Mater Sci Eng C Mater Biol Appl. 2012 Aug 1;32(6):1314-22. doi: 10.1016/j.msec.2012.02.015. Epub 2012 Feb 16.
The objective of this study was to investigate the influence of silk fibroin and oxidized starch conjugation on the enzymatic degradation behavior and the cytocompatability of chitosan based biomaterials. The tensile stress of conjugate membranes, which was at 50 Megapascal (MPa) for the lowest fibroin and starch composition (10 weight percent (wt.%)), was decreased significantly with the increased content of fibroin and starch. The weight loss of conjugates in α-amylase was more notable when the starch concentration was the highest at 30 wt.%. The conjugates were resistant to the degradation by protease and lysozyme except for the conjugates with the lowest starch concentration. After 10 days of cell culture, the proliferation of osteoblast-like cells (SaOS-2) was stimulated significantly by higher fibroin compositions and the DNA synthesis on the conjugate with the highest fibroin (30 wt.%) was about two times more compared to the native chitosan. The light microscopy and the image analysis results showed that the cell area and the lengths were decreased significantly with higher fibroin/chitosan ratio. The study proved that the conjugation of fibroin and starch with the chitosan based biomaterials by the use of non-toxic reductive alkylation crosslinking significantly improved the cytocompatibility and modulated the biodegradation, respectively.
本研究旨在探讨丝素蛋白和氧化淀粉接枝对壳聚糖基生物材料的酶降解行为和细胞相容性的影响。接枝膜的拉伸应力在丝素和淀粉最低含量(10wt.%)时为 50 兆帕(MPa),随着丝素和淀粉含量的增加而显著降低。当淀粉浓度最高(30wt.%)时,α-淀粉酶中接枝物的失重更为明显。除了淀粉浓度最低的接枝物外,接枝物对蛋白酶和溶菌酶的降解具有抗性。细胞培养 10 天后,成骨样细胞(SaOS-2)的增殖明显受到较高丝素含量的刺激,而具有最高丝素(30wt.%)的接枝物的 DNA 合成量比天然壳聚糖高约两倍。光学显微镜和图像分析结果表明,随着丝素/壳聚糖比例的增加,细胞面积和长度显著减小。该研究证明,通过使用无毒的还原烷基化交联,将丝素蛋白和淀粉与壳聚糖基生物材料接枝,可显著提高细胞相容性,并分别调节生物降解。