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玻璃陶瓷磷灰石-硅灰石-聚乙烯复合材料的磷灰石形成能力:填料含量的影响

Apatite-forming ability of glass-ceramic apatite-wollastonite - polyethylene composites: effect of filler content.

作者信息

Juhasz J A, Best S M, Bonfield W, Kawashita M, Miyata N, Kokubo T, Nakamura T

机构信息

Department of Materials Science and Metallurgy, University of Cambridge, UK.

出版信息

J Mater Sci Mater Med. 2003 Jun;14(6):489-95. doi: 10.1023/a:1023499728588.

Abstract

The bioactivity of a range of glass-ceramic apatite-wollastonite (A-W) - polyethylene composites (AWPEXs) with glass-ceramic A-W volume percentages ranging from 10 to 50, has been investigated in an acellular simulated body fluid (SBF) with ion concentrations similar to those of human blood plasma. The formation of a biologically active apatite layer on the composite surface after immersion in SBF was demonstrated by thin-film X-ray diffraction (TF-XRD) and field-emission scanning electron microscopy (FE-SEM). An apatite layer was formed on all the composites, with the rate of formation increasing with an increase in glass-ceramic A-W percentage. For composites with glass-ceramic A-W filler contents >or=30 vol %, the apatite layer was formed within 12 h of immersion, which is a comparable time for apatite formation on monolithic glass-ceramic A-W. Inductively coupled plasma atomic emission spectroscopy (ICP-AES) demonstrated that the apatite formation on AWPEX samples with 50 vol % filler content occurred in a manner similar to that seen on pure glass-ceramic A-W, in that the calcium, silicon, and magnesium ion concentrations increased and, conversely, a decrease was observed in the phosphate ion concentration. These results indicate that a suitable in vitro response was achieved on a composite incorporating particulate glass-ceramic A-W with a particularly favorable response being observed on the AWPEX sample with 50 vol % filler content.

摘要

对一系列玻璃陶瓷磷灰石-硅灰石(A-W)-聚乙烯复合材料(AWPEXs)进行了生物活性研究,这些复合材料中玻璃陶瓷A-W的体积百分比范围为10%至50%,研究是在离子浓度与人血浆相似的无细胞模拟体液(SBF)中进行的。通过薄膜X射线衍射(TF-XRD)和场发射扫描电子显微镜(FE-SEM)证明了复合材料浸入SBF后在其表面形成了具有生物活性的磷灰石层。所有复合材料上均形成了磷灰石层,其形成速率随着玻璃陶瓷A-W百分比的增加而提高。对于玻璃陶瓷A-W填料含量≥30 vol%的复合材料,浸入12小时内就形成了磷灰石层,这与整体玻璃陶瓷A-W上磷灰石形成的时间相当。电感耦合等离子体原子发射光谱(ICP-AES)表明,填料含量为5 vol%的AWPEX样品上磷灰石的形成方式与纯玻璃陶瓷A-W上的类似,即钙、硅和镁离子浓度增加,相反,磷酸根离子浓度降低。这些结果表明,在含有颗粒状玻璃陶瓷A-W的复合材料上实现了合适的体外反应,在填料含量为50 vol%的AWPEX样品上观察到了特别良好的反应。

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