Department of Mechanical Engineering, Graduate School of Engineering, Kyoto University, Yoshida-Honmachi, Sakyo-ku, Kyoto 606-8501, Japan.
Biomaterials. 2010 Oct;31(29):7503-11. doi: 10.1016/j.biomaterials.2010.06.045.
Initial chondrocyte-silk fibroin interactions are implicated in chondrogenesis when using fibroin as a scaffold for chondrocytes. Here, we focused on integrin-mediated cell-scaffold adhesion and prepared cell adhesive fibroin in which a tandem repeat of the Arg-Gly-Asp-Ser (RGDS) sequence was genetically interfused in the fibroin light chain (L-chain) (L-RGDSx2 fibroin). We investigated the effects of the sequence on chondrocyte adhesion and cartilage synthesis, in comparison to the effects of fibronectin. As the physicochemical surface properties (e.g., wettability and zeta potential) of the fibroin substrate were not affected by the modification, specific cell adhesion to the RGDS predominately changed the chondrocyte adhesive state. This suggestion was also supported by the competitive inhibition of chondrocyte attachment to the L-RGDSx2 fibroin substrate with soluble RGD peptides in the medium. Unlike fibronectin, the expression of RGDS in the fibroin L-chain had no effect on chondrocyte spreading area but enhanced mRNA expression levels of integrins alpha5 and beta1, and aggrecan at 12 h after seeding. Although both the sequence and fibronectin increased cell adhesive force, chondrocytes grown on the fibroin substrate exhibited a peak in the force with time in culture. These results suggested that moderate chondrocyte adhesion to fibroin induced by the RGDS sequence was able to maintain the chondrogenic phenotype and, from the histology findings, the sequence could facilitate chondrogenesis.
当使用丝纤维蛋白作为软骨细胞的支架时,初始的软骨细胞-丝纤维蛋白相互作用与软骨发生有关。在这里,我们专注于整合素介导的细胞-支架黏附,并制备了细胞黏附性丝纤维蛋白,其中 RGDS 序列的串联重复(Arg-Gly-Asp-Ser)通过基因融合到丝纤维蛋白轻链(L-链)中(L-RGDSx2 丝纤维蛋白)。我们研究了该序列对软骨细胞黏附和软骨合成的影响,并与纤连蛋白的影响进行了比较。由于丝纤维蛋白基质的物理化学表面特性(例如润湿性和 ζ 电位)不受修饰的影响,因此 RGDS 对特定细胞黏附的影响主要改变了软骨细胞的黏附状态。这一观点也得到了可溶性 RGD 肽在培养基中竞争抑制软骨细胞附着到 L-RGDSx2 丝纤维蛋白基质的实验支持。与纤连蛋白不同,丝纤维蛋白 L 链中的 RGDS 表达对软骨细胞铺展面积没有影响,但增强了整合素 alpha5 和 beta1 以及聚集蛋白聚糖的 mRNA 表达水平,在接种后 12 小时。尽管该序列和纤连蛋白都增加了细胞黏附力,但在培养过程中,在时间上,生长在丝纤维蛋白基质上的软骨细胞的力出现峰值。这些结果表明,RGDS 序列适度诱导的软骨细胞对丝纤维蛋白的黏附能够维持软骨细胞的表型,并且从组织学发现,该序列可以促进软骨发生。