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Bioactivity of porous titanium with hydrogen peroxide solution with or without tantalum chloride treatment at a low temperature

机译:有或没有氯化钽处理的多孔钛在过氧化氢溶液中的生物活性

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摘要

In this study, porous titanium was treated by a hydrogen peroxide solution with (HT) or without (HO) tantalum chloride at a low temperature to endow its bioactivity. The microstructure, film stability and in vitro and in vivo bioactivity of HT-treated and HO-treated porous titanium were investigated, and the non-treated one was used as control. After HT treatment, a well-crystallized titania nanoparticle film consisting of anatase phase with good film stability was formed on the surface of porous titanium, and the tantalum element appeared in the film, while the HO-treated porous titanium surface showed a dual structure with well-aligned nanorods as an outer layer and condensed nanoparticles as an inner layer consisting of a mixture of well-crystallized anatase and rutile phases. In vitro bioactivity assessment showed that both HT- and HO-treated porous titanium possessed high apatite-forming ability. More importantly, after implantation in the dorsal muscles of dogs, the HT- and HO-treated implants induced ectopic bone formation in its inner pores after 5 months, while the non-treated one did not. The present study showed that HT-treated porous titanium possessed good film stability and bioactivity to be used as bone repair materials in clinic under load-bearing conditions.
机译:在这项研究中,用过氧化氢溶液在低温下用(HT)或不使用(HO)氯化钽处理多孔钛,以赋予其生物活性。研究了经HT处理和HO处理的多孔钛的微观结构,薄膜稳定性以及体外和体内生物活性,并将未经处理的钛作为对照。 HT处理后,在多孔钛表面形成了由锐钛矿相组成的良好结晶的二氧化钛纳米颗粒膜,该膜具有良好的膜稳定性,并且钽元素出现在膜中,而HO处理的多孔钛表面则显示出双重结构。排列良好的纳米棒作为外层,浓缩的纳米颗粒作为内层,由锐化的锐钛矿相和金红石相的混合物组成。体外生物活性评估表明,HT和HO处理的多孔钛均具有高磷灰石形成能力。更重要的是,在犬背肌中植入后,经过HT和HO处理的植入物在5个月后诱导了其内孔异位骨的形成,而未经处理的植入物则没有。本研究表明,经高温处理的多孔钛具有良好的膜稳定性和生物活性,可在承重条件下用作临床骨修复材料。

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