Yang Luyuan, Yaseen Mohammed, Zhao Xiubo, Coffey Paul, Pan Fang, Wang Yuming, Xu Hai, Webster John, Lu Jian R
Biological Physics Laboratory, School of Physics and Astronomy, University of Manchester, Schuster Building, Manchester M13 9PL, UK.
Biomed Mater. 2015 Mar 18;10(2):025003. doi: 10.1088/1748-6041/10/2/025003.
Silk fibroin (SF) films were modified with gelatin (G) to explore if such SF/G films could enhance the surface biocompatibility of silk as cell growth biomaterials. Ultrathin films were coated from aqueous SF solutions pre-mixed with different amounts of G. It was found that the SF/G blended films after methanol treatment were highly stable in physiological conditions. The incorporation of G smoothed the surface morphology of the SF/G films formed. Surface-exposed RGD sequences were successfully identified on the SF/G films through specific recognition of an integrin-mimicking peptide (bearing the sequence of CWDDGWLC). Cell culture experiments with 3T3 fibroblasts demonstrated that SF/G films with 1.2-20% (w/w) G gave clear improvement in promoting cell attachment and proliferation over pure SF films. Films containing 10-20% (w/w) of G showed cell attachment and growth even superior to the pure G films. The differences as observed from this study suggest that due to the lack of mechanical strength associated with its high solubility, G could not work alone as a cell growth scaffold. The enhanced cellular responses from the blended SF/G films must result from improvement in film stability arising from SF and in cytocompatibility arising from G. The results thus indicate the potential of the SF/G blends in tissue engineering and biomedical engineering where physical and biological properties could be manipulated via mixing either as bulk biomaterials or for coating purposes.
用明胶(G)对丝素蛋白(SF)膜进行改性,以探究这种SF/G膜作为细胞生长生物材料时能否增强丝的表面生物相容性。从预先与不同量G混合的SF水溶液中涂覆超薄膜。发现甲醇处理后的SF/G混合膜在生理条件下高度稳定。G的加入使形成的SF/G膜的表面形态变得光滑。通过对整合素模拟肽(带有CWDDGWLC序列)的特异性识别,在SF/G膜上成功鉴定出表面暴露的RGD序列。用3T3成纤维细胞进行的细胞培养实验表明,含有1.2 - 20%(w/w)G的SF/G膜在促进细胞附着和增殖方面比纯SF膜有明显改善。含有10 - 20%(w/w)G的膜显示出的细胞附着和生长甚至优于纯G膜。本研究观察到的差异表明,由于G缺乏与高溶解度相关的机械强度,它不能单独作为细胞生长支架发挥作用。混合的SF/G膜增强的细胞反应一定是由于SF提高了膜的稳定性以及G提高了细胞相容性。因此,结果表明SF/G混合物在组织工程和生物医学工程中的潜力,在这些领域中,可以通过混合作为块状生物材料或用于涂层目的来控制物理和生物学性质。