The Key Laboratory of Advanced Textile Materials and Manufacturing Technology of Ministry of Education, National Engineering Lab for Textile Fiber Materials and Processing Technology, School of Materials Science and Engineering, Zhejiang Sci-Tech University, Hangzhou, China.
Academy of Science and Technology, Zhejiang Sci-Tech University, Hangzhou, China.
J Biomater Sci Polym Ed. 2023 Aug;34(12):1643-1659. doi: 10.1080/09205063.2023.2177828. Epub 2023 Feb 15.
The similar characteristics of biomaterials to the extracellular matrix are essential for efficient tissue repair through dictating cell behaviors. But the scaffold fabrication with complex shapes and controlled alignment have proven to be a difficult task. Herein, a well-designed three-dimensional silk fibroin scaffold is fabricated through ice template technology. The effect of the silk fibroin protein concentration and the freezing temperature on the microstructure and mechanical properties of scaffolds are investigated systematically. Cells behavior mediated by the obtained silk fibroin scaffolds is detected. The results show that the protein concentration plays a vital role in microstructure and scaffold strength. A well-aligned scaffold can be obtained when silk fibroin solution is kept at 12 wt%, which holds the highest mechanical properties. The pore size can be further adjusted in the range of 5-80 µm by changing the freezing temperature from -60 to -196 °C. The well-oriented scaffold with the appropriate pore size of 10-20 µm has the best ability to guide cell alignment. The resulting scaffolds provide an excellent matrix to guide cells behaviors and have a potential application in tissue engineering.
生物材料与细胞外基质的相似特性对于通过调节细胞行为来实现有效的组织修复至关重要。但是,制造具有复杂形状和可控取向的支架已被证明是一项艰巨的任务。在此,通过冰模板技术制造了精心设计的三维丝素蛋白支架。系统研究了丝素蛋白浓度和冷冻温度对支架微观结构和机械性能的影响。检测了所获得的丝素蛋白支架介导的细胞行为。结果表明,蛋白质浓度对微观结构和支架强度起着至关重要的作用。当丝素蛋白溶液保持在 12wt%时,可以获得具有最佳机械性能的取向良好的支架。通过将冷冻温度从-60°C 改变至-196°C,可以将孔径进一步调节至 5-80μm 范围内。具有合适孔径 10-20μm 的取向良好的支架具有最佳的引导细胞排列的能力。所得支架为指导细胞行为提供了优异的基质,在组织工程中有潜在的应用。