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用于骨组织工程的玻璃陶瓷支架的研制:表征、人成骨细胞增殖及结节形成

Development of glass-ceramic scaffolds for bone tissue engineering: characterisation, proliferation of human osteoblasts and nodule formation.

作者信息

Vitale-Brovarone C, Verné E, Robiglio L, Appendino P, Bassi F, Martinasso G, Muzio G, Canuto R

机构信息

Materials Science and Chemical Engineering Department, Polytechnic of Turin, Italy.

出版信息

Acta Biomater. 2007 Mar;3(2):199-208. doi: 10.1016/j.actbio.2006.07.012. Epub 2006 Nov 7.

Abstract

Glass-ceramic macroporous scaffolds for tissue engineering have been developed using a polyurethane sponge template and bioactive glass powders. The starting glass (CEL2) belongs to the system SiO(2)-P(2)O(5)-CaO-MgO-Na(2)O-K(2)O and has been synthesised by a conventional melting-quenching route. A slurry of CEL2 powder, polyvinyl alcohol and water has been prepared in order to coat, by impregnation, the polymeric template. An optimised thermal treatment was then use to remove the sponge and to sinter the glass powders, leading to a glass-ceramic replica of the template. Morphological observations, image analyses, mechanical tests and in vitro tests showed that the obtained devices are good candidates as scaffolds for bone-tissue engineering, in terms of pore-size distribution, pore interconnection, surface roughness, and both bioactivity and biocompatibility. In particular, a human osteoblast cell line (MG-63) seeded onto the scaffold after a standardised preconditioning route in simulated body fluid showed a high degree of cell proliferation and a good ability to produce calcium nodules. The obtained results were enhanced by the addition of bone morphogenetic proteins after cell seeding.

摘要

利用聚氨酯海绵模板和生物活性玻璃粉末开发了用于组织工程的玻璃陶瓷大孔支架。起始玻璃(CEL2)属于SiO(2)-P(2)O(5)-CaO-MgO-Na(2)O-K(2)O体系,通过传统的熔融淬火路线合成。制备了CEL2粉末、聚乙烯醇和水的浆料,以便通过浸渍涂覆聚合物模板。然后采用优化的热处理去除海绵并烧结玻璃粉末,得到模板的玻璃陶瓷复制品。形态学观察、图像分析、力学测试和体外测试表明,就孔径分布、孔互连、表面粗糙度以及生物活性和生物相容性而言,所获得的装置是骨组织工程支架的良好候选材料。特别是,在模拟体液中经过标准化预处理后接种到支架上的人成骨细胞系(MG-63)显示出高度的细胞增殖和良好的产生钙结节的能力。细胞接种后添加骨形态发生蛋白可增强所得结果。

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