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将纳米晶金刚石涂层的 Ti6Al4V 植入物与 BMP-7 功能化,可促进细胞外基质在体外矿化,并在体内更快地实现骨整合。

Coating Ti6Al4V implants with nanocrystalline diamond functionalized with BMP-7 promotes extracellular matrix mineralization in vitro and faster osseointegration in vivo.

机构信息

Institute of Physiology of the Czech Academy of Sciences, Videnska 1083, 142 20, Prague 4, Czech Republic.

Department of Pathology, Charles University, Third Faculty of Medicine, Ruska 2411, 100 00, Prague 10, Czech Republic.

出版信息

Sci Rep. 2022 Mar 28;12(1):5264. doi: 10.1038/s41598-022-09183-z.

Abstract

The present study investigates the effect of an oxidized nanocrystalline diamond (O-NCD) coating functionalized with bone morphogenetic protein 7 (BMP-7) on human osteoblast maturation and extracellular matrix mineralization in vitro and on new bone formation in vivo. The chemical structure and the morphology of the NCD coating and the adhesion, thickness and morphology of the superimposed BMP-7 layer have also been assessed. The material analysis proved synthesis of a conformal diamond coating with a fine nanostructured morphology on the Ti6Al4V samples. The homogeneous nanostructured layer of BMP-7 on the NCD coating created by a physisorption method was confirmed by AFM. The osteogenic maturation of hFOB 1.19 cells in vitro was only slightly enhanced by the O-NCD coating alone without any increase in the mineralization of the matrix. Functionalization of the coating with BMP-7 resulted in more pronounced cell osteogenic maturation and increased extracellular matrix mineralization. Similar results were obtained in vivo from micro-CT and histological analyses of rabbit distal femurs with screws implanted for 4 or 12 weeks. While the O-NCD-coated implants alone promoted greater thickness of newly-formed bone in direct contact with the implant surface than the bare material, a further increase was induced by BMP-7. It can be therefore concluded that O-NCD coating functionalized with BMP-7 is a promising surface modification of metallic bone implants in order to improve their osseointegration.

摘要

本研究探讨了经骨形态发生蛋白 7(BMP-7)功能化的氧化纳米晶金刚石(O-NCD)涂层对人成骨细胞成熟和细胞外基质矿化的体外影响,以及对体内新骨形成的影响。还评估了 NCD 涂层的化学结构和形态以及叠加的 BMP-7 层的粘附、厚度和形态。材料分析证明,在 Ti6Al4V 样品上合成了具有精细纳米结构形态的共形金刚石涂层。通过物理吸附法在 NCD 涂层上形成的均匀纳米结构 BMP-7 层通过 AFM 得到证实。单独的 O-NCD 涂层仅略微增强了 hFOB 1.19 细胞的成骨成熟,而基质的矿化没有增加。涂层的 BMP-7 功能化导致更明显的细胞成骨成熟和细胞外基质矿化。从植入螺钉的兔子远端股骨的微 CT 和组织学分析中获得了类似的体内结果,植入螺钉 4 或 12 周。虽然单独的 O-NCD 涂层植入物比裸材料更能促进与植入物表面直接接触的新形成骨的厚度增加,但 BMP-7 进一步增加了厚度。因此,可以得出结论,经 BMP-7 功能化的 O-NCD 涂层是改善金属骨植入物骨整合的有前途的表面改性方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f0e8/8960880/c0ab3390b8ad/41598_2022_9183_Fig1_HTML.jpg

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