首页> 外文期刊>Journal of biomedical materials research. Part B, Applied biomaterials. >Bone bonding in bioactive glass ceramics combined with bone matrix gelatin.
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Bone bonding in bioactive glass ceramics combined with bone matrix gelatin.

机译:生物活性玻璃陶瓷与骨基质明胶的骨结合。

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To determine how to encourage inductive osteogenesis on bioactive ceramics and accelerate the bonding of implants to the surrounding bone, we studied the role of autolyzed antigen-extracted allogeneic bone gelatin (AAAG) in bone bonding to bioactive ceramic implants in rabbit tibiae. Smooth-surfaced plates (15 x 10 x 2 mm) of apatite and wollastonite containing glass-ceramic were implanted into the proximal metaphyses of tibiae, with AAAG packed into the medullary cavity in one limb but not in the contralateral limb, which served as a paired control. After 2, 4, 8, 16, and 25 weeks, bone bonding and bone formation at the bone/implant interfaces were evaluated by a detaching test and undecalcified histological examination. The tensile failure load increased from 2 to 25 weeks for both groups. The failure load of the AAAG-treated group was significantly greater than that of the control group at every stage. Histologically, the AAAG-treated specimens showed active new bone formation in the medullary cavity and extensive bonding between the implant and bone at early periods. The percentage of bony covering in the AAAG-treated group was significantly higher than that of the controls at all intervals except at 25 weeks. The results of this study suggest that the addition of osteoinductive AAAG to a bioactive implant may significantly accelerate bone apposition to the implant and improve the bonding process at the interface, which would help to establish an earlier and stronger bonding between the implants and the surrounding bone.
机译:为了确定如何鼓励生物活性陶瓷上的诱导成骨作用并加速植入物与周围骨骼的结合,我们研究了自溶抗原提取的同种异体骨明胶(AAAG)在兔胫骨生物活性陶瓷植入物的骨结合中的作用。将含有玻璃陶瓷的磷灰石和硅灰石的光滑表面板(15 x 10 x 2 mm)植入胫骨的近端干phy端,将AAAG填充到一只肢体的髓腔中,而不是对侧肢体中,这是配对控件。在第2、4、8、16和25周后,通过分离试验和未脱钙的组织学检查评估骨/植入物界面处的骨结合和骨形成。两组的拉伸破坏负荷从2周增加到25周。在每个阶段,AAAG治疗组的失败负荷均显着大于对照组。从组织学上看,经AAAG处理的标本显示出在髓腔中活跃的新骨形成以及早期植入物与骨之间的广泛结合。在AAAG治疗组中,除25周外,所有时间间隔的骨覆盖率均显着高于对照组。这项研究的结果表明,向生物活性植入物中添加骨诱导性AAAG可能会显着加速骨骼与植入物的结合,并改善界面处的结合过程,这将有助于在植入物与周围骨骼之间建立更早更牢固的结合。

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