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具有微孔结构的氧化锆-羟基磷灰石复合材料。

Zirconia-hydroxyapatite composite material with micro porous structure.

机构信息

Department of Biomaterials Science, Osaka University, 1-8 Yamada-oka, Suita 565-0871, Japan.

出版信息

Dent Mater. 2011 Nov;27(11):e205-12. doi: 10.1016/j.dental.2011.07.009. Epub 2011 Aug 3.

Abstract

OBJECTIVES

Titanium plates and apatite blocks are commonly used for restoring large osseous defects in dental and orthopedic surgery. However, several cases of allergies against titanium have been recently reported. Also, sintered apatite block does not possess sufficient mechanical strength. In this study, we attempted to fabricate a composite material that has mechanical properties similar to biocortical bone and high bioaffinity by compounding hydroxyapatite (HAp) with the base material zirconia (ZrO(2)), which possesses high mechanical properties and low toxicity toward living organisms.

METHODS

After mixing the raw material powders at several different ZrO(2)/HAp mixing ratios, the material was compressed in a metal mold (8 mm in diameter) at 5 MPa. Subsequently, it was sintered for 5 h at 1500°C to obtain the ZrO(2)/HAp composite. The mechanical property and biocompatibility of materials were investigated. Furthermore, osteoconductivity of materials was investigated by animal studies.

RESULTS

A composite material with a minute porous structure was successfully created using ZrO(2)/HAp powders, having different particle sizes, as the starting material. The material also showed high protein adsorption and a favorable cellular affinity. When the mixing ratio was ZrO(2)/HAp=70/30, the strength was equal to cortical bone. Furthermore, in vivo experiments confirmed its high osteoconductivity.

SIGNIFICANCE

The composite material had strength similar to biocortical bones with high cell and tissue affinities by compounding ZrO(2) and HAp. The ZrO(2)/HAp composite material having micro porous structure would be a promising bone restorative material.

摘要

目的

钛板和磷灰石块常用于修复口腔和骨科手术中的大骨缺损。然而,最近有几例对钛过敏的报道。此外,烧结磷灰石块不具有足够的机械强度。在本研究中,我们试图通过将具有高机械性能和低生物毒性的氧化锆(ZrO2)与羟基磷灰石(HAp)复合,制备一种具有类似皮质骨机械性能和高生物亲和力的复合材料。

方法

将原料粉末按不同ZrO2/HAp 混合比例混合后,在 5MPa 的金属模具中压缩(直径 8mm)。然后,在 1500°C 下烧结 5 小时,得到 ZrO2/HAp 复合材料。研究了材料的力学性能和生物相容性。此外,通过动物研究研究了材料的成骨性能。

结果

使用 ZrO2/HAp 粉末作为起始材料,成功制备了具有不同粒径的具有微小多孔结构的复合材料。该材料还表现出高蛋白质吸附和良好的细胞亲和力。当混合比为 ZrO2/HAp=70/30 时,其强度与皮质骨相当。此外,体内实验证实了其良好的成骨性能。

意义

通过将 ZrO2 和 HAp 复合,该复合材料具有类似于皮质骨的强度、高细胞和组织亲和力。具有微孔结构的 ZrO2/HAp 复合材料将是一种有前途的骨修复材料。

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