生物活性玻璃界面成骨的形态学研究。

A J Aho, J Heikkilä, H J Aho, O Andersson, A Yli-Urpo
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引用次数: 0

摘要

采用组织学和扫描电镜对兔股骨远端软骨下小梁骨生物活性玻璃植入物(S56.5P4)周围骨形成进行了研究。三种类型的组织:骨、结缔组织和造血组织在种植体周围发育,导致板层状新骨在12周时覆盖了种植体表面的76%。种植体周围的骨形成从编织骨开始,主要转变为板层骨,与S56.5P4表面接触的骨状新骨。软骨内成骨未见。在含有造血组织的骨区,新骨通常沿种植体表面生长成薄层。然而,骨似乎通过骨传导在种植体表面附近形成。只有21%的种植体表面被松散的结缔组织覆盖。植入后第10天可见蛋白多糖含有薄的液体填充空隙。在少数明显破坏种植体表面的区域,观察到数量减少或没有骨形成。Von Kossa法将反应层染色为两条平行的深棕色线,甲苯胺蓝染色为两条蓝色条纹,而van Gieson法根本不染色反应层。综上所述,目前的组织学结果表明骨结合是在S56.5P4种植体与宿主骨之间观察到的一个物理化学过程。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Morphology of osteogenesis in bioactive glass interface.

Bone formation around bioactive glass implants (S56.5P4) in the trabeculous subchondral bone in the distal femur of rabbits was studied by histology and scanning electron microscopy. Three types of tissue: bone, connective and hematopoietic tissue developed around the implants resulting in lamellar new bone covering 76% of the surface of the implants at twelve weeks. Bone formation around implants began as woven bone changing mainly to lamellar, osteon like new bone in contact with the S56.5P4 surface. Endochondral ossification was absent. In the area of bone containing hematopoietic tissue, new bone grew often as a thin layer along the implant surface. However, bone seemed to form adjacent to the implant surface through osteo-conduction. Only 21% of the implant surface was covered by loose connective tissue. Some proteoglycan containing thin fluid filled spaces were seen ten days after implantation. In few areas with apparent breakdown of the implant surface decreased amount or no bone formation was observed. Von Kossa method stained the reaction layer as two parallel dark brown lines, toluidine blue as two blue stripes, whereas van Gieson did not stain the reaction layer at all. In conclusion, the present histological results indicate bone bonding, which is a physico-chemical process observed between S56.5P4 implant and host bone.

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