Bai Hao, Polini Alessandro, Delattre Benjamin, Tomsia Antoni P
Materials Sciences Division, Lawrence Berkeley National Laboratory, Berkeley, California 94720, United States.
Chem Mater. 2013 Oct 26;25(22):4551-4556. doi: 10.1021/cm4025827.
Natural tissues, such as bone, tendon, and muscle, have well defined hierarchical structures, which are crucial for their biological and mechanical functions. However, mimicking these structural features still remains a great challenge. In this study, we use ice-templated assembly and UV-initiated cryo-polymerization to fabricate a novel kind of composite hydrogel which have both aligned macroporous structure at micrometer scale and a nacre-like layered structure at nanoscale. Such hydrogels are macroporous, thermoresponsive, and exhibit excellent mechanical performance (tough and high stretchable), attractive properties that are of significant impact on the wide applications of composite hydrogels, especially as tissue-engineering scaffolds. The fabrication method in this study including freeze-casting and cryo-polymerization can also be applied to other materials, which makes it promising for designing and developing smart and multifunctional composite hydrogels with hierar chical structures.
天然组织,如骨骼、肌腱和肌肉,具有明确的层次结构,这对它们的生物学和力学功能至关重要。然而,模仿这些结构特征仍然是一个巨大的挑战。在本研究中,我们使用冰模板组装和紫外线引发的冷冻聚合来制备一种新型复合水凝胶,该水凝胶在微米尺度上具有排列有序的大孔结构,在纳米尺度上具有类似珍珠层的层状结构。这种水凝胶是大孔的、热响应性的,并表现出优异的力学性能(坚韧且高拉伸性),这些吸引人的特性对复合水凝胶的广泛应用具有重大影响,特别是作为组织工程支架。本研究中的制造方法,包括冷冻铸造和冷冻聚合,也可应用于其他材料,这使得设计和开发具有层次结构的智能多功能复合水凝胶具有广阔前景。