Institute of Food Technology, University of Natural Resources and Life Sciences (BOKU), Muthgasse 18, 1190 Vienna, Austria.
Faculty of Food Science and Technology, Gorgan University of Agricultural Sciences and Natural Resources, Gorgan 4913815739, Iran.
ACS Appl Mater Interfaces. 2023 Oct 25;15(42):49874-49891. doi: 10.1021/acsami.3c12078. Epub 2023 Oct 12.
The interconnected hierarchically porous structures are of key importance for potential applications as substrates for drug delivery, cell culture, and bioscaffolds, ensuring cell adhesion and sufficient diffusion of metabolites and nutrients. Here, encapsulation of a vitamin C-loaded gel-like double emulsion using a hydrophobic emulsifier and soy particles was performed to develop a bioactive bioink for 3D printing of highly porous scaffolds with enhanced cell biocompatibility. The produced double emulsions suggested a mechanical strength with the range of elastic moduli of soft tissues possessing a thixotropic feature and recoverable matrix. The outstanding flow behavior and viscoelasticity broaden the potential of gel-like double emulsion to engineer 3D scaffolds, in which 3D constructs showed a high level of porosity and excellent shape fidelity with antiwearing and self-lubricating properties. Investigation of cell viability and proliferation using fibroblasts (NIH-3T3) within vitamin C-loaded gel-like bioinks revealed that printed 3D scaffolds offered brilliant biocompatibility and cell adhesion. Compared to scaffolds without encapsulated vitamin C, 3D scaffolds containing vitamin C showed higher cell viability after 1 week of cell proliferation. This work represented a systematic investigation of hierarchical self-assembly in double emulsions and offered insights into mechanisms that control microstructure within supramolecular structures, which could be instructive for the design of advanced functional tissues.
相互连接的分级多孔结构对于药物输送、细胞培养和生物支架等潜在应用至关重要,确保细胞黏附以及代谢物和营养物质的充分扩散。在这里,使用疏水性乳化剂和大豆颗粒对负载维生素 C 的凝胶状双乳液进行包封,以开发用于 3D 打印具有增强细胞生物相容性的高多孔支架的生物活性生物墨水。所制备的双乳液具有一定的机械强度,弹性模量范围与具有触变性和可恢复基质的软组织相当。出色的流动行为和粘弹性拓宽了凝胶状双乳液设计 3D 支架的潜力,其中 3D 结构表现出高孔隙率和出色的形状保真度,同时具有抗磨损和自润滑性能。在负载维生素 C 的凝胶状生物墨水中用成纤维细胞(NIH-3T3)进行细胞活力和增殖研究表明,打印的 3D 支架具有出色的生物相容性和细胞黏附性。与不含封装维生素 C 的支架相比,在细胞增殖 1 周后,含有维生素 C 的 3D 支架表现出更高的细胞活力。这项工作系统地研究了双乳液中的分级自组装,并深入了解了控制超分子结构内微观结构的机制,这对设计先进的功能性组织具有重要意义。