ACS Biomater Sci Eng. 2020 Jan 13;6(1):739-748. doi: 10.1021/acsbiomaterials.9b01252. Epub 2019 Dec 16.
Herein, three categories of collagens with different hierarchical architectures, including collagen molecules (Col), collagen microfibrils (F-col), and collagen fiber bundles (Ag-col), were systematically biofabricated based on the biosynthesis pathway of natural collagen. Their macroscopic properties, that is, physicochemical and biological properties, and hierarchical structures were evaluated synthetically. The results showed that Col had a rigid rod-like fibrous triple helix structure, whereas F-col and Ag-col had the typical D-periodic cross-striated patterns with lengths of about 54 and 60 nm in the longitudinal direction, respectively. We further found that collagens with higher hierarchical structures had more superior thermal stability, mechanical properties, and biodegradability. Among all three collagens, Ag-col was the best: it had the highest bioactivity and hemostatic properties and could better promote cell adhesion, growth, and proliferation and better improve the secretion of growth factors. Overall, we have a reason to believe that collagens with a higher hierarchical structure can serve as a better alternative source of collagenous materials for further applications in biological industries.
在此,我们基于天然胶原蛋白的生物合成途径,系统地仿生制备了具有不同层次结构的三类胶原蛋白,包括胶原蛋白分子(Col)、胶原蛋白微纤维(F-col)和胶原蛋白纤维束(Ag-col)。我们综合评估了它们的宏观特性,即物理化学和生物学特性以及层次结构。结果表明,Col 具有刚性棒状的纤维三螺旋结构,而 F-col 和 Ag-col 具有典型的 D 周期交错横纹图案,其纵向长度分别约为 54nm 和 60nm。我们进一步发现,具有更高层次结构的胶原蛋白具有更优越的热稳定性、机械性能和生物降解性。在这三种胶原蛋白中,Ag-col 是最好的:它具有最高的生物活性和止血性能,能够更好地促进细胞黏附、生长和增殖,并更好地促进生长因子的分泌。总的来说,我们有理由相信,具有更高层次结构的胶原蛋白可以作为胶原材料的更好替代来源,进一步应用于生物产业。