Zoco de la Fuente Aitana, García-García Ane, Pérez-Álvarez Leyre, Moreno-Benítez Isabel, Larrea-Sebal Asier, Martin Cesar, Vilas-Vilela Jose Luis
Macromolecular Chemistry Group (LABQUIMAC), Physical Chemistry Department, Faculty of Science and Technology, University of the Basque Country UPV/EHU, 48940 Leioa, Spain.
BCMaterials, Basque Center for Materials, Applications and Nanostructures, UPV/EHU Science Park, 48940 Leioa, Spain.
Polymers (Basel). 2024 Apr 4;16(7):986. doi: 10.3390/polym16070986.
Naturally derived biopolymers modifying or combining with other components are excellent candidates to promote the full potential of additive manufacturing in biomedicine, cosmetics, and the food industry. This work aims to develop new photo-cross-linkable alginate-based inks for extrusion 3D printing. Specifically, this work is focused on the effect of the addition of cross-linkers with different chemical structures (polyethylene glycol diacrylate (PEGDA), -methylenebisacrylamide (NMBA), and acrylic acid (AA)) in the potential printability and physical properties of methacrylated alginate (AlgMe) hydrogels. Although all inks showed maximum photo-curing conversions and gelation times less than 2 min, only those structures printed with the inks incorporating cross-linking agents with flexible and long chain structure (PEGDA and AA) displayed acceptable size accuracy (0.4-0.5) and printing index (Pr ~1.00). The addition of these cross-linking agents leads to higher Young's moduli (from 1.6 to 2.0-2.6 KPa) in the hydrogels, and their different chemical structures results in variations in their mechanical and rheological properties. However, similar swelling ability (15 swelling factor), degradability (45 days 100% weight loss), and cytocompatibility (100%) were assessed in all the systems, which is of great importance for the final applicability of these hydrogels.
与其他成分改性或结合的天然衍生生物聚合物是充分发挥增材制造在生物医学、化妆品和食品工业中全部潜力的优秀候选材料。这项工作旨在开发用于挤出3D打印的新型光可交联藻酸盐基油墨。具体而言,这项工作聚焦于添加具有不同化学结构的交联剂(聚乙二醇二丙烯酸酯(PEGDA)、N,N'-亚甲基双丙烯酰胺(NMBA)和丙烯酸(AA))对甲基丙烯酸化藻酸盐(AlgMe)水凝胶潜在可打印性和物理性能的影响。尽管所有油墨都显示出最大光固化转化率且凝胶化时间少于2分钟,但只有那些用含有具有柔性长链结构的交联剂(PEGDA和AA)的油墨打印的结构显示出可接受的尺寸精度(约0.4 - 0.5)和打印指数(Pr约1.00)。添加这些交联剂会使水凝胶中的杨氏模量更高(从1.6到2.0 - 2.6 KPa),并且它们不同的化学结构导致其机械和流变性能有所变化。然而,在所有体系中评估了相似的溶胀能力(约15的溶胀因子)、降解性(约45天100%重量损失)和细胞相容性(约100%),这对于这些水凝胶的最终适用性非常重要。