Dogrul Fulden, Ożóg Paulina, Michálek Martin, Elsayed Hamada, Galusek Dušan, Liverani Liliana, Boccaccini Aldo R, Bernardo Enrico
FunGlass-Centre for Functional and Surface Functionalized Glass, Alexander Dubcek University of Trenčín, Študentská 2, 911 50 Trenčín, Slovakia.
Department of Industrial Engineering, Università degli Studi di Padova, Via Marzolo 9, 35131 Padova, Italy.
Materials (Basel). 2021 Sep 9;14(18):5170. doi: 10.3390/ma14185170.
Silicone resins, filled with phosphates and other oxide fillers, yield upon firing in air at 1100 °C, a product resembling Biosilicate glass-ceramics, one of the most promising systems for tissue engineering applications. The process requires no preliminary synthesis of parent glass, and the polymer route enables the application of direct ink writing (DIW) of silicone-based mixtures, for the manufacturing of reticulated scaffolds at room temperature. The thermal treatment is later applied for the conversion into ceramic scaffolds. The present paper further elucidates the flexibility of the approach. Changes in the reference silicone and firing atmosphere (from air to nitrogen) were studied to obtain functional composite biomaterials featuring a carbon phase embedded in a Biosilicate-like matrix. The microstructure was further modified either through a controlled gas release at a low temperature, or by the revision of the adopted additive manufacturing technology (from DIW to digital light processing).
填充有磷酸盐和其他氧化物填料的有机硅树脂,在1100°C的空气中烧制后,会得到一种类似于生物硅酸盐玻璃陶瓷的产品,这是组织工程应用中最有前景的体系之一。该工艺无需预先合成母体玻璃,聚合物路线使得基于有机硅的混合物能够进行直接墨水书写(DIW),以便在室温下制造网状支架。随后进行热处理以转化为陶瓷支架。本文进一步阐明了该方法的灵活性。研究了参考有机硅和烧制气氛(从空气到氮气)的变化,以获得具有嵌入生物硅酸盐类基质中的碳相的功能性复合生物材料。通过低温下的可控气体释放或通过修改采用的增材制造技术(从DIW到数字光处理)进一步改变微观结构。