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多孔钛涂层聚醚醚酮植入物表现出改善的骨-植入物界面:一项体外和体内的生化、生物力学及组织学研究。

Porous titanium-coated polyetheretherketone implants exhibit an improved bone-implant interface: an in vitro and in vivo biochemical, biomechanical, and histological study.

作者信息

Cheng Boyle C, Koduri Sravanthi, Wing Charles A, Woolery Natalie, Cook Daniel J, Spiro Robert C

机构信息

Neuroscience Institute, Allegheny Health Network, Pittsburgh, PA 15212, USA.

Research and Development, Aesculap Implant Systems, LLC, Breinigsville, PA 18031, USA,

出版信息

Med Devices (Auckl). 2018 Oct 29;11:391-402. doi: 10.2147/MDER.S180482. eCollection 2018.

Abstract

PURPOSE

Spinal interbody fusion cages are designed to provide immediate stabilization for adjoining vertebrae and ideally enable bony ingrowth to achieve successful integration. For such an implant, cells must be able to attach, move, grow, and differentiate on its surface. These cellular interactions are dependent on how the implant surface enables the coating and binding of blood and tissue fluid proteins that support cell adhesion. The purpose of this study was to evaluate the in vitro and in vivo osteoblast cell-implant surface interactions that result in osseointegration onto a surface composed of plasma-sprayed titanium on a polyetheretherketone (PEEK) substrate or titanium-coated PEEK (Ti-PEEK) (Plasmapore) as compared to uncoated PEEK implants.

MATERIALS AND METHODS

The influence of the Ti-PEEK surface modification on the biochemical, biomechanical, and histological properties at the bone-implant interface is demonstrated both in vitro using simulated bone-forming cell culture experiments and in vivo using a 12- and 24-week ovine implant model.

RESULTS

Osteoblast-like cells attached to the Ti-PEEK surface upregulated early bone-forming activity as measured by an increase in transcription and translation of ALP and BMP-2 when compared to cells on PEEK. Similarly, a significant increase in new bone formation, bony apposition, and pullout strength was demonstrated on Ti-PEEK implants when compared to PEEK implants at 12 and 24 weeks in an ovine implant in vivo model.

CONCLUSION

The study shows that the Ti-PEEK surface demonstrated enhanced osseointegrative properties compared to PEEK both in vitro and in vivo.

摘要

目的

脊柱椎间融合器旨在为相邻椎体提供即时稳定性,并理想地促进骨长入以实现成功融合。对于这样的植入物,细胞必须能够在其表面附着、移动、生长和分化。这些细胞相互作用取决于植入物表面如何促进支持细胞粘附的血液和组织液蛋白的包被和结合。本研究的目的是评估与未涂层的聚醚醚酮(PEEK)植入物相比,在聚醚醚酮(PEEK)基底上的等离子喷涂钛或钛涂层PEEK(Ti-PEEK)(Plasmapore)表面上发生骨整合的体外和体内成骨细胞-植入物表面相互作用。

材料与方法

使用模拟骨形成细胞培养实验在体外以及使用12周和24周的绵羊植入模型在体内证明了Ti-PEEK表面改性对骨-植入物界面处生化、生物力学和组织学特性的影响。

结果

与PEEK上的细胞相比,附着在Ti-PEEK表面的成骨样细胞通过碱性磷酸酶(ALP)和骨形态发生蛋白-2(BMP-2)转录和翻译的增加来上调早期骨形成活性。同样,在绵羊体内植入模型中,与12周和24周时的PEEK植入物相比,Ti-PEEK植入物上的新骨形成、骨附着和拔出强度有显著增加。

结论

该研究表明,与PEEK相比,Ti-PEEK表面在体外和体内均表现出增强的骨整合特性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b9aa/6211303/a803f69bf8a5/mder-11-391Fig1.jpg

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