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二氧化钛含量增加对磷酸盐基玻璃的体积和表面性能的影响。

Effect of increasing titanium dioxide content on bulk and surface properties of phosphate-based glasses.

作者信息

Abou Neel Ensanya Ali, Chrzanowski Wojciech, Knowles Jonathan Campbell

机构信息

Division of Biomaterials and Tissue Engineering, UCL Eastman Dental Institute, 256 Gray's Inn Road, London WC1X 8LD, UK.

出版信息

Acta Biomater. 2008 May;4(3):523-34. doi: 10.1016/j.actbio.2007.11.007. Epub 2007 Dec 7.

Abstract

There is an ingoing need for more effective and less costly bone substitute materials. In a previous study, addition of titanium dioxide (TiO2) up to 5 mol.% was shown to be effective in controlling glass degradation, and this was reflected in enhanced gene expression and bone-forming capacity of phosphate-based glasses. In the current study, incorporation of the maximum possible amount of TiO2 has been attempted in order to further improve the biological response of these glasses. This report describes the physical, surface properties and short-term response of an osteoblast cell line (MG63) on phosphate glasses doped with the maximum possible TiO2 content. The results showed that a maximum of 15 mol.% TiO2 can be incorporated into the ternary formulations while maintaining their amorphous nature; such incorporation was associated with a significant increase in density and glass transition temperature. On crystallization, X-ray diffraction analysis showed the presence of TiP2O7 and NaCa(PO3)3 as the main phases for all TiO2-containing glasses, while beta-(CaP2O6) was only detected for 10 and 15 mol.% TiO2 glasses. The degradation rate, however, was significantly reduced by an order of magnitude with incorporation of 10 and 15 mol.% TiO2, and this was reflected in the released ions. This change in the bulk properties, produced with TiO2 incorporation, was also associated with a significant change in the hydrophilicity and surface reactivity of these glasses. Even though the addition of TiO2 reduced the hydrophilicity and the surface free energy of these glasses compared to TiO2 free composition, TiO2-containing glasses still have a significantly reactive surface layer compared to Thermanox. Generally glasses with 5-15 mol.% TiO2 supported MG63 cell growth and maintained high cell viability for up to 7 days culture, which is comparable to Thermanox. Based on the results obtained from this study, TiO2-containing phosphate glasses are promising substrates for bone tissue engineering applications.

摘要

对于更有效且成本更低的骨替代材料存在持续的需求。在先前的一项研究中,添加高达5摩尔%的二氧化钛(TiO₂)被证明在控制玻璃降解方面是有效的,这在基于磷酸盐的玻璃的基因表达增强和骨形成能力中得到了体现。在当前的研究中,已尝试掺入最大可能量的TiO₂,以进一步改善这些玻璃的生物学反应。本报告描述了成骨细胞系(MG63)在掺杂有最大可能TiO₂含量的磷酸盐玻璃上的物理、表面性质和短期反应。结果表明,在保持其非晶态性质的同时,最多可将15摩尔%的TiO₂掺入三元配方中;这种掺入与密度和玻璃化转变温度的显著增加有关。结晶时,X射线衍射分析表明,对于所有含TiO₂的玻璃,TiP₂O₇和NaCa(PO₃)₃是主要相,而仅在10和15摩尔%的TiO₂玻璃中检测到β-(CaP₂O₆)。然而,随着10和15摩尔%的TiO₂的掺入,降解速率显著降低了一个数量级,这在释放的离子中得到了体现。随着TiO₂的掺入而产生的这些整体性质的变化,也与这些玻璃的亲水性和表面反应性的显著变化有关。尽管与不含TiO₂的组合物相比,TiO₂的添加降低了这些玻璃的亲水性和表面自由能,但与Thermanox相比,含TiO₂的玻璃仍具有显著反应性的表面层。一般来说,含5 - 15摩尔%TiO₂的玻璃支持MG63细胞生长,并在长达7天的培养中保持高细胞活力,这与Thermanox相当。基于本研究获得的结果,含TiO₂的磷酸盐玻璃是骨组织工程应用中有前景的基质。

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