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多孔生物活性钛的力学性能和骨传导性

Mechanical properties and osteoconductivity of porous bioactive titanium.

作者信息

Takemoto Mitsuru, Fujibayashi Shunshuke, Neo Mashashi, Suzuki Jun, Kokubo Tadashi, Nakamura Takashi

机构信息

Department of Orthopaedic Surgery, Graduate School of Medicine, Kyoto University, Shogoin, Kawahara-cho 54, Sakyo-ku, Kyoto 606-8507, Japan.

出版信息

Biomaterials. 2005 Oct;26(30):6014-23. doi: 10.1016/j.biomaterials.2005.03.019.

Abstract

Porous bioactive titanium implants (porosity of 40%) were produced by a plasma-spray method and subsequent chemical and thermal treatments of immersion in a 5M aqueous NaOH solution at 60 degrees C for 24 h, immersion in distilled water at 40 degrees C for 48 h, and heating to 600 degrees C for 1 h. Compression strength and bending strength were 280 MPa (0.2% offset yield strength 85.2 MPa) and 101 MPa, respectively. For in vivo analysis, bioactive and nontreated porous titanium cylinders were implanted into 6mm diameter holes in rabbit femoral condyles. The percentage of bone-implant contact (affinity index) of the bioactive implants (BGs) was significantly larger than for the nontreated implants (CGs) at all postimplantation times (13.5 versus 10.5, 16.7 versus 12.7, 17.7 versus 10.2, 19.1 versus 7.8 at 2, 4, 8 and 16 weeks, respectively). The percentage of bone area ingrowth showed a significant increase with the BGs, whereas with the CGs it appeared to decrease after 4 weeks (10.7 versus 9.9, 12.3 versus 13.1, 15.2 versus 9.8, 20.6 versus 8.7 at 2, 4, 8 and 16 weeks, respectively). These results suggest that porous bioactive titanium has sufficient mechanical properties and biocompatibility for clinical use under load-bearing conditions.

摘要

采用等离子喷涂法以及随后的化学和热处理工艺制备了孔隙率为40%的多孔生物活性钛植入物,具体包括在60℃的5M氢氧化钠水溶液中浸泡24小时、在40℃的蒸馏水中浸泡48小时以及加热至600℃保持1小时。其抗压强度和抗弯强度分别为280MPa(0.2% 偏移屈服强度为85.2MPa)和101MPa。为进行体内分析,将生物活性和未处理的多孔钛圆柱体植入兔股骨髁直径6mm的孔中。在所有植入后的时间点,生物活性植入物(BGs)的骨-植入物接触百分比(亲和指数)均显著高于未处理的植入物(CGs)(在2、4、8和16周时分别为13.5对10.5、16.7对12.7、17.7对10.2、19.1对7.8)。骨内生长面积百分比在BGs组显著增加,而在CGs组中,4周后似乎有所下降(在2、4、8和16周时分别为10.7对9.9、12.3对13.1、15.2对9.8、20.6对8.7)。这些结果表明,多孔生物活性钛在承重条件下具有足够的力学性能和生物相容性,可用于临床。

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