Effect of Biomimetic Nanocrystalline Apatite Surface on Bone Ingrowth

J. Gelber, J. Hermida, S. Patil, C. Colwell, D. D’Lima
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Abstract

The Success of Hydroxyapatite-Coated Acetabular Components Has Not Been Consistent. Plasma-Sprayed Hydroxyapatite Coatings Work Well on Nonporous Substrates but Do Not Coat the Inner Surfaces of Open-Porous Substrates. Solution Deposition Can Generate Consistent Bioceramic Coats on Porous Surfaces that More Closely Mimic the Trabecular Pattern and Biochemistry at the Bone Interface. we Compared Bone Response to the Following Implants: Porous-Coated Ti6al4v Cylinders with 1 of 3 Treatments: Plasma Sprayed with Hydroxyapatite (HA), Coated with a Solution-Deposited Biomimetic Apatite Coating (BA), and Untreated (Control). Bilateral Femurs in 36 Rabbits Were Implanted with One of the above Implants. Bone Ingrowth for HA and BA Surfaces Was Significantly Higher than that for Control Surfaces. No Fragmentation or Debris Production Was Evident in the Apatite Coat of the BA Group. A Biomimetic Coat of Solution-Deposited Apatite May Be Resistant to Coating Delamination and Particle Generation.
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仿生纳米磷灰石表面对骨长入的影响
羟基磷灰石包覆的髋臼假体的成功并不是一致的。等离子喷涂羟基磷灰石涂层在无孔基底上效果良好,但在开放多孔基底的内表面不能涂覆。溶液沉积可以在多孔表面产生一致的生物陶瓷涂层,更接近地模拟骨界面的小梁模式和生物化学。我们比较了以下种植体的骨反应:三种处理中的一种:等离子喷涂羟基磷灰石(HA)、涂覆溶液沉积仿生磷灰石涂层(BA)和未处理(对照)。36只兔双侧股骨植入上述一种植入物。羟基磷灰石和羟基磷灰石表面的骨长入显著高于对照表面。BA组磷灰石层中没有明显的碎块或碎屑产生。溶液沉积磷灰石的仿生涂层可以抵抗涂层分层和颗粒生成。
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