de Carlos A, Borrajo J P, Serra J, González P, León B
Dpto. Bioquímica, Genética e Inmunología, University of Vigo, 36200, Vigo, Spain.
J Mater Sci Mater Med. 2006 Jun;17(6):523-9. doi: 10.1007/s10856-006-8935-1.
The aim of this study was to test the in vitro cytotoxicity of wood-based biomorphic Silicon Carbide (SiC) ceramics coated with bioactive glass, using MG-63 human osteoblast-like cells, with a view to their application in bone implantology. To better understand the scope of this study, it should be taken into account that biomorphic SiC ceramics have only recently been developed and this innovative product has important properties such as interconnected porosity, high strength and toughness, and easy shaping. In the solvent extraction test, all the extracts had almost no effect on cellular activity even at 100% concentration, and cells incubated in the bioactive glass-coated SiC ceramics extracts showed a proliferation rate similar to that of the Thermanox control. There were no significant differences when the cellular attachment response of the cells on the wood-based biomorphic SiC ceramics, uncoated or coated with bioactive glass, was compared to the one exhibited by reference materials like Ti6Al4V and bulk bioactive glass. This fact looks very promising for biomedical applications.
本研究的目的是使用MG-63人成骨样细胞测试涂覆有生物活性玻璃的木质基生物形态碳化硅(SiC)陶瓷的体外细胞毒性,以期其在骨植入学中的应用。为了更好地理解本研究的范围,应该考虑到生物形态SiC陶瓷是最近才开发出来的,这种创新产品具有重要特性,如相互连通的孔隙率、高强度和韧性以及易于塑形。在溶剂萃取试验中,即使在100%浓度下,所有提取物对细胞活性几乎都没有影响,在生物活性玻璃涂覆的SiC陶瓷提取物中培养的细胞显示出与Thermanox对照相似的增殖率。将未涂覆或涂覆有生物活性玻璃的木质基生物形态SiC陶瓷上细胞的细胞附着反应与Ti6Al4V和块状生物活性玻璃等参考材料所表现出的反应进行比较时,没有显著差异。这一事实对于生物医学应用看起来非常有前景。