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Bioactive glass enhances bone ingrowth into the porous titanium coating on orthopaedic implants

机译:生物活性玻璃可促进骨长入骨科植入物上的多孔钛涂层

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Purpose The aim of the study was to verify the ability of nanoparticulate bioactive glass (BAG) to infiltrate into the porous titanium (Ti) layer on Ti-based implants to promote osseointegration. Methods The porous titanium layer on Ti-based implants was impregnated with nanoparticulate BAG. The implants without or with BAG were implanted bilaterally in tibial holes of ten New Zealand white rabbits. The rabbits were sacrificed after ten weeks for examinations. Beside histological examination, EDXS analysis of polished crosssections of explanted implants was also performed with the aim to quantitatively evaluate the bone-to-pore contact and bone-in-pore ratio. Results After ten weeks, EDXS analyses of cross-sections of the explanted implants confirmed that bioactive glass was fully resorbed and that the pores throughout the thickness of the porous titanium layer were to a large extent filled with a new bone. In the absence of bioactive glass, only the outer part of the porous layer was filled with bone. The implants without BAG in the porous Ti-layer exhibited similar boneto- pore contact, while significant improvement of bone ingrowth into the pores was observed for the implants with BAG (38%), as opposed to those without it (22%). Conclusion This study confirmed that the nanoparticulate bioactive glass within the porous titanium surface layer on implants promotes osseointegration and stimulates the formation of bone within the pores.
机译:目的本研究的目的是验证纳米颗粒生物活性玻璃(BAG)渗入Ti基植入物上的多孔钛(Ti)层中以促进骨整合的能力。方法用纳米颗粒BAG浸渍钛基植入物上的多孔钛层。不带或带BAG的植入物被双边植入10只新西兰白兔的胫骨孔中。十周后处死兔子进行检查。除组织学检查外,还对植入物的抛光横截面进行了EDXS分析,目的是定量评估骨孔接触和骨孔比率。结果十周后,EDXS对植入物的横截面进行分析,证实生物活性玻璃被完全吸收,并且整个多孔钛层厚度的孔在很大程度上被新骨填充。在不存在生物活性玻璃的情况下,仅多孔层的外部填充有骨。在多孔Ti层中没有BAG的植入物表现出相似的骨孔接触,而具有BAG的植入物(38%)与没有BAG的植入物(22%)相比观察到骨向内生长的显着改善。结论这项研究证实,植入物上多孔钛表面层内的纳米生物活性玻璃可促进骨整合并刺激孔内骨骼的形成。

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