Baldino Lucia, Concilio Simona, Cardea Stefano, Reverchon Ernesto
Department of Industrial Engineering, University of Salerno, Via Giovanni Paolo II, 132, 84084 Fisciano (SA), Italy.
Polymers (Basel). 2016 Mar 24;8(4):106. doi: 10.3390/polym8040106.
Natural polymers, such as alginate and gelatin, can be used to produce scaffolds for tissue engineering applications; but, their mechanical and biochemical performance should be improved. A possible solution to obtain this result, is the generation of multi-component scaffolds, by blending two or more polymers. One way to realize it, is the formation of an interpenetrating polymer network (IPN). In this work, the interpenetration of alginate and gelatin hydrogels has been successfully obtained and preserved by supercritical CO₂ (SC-CO₂) drying performed at 200 bar and 35 °C, using different blend compositions: from alginate/gelatin = 20:80 / to alginate/gelatin = 80:20 /. The process allowed modulation of morphology and mechanical properties of these blends. The overall result was made possible by the supercritical drying process that, working at zero surface tension, allows preserving the hydrogels nanostructure in the corresponding aerogels.
天然聚合物,如藻酸盐和明胶,可用于制造用于组织工程应用的支架;但是,它们的机械和生化性能需要改进。获得这一结果的一种可能解决方案是通过混合两种或更多种聚合物来生成多组分支架。实现这一目标的一种方法是形成互穿聚合物网络(IPN)。在这项工作中,通过在200巴和35℃下进行超临界CO₂(SC-CO₂)干燥,使用不同的混合组成:从藻酸盐/明胶=20:80到藻酸盐/明胶=80:20,成功实现并保留了藻酸盐和明胶水凝胶的互穿。该过程能够调节这些共混物的形态和机械性能。超临界干燥过程在零表面张力下工作,能够在相应的气凝胶中保留水凝胶的纳米结构,从而使整体结果成为可能。