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具有不同组成和表面形貌的陶瓷-聚合物复合材料的生物活性

Bioactivity of ceramic-polymer composites with varied composition and surface topography.

作者信息

Rea S M, Best S M, Bonfield W

机构信息

Department of Materials Science and Metallurgy, University of Cambridge, Pembroke Street, Cambridge CB2 3QZ, UK.

出版信息

J Mater Sci Mater Med. 2004 Sep;15(9):997-1005. doi: 10.1023/B:JMSM.0000042685.63383.86.

Abstract

HAPEX trade mark (40 vol % hydroxyapatite in a high-density polyethylene matrix) and AWPEX (40 vol % glass-ceramic apatite-wollastonite in a high-density polyethylene matrix) are composites designed to provide bioactivity and to match the mechanical properties of human cortical bone. HAPEX trade mark has had clinical success in middle ear and orbital implants, and there is great potential for further orthopaedic applications of these materials. However, more detailed in vitro investigations must be performed to better understand the biological interactions of the composites. In this study, the bioactivity of each material was assessed. Specifically, the effects of controlled surface topography and ceramic filler composition on apatite layer formation in acellular simulated body fluid (SBF) with ion concentration similar to those of human blood plasma were examined. Samples were prepared as 1 x 10 x 10 mm(3) tiles with polished, roughened or parallel-grooved surface finishes, and were incubated in 20 ml of SBF at 36.5 degrees C for one, three, seven or 14 days. The formation of an apatite layer on the composite surface after immersion was demonstrated by thin-film X-ray diffraction, environmental scanning electron microscopy and energy dispersive X-ray analysis. Variations in sample weight and solution pH over the period of incubation were also recorded. Significant differences were found between the two materials tested, with greater bioactivity in AWPEX than HAPEX trade mark. Results also showed surface topography to be important, with rougher samples correlated to earlier apatite formation. Osteoblast-like cells proliferated favourably on both composite materials, with many filopodia connections, preferential attachment to ceramic particles and contact guidance effects evident.

摘要

HAPEX商标产品(在高密度聚乙烯基体中含有40体积%的羟基磷灰石)和AWPEX(在高密度聚乙烯基体中含有40体积%的玻璃陶瓷磷灰石-硅灰石)是旨在提供生物活性并匹配人体皮质骨力学性能的复合材料。HAPEX商标产品在中耳和眼眶植入物方面已取得临床成功,这些材料在骨科的进一步应用具有巨大潜力。然而,必须进行更详细的体外研究,以更好地了解这些复合材料的生物相互作用。在本研究中,对每种材料的生物活性进行了评估。具体而言,研究了可控表面形貌和陶瓷填料组成对在离子浓度与人血浆相似的无细胞模拟体液(SBF)中磷灰石层形成的影响。将样品制备成1×10×10 mm³的薄片,表面处理为抛光、粗糙或平行沟槽状,并在36.5℃下于20 ml SBF中孵育1、3、7或14天。通过薄膜X射线衍射、环境扫描电子显微镜和能量色散X射线分析证明了浸泡后复合材料表面磷灰石层的形成。还记录了孵育期间样品重量和溶液pH值的变化。在所测试的两种材料之间发现了显著差异,AWPEX的生物活性高于HAPEX商标产品。结果还表明表面形貌很重要,较粗糙的样品与更早的磷灰石形成相关。成骨样细胞在两种复合材料上均良好增殖,有许多丝状伪足连接,对陶瓷颗粒有优先附着且明显存在接触导向效应。

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