Medical College of Soochow University, Jiangsu Province Key Laboratory of Stem Cell Research, Soochow University , Suzhou 215123, China.
ACS Appl Mater Interfaces. 2015 Feb 11;7(5):3352-61. doi: 10.1021/am508319h. Epub 2015 Jan 29.
In this study, we report for the first time a novel silk fibroin (SF) nanofibrous films with robust mechanical properties that was fabricated by directly dissolving silk in CaCl2-formic acid solution. CaCl2-FA dissolved silk rapidly at room temperature, and more importantly, it disintegrated silk into nanofibrils instead of separate molecules. The morphology of nanofibrils crucially depended on CaCl2 concentrations, which resulted in different aggregation nanostructure in SF films. The SF film after drawing had maximum elastic modulus, ultimate tensile strength, and strain at break reaching 4 GPa, 106 MPa, and 29%, respectively, in dry state and 206 MPa, 28 MPa, and 188%, respectively, in wet state. Moreover, multiple yielding phenomena and substantially strain-hardening behavior was also observed in the stretched films, indicating the important role played by preparation method in regulating the mechanical properties of SF films. These exceptional and unique mechanical properties were suggested to be caused by preserving silk nanofibril during dissolution and stretching to align these nanofibrils. Furthermore, the SF films exhibit excellent biocompatibility, supporting marrow stromal cells adhesion and proliferation. The film preparation was facile, and the resulting SF films manifested enhanced mechanical properties, unique nanofibrous structures, and good biocompability.
在这项研究中,我们首次报道了一种具有强机械性能的新型丝素(SF)纳米纤维膜,它是通过将丝直接溶解在 CaCl2-甲酸溶液中制备的。CaCl2-FA 在室温下迅速溶解丝,并更重要的是,它将丝分解成纳米纤维而不是单独的分子。纳米纤维的形态取决于 CaCl2 的浓度,这导致 SF 膜中不同的聚集纳米结构。拉伸后的 SF 膜在干燥状态下具有最大的弹性模量、拉伸强度和断裂伸长率,分别达到 4 GPa、106 MPa 和 29%,在湿润状态下具有 206 MPa、28 MPa 和 188%。此外,拉伸后的薄膜还表现出多次屈服现象和显著的应变硬化行为,表明制备方法在调节 SF 薄膜的机械性能方面起着重要作用。这些优异和独特的机械性能被认为是由于在溶解和拉伸过程中保留了丝纳米纤维,从而使这些纳米纤维排列整齐。此外,SF 薄膜具有良好的生物相容性,支持骨髓基质细胞的黏附和增殖。该薄膜的制备方法简单,所制备的 SF 薄膜具有增强的机械性能、独特的纳米纤维结构和良好的生物相容性。