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从氧化铈稳定四方氧化锆与细胞诱导羟基磷灰石之间的界面结构评估氧化锆的纳米级骨整合。

Nanoscale osseointegration of zirconia evaluated from the interfacial structure between ceria-stabilized tetragonal zirconia and cell-induced hydroxyapatite.

机构信息

Department of Biochemistry and Molecular Biology, School of Dental Medicine, Tsurumi University, 2-1-3 Tsurumi, Tsurumi-ku, Yokohama, 230-8501, Japan.

Department of Biochemistry and Molecular Biology, School of Dental Medicine, Tsurumi University, 2-1-3 Tsurumi, Tsurumi-ku, Yokohama, 230-8501, Japan.

出版信息

J Oral Biosci. 2024 Jun;66(2):281-287. doi: 10.1016/j.job.2024.05.003. Epub 2024 May 8.

Abstract

BACKGROUND

The osseointegration of zirconia implants has been evaluated based on their implant fixture bonding with the alveolar bone at the optical microscopic level. Achieving nano-level bonding between zirconia and bone apatite is crucial for superior osseointegration; however, only a few studies have investigated nanoscale bonding. This review outlines zirconia osseointegration, including surface modification, and presents an evaluation of nanoscale zirconia-apatite bonding and its structure.

HIGHLIGHT

Assuming osseointegration, the cells produced calcium salts on a ceria-stabilized zirconia substrate. We analyzed the interface between calcium salts and zirconia substrates using transmission electron microscopy and found that 1) the cell-induced calcium salts were bone-like apatite and 2) direct nanoscale bonding was observed between the bone-like apatite and zirconia crystals without any special modifications of the zirconia surface.

CONCLUSION

Structural affinity exists between bone apatite and zirconia crystals. Apatite formation can be induced by the zirconia surface. Zirconia bonds directly with apatite, indicating superior osseointegration in vivo.

摘要

背景

氧化锆种植体的骨整合已基于光学显微镜水平上种植体固定装置与牙槽骨的结合来评估。实现氧化锆与骨磷灰石之间的纳米级结合对于优异的骨整合至关重要,但只有少数研究探讨了纳米级结合。本综述概述了氧化锆的骨整合,包括表面改性,并评估了纳米级氧化锆-磷灰石结合及其结构。

重点

假设骨整合,细胞在氧化铈稳定的氧化锆基底上产生钙盐。我们使用透射电子显微镜分析了钙盐与氧化锆基底之间的界面,发现:1)细胞诱导的钙盐为类骨质磷灰石;2)在不进行氧化锆表面特殊改性的情况下,在类骨质磷灰石和氧化锆晶体之间观察到直接的纳米级结合。

结论

骨磷灰石与氧化锆晶体之间存在结构亲和力。氧化锆表面可以诱导磷灰石的形成。氧化锆直接与磷灰石结合,表明体内具有优异的骨整合。

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