增材制造 Ti-6Al-4V/聚醚醚酮复合多孔椎间融合 cage:猪模型中的骨生长和生物相容性评价。

Additive-manufactured Ti-6Al-4 V/Polyetheretherketone composite porous cage for Interbody fusion: bone growth and biocompatibility evaluation in a porcine model.

机构信息

Biomedical Technology and Device Research Laboratories, Industrial Technology Research Institute, Chutung, Hsinchu, Taiwan.

Department of Orthopedics, Taipei Medical University Hospital, Taipei, Taiwan.

出版信息

BMC Musculoskelet Disord. 2021 Feb 11;22(1):171. doi: 10.1186/s12891-021-04022-0.

Abstract

BACKGROUND

We developed a porous Ti alloy/PEEK composite interbody cage by utilizing the advantages of polyetheretherketone (PEEK) and titanium alloy (Ti alloy) in combination with additive manufacturing technology.

METHODS

Porous Ti alloy/PEEK composite cages were manufactured using various controlled porosities. Anterior intervertebral lumbar fusion and posterior augmentation were performed at three vertebral levels on 20 female pigs. Each level was randomly implanted with one of the five cages that were tested: a commercialized pure PEEK cage, a Ti alloy/PEEK composite cage with nonporous Ti alloy endplates, and three composite cages with porosities of 40, 60, and 80%, respectively. Micro-computed tomography (CT), backscattered-electron SEM (BSE-SEM), and histological analyses were performed.

RESULTS

Micro-CT and histological analyses revealed improved bone growth in high-porosity groups. Micro-CT and BSE-SEM demonstrated that structures with high porosities, especially 60 and 80%, facilitated more bone formation inside the implant but not outside the implant. Histological analysis also showed that bone formation was higher in Ti alloy groups than in the PEEK group.

CONCLUSION

The composite cage presents the biological advantages of Ti alloy porous endplates and the mechanical and radiographic advantages of the PEEK central core, which makes it suitable for use as a single implant for intervertebral fusion.

摘要

背景

我们利用聚醚醚酮(PEEK)和钛合金(Ti 合金)的优势,结合增材制造技术,开发了一种多孔 Ti 合金/PEEK 复合材料椎间融合器。

方法

采用不同可控孔隙率制造多孔 Ti 合金/PEEK 复合材料椎间融合器。20 只雌性猪行三节段前路腰椎融合和后路增强,每节段随机植入五种融合器中的一种进行测试:一种商业化的纯 PEEK 融合器、一种带无孔 Ti 合金端板的 Ti 合金/PEEK 复合材料融合器和三种孔隙率分别为 40%、60%和 80%的复合材料融合器。进行微计算机断层扫描(micro-CT)、背散射电子扫描电镜(BSE-SEM)和组织学分析。

结果

微 CT 和组织学分析显示,高孔隙率组的骨生长得到改善。微 CT 和 BSE-SEM 表明,高孔隙率结构,特别是 60%和 80%的孔隙率,促进了更多的骨形成在植入物内部,而不是外部。组织学分析还表明,Ti 合金组的骨形成高于 PEEK 组。

结论

该复合材料融合器具有 Ti 合金多孔端板的生物学优势和 PEEK 中心核的机械和影像学优势,适用于作为单一植入物进行椎间融合。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c9da/7879644/6cbaf77ffea1/12891_2021_4022_Fig1_HTML.jpg

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