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Biomimetic polysaccharide/bioactive glass nanoparticles multilayer membranes for guided tissue regeneration

机译:仿生多糖/生物活性玻璃纳米颗粒多层膜,用于组织再生

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摘要

Nowadays, guided tissue regeneration (GTR) research is centred in the development of composite bioabsorbable membranes with enhanced bioactivity and with processing controlled at the nanoscale. Inspired by this new focus of GTR research and also by nacre structure, layered freestanding membranes were produced using the Layer-by-Layer (LbL) deposition technique, combining chitosan (CHI), hyaluronic acid (HA) and bioactive glass nanoparticles (BGNPs). It is expected that the combination of these materials processed by this particular technique will result in nanostructured membranes with enhanced mechanical performance as well as improved bioactivity. Moreover, the effect of the modification of HA with catechol groups (HAD) on the adhesive properties of the membranes was also analysed. The results showed that it was possible to produce biomimetic membranes with different surface properties, improved adhesive strength and the ability to induce the formation of apatite, necessary for the formation of new bone. It was also possible to control the BGNPs content of the membranes by use of HAD instead of unmodified HA and changing the number of BGNPs' deposition steps. Moreover, it was shown that membranes with different concentrations of BGNPs possess different mechanical performance, swelling properties and degradation behaviour, which indicates the possibility to tune the membranes' properties by controlling the deposition of BGNPs onto the membranes.
机译:如今,引导组织再生(GTR)研究集中在开发具有增强的生物活性和纳米级工艺控制的复合生物可吸收膜上。受到GTR研究这一新重点以及珍珠层结构的启发,采用了分层(LbL)沉积技术,结合了壳聚糖(CHI),透明质酸(HA)和生物活性玻璃纳米颗粒(BGNPs),生产出了多层独立膜。 。预期通过这种特定技术处理的这些材料的组合将导致具有增强的机械性能以及改善的生物活性的纳米结构膜。此外,还分析了用邻苯二酚基团(HAD)修饰HA对膜的粘合性能的影响。结果表明,可以生产具有不同表面性质,提高的粘合强度和诱导形成新骨所需的磷灰石形成能力的仿生膜。也可以通过使用HAD代替未修饰的HA并更改BGNPs的沉积步骤数来控制膜中BGNPs的含量。此外,已表明具有不同浓度的BGNP的膜具有不同的机械性能,溶胀性质和降解行为,这表明通过控制BGNP在膜上的沉积来调节膜的性质的可能性。

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