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微弧氧化形成的一系列含锶羟基磷灰石涂层的骨整合能力。

Bone integration capability of a series of strontium-containing hydroxyapatite coatings formed by micro-arc oxidation.

机构信息

Department of Prosthodontics, School of Stomatology, Fourth Military Medical University, No. 145 West Changle Road, Xi'an 710032, China.

出版信息

J Biomed Mater Res A. 2013 Sep;101(9):2465-80. doi: 10.1002/jbm.a.34548. Epub 2013 Jan 24.

DOI:10.1002/jbm.a.34548
PMID:23348908
Abstract

Strontium-containing hydroxyapatites (Sr-HA) combine the desirable bone regenerative properties of hydroxyapatites (HA) with anabolic and anti-catabolic effects of strontium cations. In the present work, a series of Sr(y)HA [Sr(y)Ca(10-y)(PO4)6(OH)2; y = 0, 0.5, 1, 2] coatings on titanium are produced by micro-arc oxidation (MAO), and the effects of the in vivo osseointegration ability of the coatings are investigated by using a rabbit model. All samples are subjected to biomechanical, surface elemental, micro-CT and histological analysis after 4 and 12 weeks of healing. The obtained results show that the MAO-formed coatings exhibit a microporous network structure composed of Sr(y)HA/Sr(y)HA-Sr(x)Ca(1-x)TiO3/Sr(x)Ca(1-x)TiO3-TiO2 multilayers, in which the outer Sr(y)HA and intermediate Sr(y)HA-Sr(x)Ca(1-x)TiO3 layers have a nanocrystalline structure. All Sr-HA coated implants induce marked improvements in the behavior of bone formation, quantity and quality of bone tissue around the implants than the control HA implant and in particular, the 20%Sr-HA coating promotes early bone formation as identified by polyfluorochrome sequential labeling. The bone-to-implant contact is increased by 46% (p < 0.05) and the pull-out strength is increased by 103% over the HA group (p < 0.01). Extensive areas of mineralized tissue densely deposit on the 20%Sr-HA coating after biomechanical testing, and the greatest improvement of bone microarchitecture are observed around the 20%Sr-HA implant. The identified biological parameters successfully demonstrate the osteoconductivity of 20%Sr-HA surfaces, which results not only in an acceleration but also an improvement of bone-implant integration. The study demonstrates the immense potential of 20%Sr-HA coatings in dental and orthopedic applications.

摘要

含锶羟基磷灰石(Sr-HA)将羟基磷灰石(HA)的理想骨再生特性与锶阳离子的合成代谢和抗分解代谢作用相结合。在本工作中,通过微弧氧化(MAO)在钛上制备了一系列 Sr(y)HA [Sr(y)Ca(10-y)(PO4)6(OH)2;y = 0、0.5、1、2] 涂层,并通过兔模型研究了涂层的体内骨整合能力。所有样品在愈合 4 和 12 周后进行生物力学、表面元素、微 CT 和组织学分析。所得结果表明,MAO 形成的涂层具有由 Sr(y)HA/Sr(y)HA-Sr(x)Ca(1-x)TiO3/Sr(x)Ca(1-x)TiO3-TiO2 多层组成的微孔网络结构,其中外部 Sr(y)HA 和中间 Sr(y)HA-Sr(x)Ca(1-x)TiO3 层具有纳米结构。所有 Sr-HA 涂层植入物均比对照 HA 植入物显著改善了骨形成行为、植入物周围骨组织的数量和质量,特别是 20%Sr-HA 涂层通过多荧光素顺序标记促进了早期骨形成。骨与植入物的接触增加了 46%(p < 0.05),与 HA 组相比,拔出强度增加了 103%(p < 0.01)。生物力学测试后,20%Sr-HA 涂层上大量矿化组织密集沉积,在 20%Sr-HA 植入物周围观察到骨微结构的最大改善。鉴定的生物学参数成功地证明了 20%Sr-HA 表面的骨引导性,这不仅加速了而且改善了骨-植入物的整合。该研究表明 20%Sr-HA 涂层在牙科和骨科应用中具有巨大的潜力。

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