Kim Hae-Won, Kim Hyoun-Ee, Salih Vehid, Knowles Jonathan C
School of Materials Science and Engineering, Seoul National University, Seoul 151-742, Korea.
J Biomed Mater Res A. 2004 Mar 1;68(3):522-30. doi: 10.1002/jbm.a.20094.
Different types of calcium phosphates [hydroxyapatite (HA), fluorapatite (FA), tricalcium phosphate (TCP), and their composites (HA + FA, HA + TCP)] were coated on a zirconia (ZrO(2)) porous scaffold using a powder slurry method. The ZrO(2) porous scaffold was intended for a load-bearing implant, and the apatite layers were coated to improve osteoconductivity. The insertion of an FA intermediate layer between the coating layer and ZrO(2) scaffold effectively suppressed the reaction between the calcium phosphate and ZrO(2) and maintained the coating layer at the initial powder composition. The obtained coating layer, of a thickness of approximately 30 microm, was relatively microporous and firmly adherent to the ZrO(2) scaffold. Dissolution tests in physiological solution showed typical differences depending on the coating layers, with the dissolution rate increasing in the order TCP > HA + TCP > HA > HA + FA > FA. This result suggests the functional coating of the calcium phosphates in view of tailoring the solubility. Osteoblast-like cells, MG63 and HOS, responded similarly in terms of cell growth, morphology, and proliferation rate regardless of the coating types, indicating favorable and comparable cell viability. However, the alkaline phosphatase (ALP) activity of the cells on the pure HA and HA composite coatings (HA + FA and HA + TCP) expressed at higher levels compared to those on pure FA and pure TCP coatings for both MG63 and HOS cells, suggesting a selective cell activity depending on the coating types. All the calcium phosphate-coated-ZrO(2) scaffolds showed higher ALP levels compared to pure ZrO(2) scaffold.
采用粉末浆料法将不同类型的磷酸钙[羟基磷灰石(HA)、氟磷灰石(FA)、磷酸三钙(TCP)及其复合材料(HA + FA、HA + TCP)]涂覆在氧化锆(ZrO₂)多孔支架上。ZrO₂多孔支架用于承重植入物,涂覆磷灰石层以提高骨传导性。在涂层与ZrO₂支架之间插入FA中间层可有效抑制磷酸钙与ZrO₂之间的反应,并使涂层保持初始粉末组成。获得的涂层厚度约为30微米,相对多孔且牢固地附着在ZrO₂支架上。在生理溶液中的溶解试验表明,根据涂层不同存在典型差异,溶解速率按TCP > HA + TCP > HA > HA + FA > FA的顺序增加。该结果表明从定制溶解度的角度对磷酸钙进行功能涂层处理。成骨样细胞MG63和HOS在细胞生长、形态和增殖速率方面的反应相似,无论涂层类型如何,表明细胞活力良好且具有可比性。然而,对于MG63和HOS细胞,纯HA和HA复合涂层(HA + FA和HA + TCP)上的细胞碱性磷酸酶(ALP)活性高于纯FA和纯TCP涂层上的细胞,这表明细胞活性具有涂层类型选择性。所有涂覆磷酸钙的ZrO₂支架的ALP水平均高于纯ZrO₂支架。