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通过羟基化对惰性氧化铝陶瓷进行生物活化。

Bioactivation of inert alumina ceramics by hydroxylation.

作者信息

Fischer Horst, Niedhart Christopher, Kaltenborn Nadine, Prange Andreas, Marx Rudolf, Niethard Fritz Uwe, Telle Rainer

机构信息

Department of Ceramics and Refractory Materials, RWTH Aachen University, Mauerstrasse 5, D-52064 Aachen, Germany.

出版信息

Biomaterials. 2005 Nov;26(31):6151-7. doi: 10.1016/j.biomaterials.2005.04.038.

Abstract

Alumina ceramics (Al(2)O(3)) are frequently used for medical implants and prostheses because of the excellent biocompatibility, and the high mechanical reliability of the material. Inauspiciously alumina is not suitable for implant components with bone contact, because the material is bioinert and thereby no bony ongrowth, and subsequently loosening of the implant occurs. Here, we present a new method to bioactivate the surface of the material. Specimens made of high purity alumina were treated in sodium hydroxide. Cell culture tests with osteoblast-like cells as well as spectroscopical and mechanical tests were performed. Aluminium hydroxide groups were detected on the surface of the treated specimens. Enhanced cell adhesion, proliferation and secretion of osteocalcin were determined after hydroxylation. The bioactivating treatment had no deteriorating effect on the short- and long-term strength behaviour. Our results indicate that the described surface technique could be used to develop a new class of osseointegrative high-strength ceramic implants.

摘要

氧化铝陶瓷(Al₂O₃)因其出色的生物相容性和材料的高机械可靠性,常用于医疗植入物和假体。不幸的是,氧化铝不适用于与骨接触的植入部件,因为该材料具有生物惰性,因此不会发生骨生长,随后会出现植入物松动。在此,我们提出一种对材料表面进行生物活化的新方法。用高纯度氧化铝制成的标本在氢氧化钠中进行处理。进行了以成骨样细胞为对象的细胞培养测试以及光谱和力学测试。在处理过的标本表面检测到氢氧化铝基团。羟基化后确定细胞黏附、增殖和骨钙素分泌增强。这种生物活化处理对短期和长期强度性能没有恶化影响。我们的结果表明,所描述的表面技术可用于开发新型骨整合高强度陶瓷植入物。

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