形标本植入6个月大的新西兰白兔的股骨远端,并在第1和3周取回进行组织学和组织形态分析。光学显微镜显示分别在第1周和第3周,支架内的毛细血管渗透程度和骨形态变化。此外,组织形态计量学证明HA80-2支架内明显有更多的骨向内生长,并且这些支架内的骨形成速率明显更快。这些结果表明,可通过增加陶瓷支柱内的微孔水平来改善多孔羟基磷灰石支架的生物活性。

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