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首页> 外文期刊>CERAMICS INTERNATIONAL >Can the regenerative potential of an alkali-free bioactive glass composition be enhanced when mixed with resorbable beta-TCP?
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Can the regenerative potential of an alkali-free bioactive glass composition be enhanced when mixed with resorbable beta-TCP?

机译:当与可再吸收的β-TCP混合时,可以提高无碱生物活性玻璃组合物的再生电位吗?

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摘要

The addition of resorbable beta-tricalcium phosphate (beta-TCP) to other bone substitute materials such as hydroxyapatite (HA) has been pointed out as a suitable strategy to enhance the regenerative potential of bone grafts made thereof. To check the generalization of this hypothesis, a new synthetic composite bone graft material consisting of a mixture of 30 vol% of pure beta-TCP and 70 vol% of FastOe (R) BG (an alkali-free bioactive glass - BG) was prepared and tested in vivo. The in vivo performance of the new synthetic bone graft (30 beta-TCP-70FastOs (R) BG) was compared with those of FastOs (R) BG alone and of adbone (R) BCP, a biphasic calcium phosphate, consisting of 75% of HA and 25% of beta-TCP. Two defects with 4 mm diameter were performed in Wistar rats calvaria and filled with the bone graft materials. The animals were sacrificed after 9 weeks of implantation and the calvaria was excised. Empty bone defects were used as negative control. The percentages of new bone formed (von Kassa staining) were always higher in the treated groups (FastOs (R) BG, 30 beta-TCP-70FastOs (R) BG and adbone (R) BCP) than in empty group. There were differences with statistical significance between empty and FastOs (R) BG groups and between empty and adbone (R) BCP groups. But the differences observed between empty and 30 beta-TCP-70FastOs (R) BG groups were less remarkable. The results demonstrated the superior bone regeneration ability of FastOs (R) BG alone, which was not further enhanced by adding beta-TCP in the composition, confirming its already proven regenerative potential.
机译:向其他骨替代材料(如羟基磷灰石(HA)的其他骨替代材料(如羟基磷灰石(HA))的添加是合适的策略,以增强其制造的骨移植的再生潜力。为了检查该假设的概括,制备了一种新的合成复合骨移植材料,由30Vol%的纯β-TCP和70Vol%的FastoE(R)BG(碱性生物活性玻璃-BG)组成的混合物组成并在体内测试。将新的合成骨移植物(30β-TCP-70FastosBg)的体内性能与单独的FastOsBg和配给(R)BCP,双相磷酸钙,磷酸钙(R)BCP进行比较,包括75% HA和25%的Beta-TCP。在Wistar大鼠Calvaria进行了两种直径的两种缺陷,并填充骨接枝材料。在植入9周后,动物被处死,切钙菌被切除。空骨缺陷用作阴性对照。在处理的组(FastOsBG,30β-TCP-70FastosBG和adBONE(R)BCP)中,形成的新骨(von kassa染色)总是较高的百分比比空组在空组中。空心和FastOS(R)BG组和空和adbone(R)BCP组之间存在差异差异。但是,空和30β-TCP-70Fastos(R)BG组之间观察到的差异不太显着。结果表明,通过在组合物中添加β-TCP,不能进一步增强FastOS(R)Bg的优异骨再生能力,证实其已经被证明的再生潜力。

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