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首页> 外文期刊>Journal of the European Ceramic Society >New trends in bioactive scaffolds: The importance of nanostructure
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New trends in bioactive scaffolds: The importance of nanostructure

机译:生物活性支架的新趋势:纳米结构的重要性

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There are many criteria for an ideal scaffold that will stimulate the body's repair mechanisms to regenerate diseased or damaged bone to its original healthy state. These include having a pore network large and open enough for cells and blood vessels to penetrate and the ability to bond to bone. Sol-gel derived bioactive glasses have a nanoporosity that can control degradation rate. They can be foamed to produce scaffolds that mimic cancellous bone macrostructure. Bioactive glass foams with optimised nanoporosity are strong in compression; however, they have low toughness and pore strength when loaded in tension. Therefore an ideal scaffold would have all the properties of the glasses with enhanced toughness. This can only be achieved by creating new nanoscale composites. Resorbable polymers must interact with the silica based inorganic network at the nanoscale to maintain bioactivity and controlled resorption. This is a complex problem but may be the future of scaffold development.
机译:对于理想的脚手架,有许多标准可以刺激人体的修复机制,使患病或受损的骨骼再生为原始的健康状态。这些措施包括拥有一个足够大且开放的孔网络,以使细胞和血管能够穿透,并具有与骨骼结合的能力。溶胶凝胶衍生的生物活性玻璃具有可以控制降解速率的纳米孔隙度。它们可以发泡以产生模仿松质骨宏观结构的支架。具有最佳纳米孔隙度的生物活性玻璃泡沫具有很强的压缩性;但是,当承受张力时,它们的韧性和孔隙强度低。因此,理想的支架将具有增强的韧性的玻璃的所有特性。这只能通过创建新的纳米级复合材料来实现。可吸收的聚合物必须在纳米级与基于二氧化硅的无机网络相互作用,以保持生物活性和受控的吸收。这是一个复杂的问题,但可能是支架开发的未来。

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