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具有纳米结构氧化锆表面的钛植入物在骨整合过程中促进种植体周围骨的成熟。

Titanium implant with nanostructured zirconia surface promotes maturation of peri-implant bone in osseointegration.

作者信息

Dusad Anand, Chakkalakal Dennis A, Namavar Fereydoon, Haider Hani, Hanisch Brock, Duryee Michael J, Diaz April, Rensch Adam, Zhang Yijia, Hess Ryan, Thiele Geoffrey M, Fehringer Edward V

机构信息

Experimental Immunology Laboratory, Veterans Affairs Nebraska-Western Iowa Health Care System (VA NWIHCS), Research Services 151, Omaha, NE, USA.

出版信息

Proc Inst Mech Eng H. 2013 May;227(5):510-22. doi: 10.1177/0954411913479300. Epub 2013 Mar 8.

Abstract

The goal of the experiment outlined in this article is to improve upon noncemented methods of arthroplasty for clinical application in elderly patients. This was done by determining whether titanium implants with a novel nanostructured zirconia surface, which was created by ion beam-assisted deposition, would prevent impaired osseointegration of intramedullary implants in 1-year-old rats receiving a protein-deficient diet. Specifically, we asked whether the implant with the nanostructured zirconia surface would increase expression of markers of bone maturation within the remodeling of peri-implant woven bone. The control implants, which were made of commercially pure titanium, had a polished surface ex vivo but are known to acquire a microstructured titania surface in vivo. Ten 1-year-old rats received experimental implant (group A) and 10 had control (group B) implants. Ten 3-month-old rats received normal protein diet and the control implant (group C). Animals were euthanized 8 weeks after implantation, and transverse sections of femur-implant samples were used for histology, micro-computed tomography and immunohistochemical evaluations. In group B, the expression of α2β1 and α5β1 integrins, which are known to mediate osteoblast adhesion, glycosaminoglycans, heparan sulfate and chondroitin sulfate, was less than half of that in group C. Important to this study, the zirconia surface used in group A prevented these deficiencies. Therefore, these results indicate that nanostructured zirconia surface created on clinical implants by ion beam-assisted deposition may prevent impaired osseointegration in elderly patients by promoting quicker maturation of peri-implant woven bone.

摘要

本文所述实验的目的是改进非骨水泥型关节置换术方法,以便应用于老年患者的临床治疗。具体做法是,确定通过离子束辅助沉积制备的具有新型纳米结构氧化锆表面的钛植入物,能否防止1岁且饮食中缺乏蛋白质的大鼠出现髓内植入物骨整合受损的情况。具体而言,我们研究了具有纳米结构氧化锆表面的植入物是否会在植入物周围编织骨重塑过程中增加骨成熟标志物的表达。对照植入物由商业纯钛制成,体外表面经过抛光处理,但已知其在体内会形成微结构二氧化钛表面。10只1岁大鼠接受实验植入物(A组),10只接受对照植入物(B组)。10只3个月大的大鼠接受正常蛋白质饮食并植入对照植入物(C组)。植入8周后对动物实施安乐死,取股骨 - 植入物样本的横切面进行组织学、微型计算机断层扫描和免疫组织化学评估。在B组中,已知介导成骨细胞黏附的α2β1和α5β1整合素、糖胺聚糖、硫酸乙酰肝素和硫酸软骨素的表达量不到C组的一半。对本研究而言重要的是,A组使用的氧化锆表面避免了这些不足。因此,这些结果表明,通过离子束辅助沉积在临床植入物上制备的纳米结构氧化锆表面,可能通过促进植入物周围编织骨更快成熟,防止老年患者出现骨整合受损的情况。

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