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新型 Ti 涂层与聚醚醚酮的体内反应:植入物外周和内表面的评估。

The in vivo response to a novel Ti coating compared with polyether ether ketone: evaluation of the periphery and inner surfaces of an implant.

机构信息

Surgical & Orthopaedic Research Laboratories, Prince of Wales Clinical School - The University of New South Wales, Avoca St, Randwick, Sydney, NSW 2031, Australia.

Surgical & Orthopaedic Research Laboratories, Prince of Wales Clinical School - The University of New South Wales, Avoca St, Randwick, Sydney, NSW 2031, Australia.

出版信息

Spine J. 2018 Jul;18(7):1231-1240. doi: 10.1016/j.spinee.2018.02.017. Epub 2018 Feb 26.

Abstract

BACKGROUND CONTEXT

Increasing bone ongrowth and ingrowth of polyether ether ketone (PEEK) interbody fusion devices has the potential to improve clinical outcomes.

PURPOSE

This study evaluated the in vivo response of promoting new bone growth and bone apposition with NanoMetalene (NM) compared with PEEK alone in a cancellous implantation site with an empty aperture.

STUDY DESIGN

This is a randomized control animal study.

METHODS

Implants and funding for this study were provided by SeaSpine (60,000 USD). Cylindrical dowels with two apertures were prepared as PEEK with a sub-micron layer of the titanium (NM). The titanium coating was applied over the entire implant (Group 1) or just the apertures (Group 2). Polyether ether ketone implants with no coating served as controls (Group 3). Implants were placed in the cancellous bone of the distal femur or proximal tibia with no graft material placed in the apertures in eight adult sheep. Bone ongrowth to the surface of the implant and ingrowth into the apertures was assessed at 4 and 8 weeks after surgery with micro-computed tomography (CT) and undecalcified histology.

RESULTS

The apertures in the implants were notably empty in the PEEK group at 4 and 8 weeks. In contrast, new bone formation into the apertures was found in samples coated with NM even though no graft material was placed into the defect. The bone growing into the aperture tracked along the titanium layer. Apertures with the titanium coating demonstrated significantly more bone by micro-CT qualitative grading compared with PEEK with average bone coverage scores of Group 1 (NM) 1.62±0.89, Group 2 (NM apertures only) 1.62±0.77, and Group 3 (PEEK) 0.43±0.51, respectively, at 4 weeks (p<.01) and Group 1 (NM) 1.79±1.19, Group 2 (NM apertures only) 1.98±1.18, and Group 3 (PEEK) 0.69±0.87, respectively, at 8 weeks (p<.05). The amount of bone in the apertures (ingrowth) quantified using the volumetric data from the micro-CT supported an overall increase in bone volume inside the apertures with the titanium coating compared with PEEK. Histology showed newly formed woven bone tracked along the surface of the titanium in the apertures. The PEEK interface presented the typical nonreactive fibrous tissue inside the apertures at 4 weeks and some focal contact with bone on the outside at 4 weeks and 8 weeks.

CONCLUSIONS

Micro-CT and histology demonstrated bone ongrowth to the surfaces coated with NM where the newly formed bone tracked along the thin titanium-coated surfaces. Polyether ether ketone surfaces presented the nonreactive fibrous tissue at the interface as previously reported in preclinical scenarios.

摘要

背景

增加聚醚醚酮(PEEK)椎间融合器的骨长入和骨内生长有可能改善临床结果。

目的

本研究评估了纳米金属烯(NM)与单纯 PEEK 相比,在有空腔的松质植入部位促进新骨生长和骨贴附的体内反应。

研究设计

这是一项随机对照动物研究。

方法

这项研究的植入物和资金由 SeaSpine 提供(60000 美元)。制备带有两个孔的圆柱形销钉,其中一个为 PEEK,另一个为亚微米层钛(NM)。钛涂层覆盖整个植入物(第 1 组)或仅覆盖孔(第 2 组)。无涂层的聚醚醚酮植入物作为对照(第 3 组)。将植入物放置在远端股骨或近端胫骨的松质骨中,在 8 只成年羊的孔中不放置移植物材料。术后 4 周和 8 周,使用微计算机断层扫描(CT)和未脱钙组织学评估植入物表面的骨长入和孔内的骨内生长。

结果

在第 4 周和第 8 周,PEEK 组的植入物中的孔明显为空。相比之下,即使没有在缺陷部位放置移植物材料,用 NM 涂层的新骨也形成到孔中。骨进入孔中沿着钛层生长。与 PEEK 相比,具有钛涂层的孔在微 CT 定性分级中显示出明显更多的骨,平均骨覆盖率评分分别为第 1 组(NM)1.62±0.89、第 2 组(仅 NM 孔)1.62±0.77 和第 3 组(PEEK)0.43±0.51,分别为 4 周(p<.01)和第 1 组(NM)1.79±1.19、第 2 组(仅 NM 孔)1.98±1.18 和第 3 组(PEEK)0.69±0.87,分别为 8 周(p<.05)。使用微 CT 体积数据定量的孔内骨量(骨内生长)支持与 PEEK 相比,钛涂层内部孔内骨量总体增加。组织学显示新形成的编织骨沿着孔内的钛表面生长。在第 4 周,PEEK 界面在孔内呈现典型的非反应性纤维组织,在第 4 周和第 8 周,在孔外与骨有一些点状接触。

结论

微 CT 和组织学显示 NM 涂层表面的骨长入,新形成的骨沿着薄的钛涂层表面生长。PEEK 表面在界面处呈现出以前在临床前情况下报道的非反应性纤维组织。

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