Chang Jingjing, Wang Xinyi, Li Sijie, Zheng Zhaozhu, Li Gang, Wang Xiaoqin, Kaplan David L
National Engineering Laboratory for Modern Silk, College of Textile and Clothing Engineering, Soochow University, Suzhou, Jiangsu 215123, P. R. China.
Department of Biomedical Engineering, Tufts University, Medford, Massachusetts 02155, United States.
ACS Biomater Sci Eng. 2025 Jun 9;11(6):3682-3696. doi: 10.1021/acsbiomaterials.5c00124. Epub 2025 May 8.
The therapeutic potential of silk fibroin (SF) and hyaluronic acid (HA) composite hydrogels for corneal epithelial wound healing was assessed, focusing on the molecular weight of SF related to outcomes. Initially, SF of varying molecular weights was analyzed, and a medium molecular weight (M-SF; 10-72 kDa, average 40 kDa) was identified as most effective in promoting cell proliferation, attachment, and migration in various assays. A hydrogel formulation, H-SF/HA gel@M-SF, was then developed by incorporating M-SF (10-72 kDa, average 40 kDa) into a base hydrogel composed of high molecular weight SF (H-SF; 18-100 kDa, average 60 kDa) and HA. The physicochemical properties of the hydrogels, including pH balance, extensibility, and swelling rate, were characterized. The biological functions of the hydrogels were evaluated by using human corneal epithelial (HCE-T) cells and a mouse corneal injury model. H-SF/HA gel@M-SF exhibited supported enhanced expression of key genes associated with corneal repair, such as NOTCH I, GSK3β, ACTG, and VCL when compared with a serum-free medium. In vivo studies using mice demonstrated that H-SF/HA gel@M-SF achieved complete wound closure within 48 h, outperforming the H-SF/HA gel. These results underscore the significance of the SF molecular weight and concentration in hydrogel design and highlight the potential of H-SF/HA gel@M-SF for ophthalmic applications.
评估了丝素蛋白(SF)与透明质酸(HA)复合水凝胶对角膜上皮伤口愈合的治疗潜力,重点关注与结果相关的SF分子量。最初,分析了不同分子量的SF,确定中等分子量(M-SF;10-72 kDa,平均40 kDa)在各种试验中最有效地促进细胞增殖、附着和迁移。然后,通过将M-SF(10-72 kDa,平均40 kDa)掺入由高分子量SF(H-SF;18-100 kDa,平均60 kDa)和HA组成的基础水凝胶中,开发了一种水凝胶配方H-SF/HA gel@M-SF。对水凝胶的物理化学性质进行了表征,包括pH平衡、延展性和溶胀率。通过使用人角膜上皮(HCE-T)细胞和小鼠角膜损伤模型评估了水凝胶的生物学功能。与无血清培养基相比,H-SF/HA gel@M-SF表现出与角膜修复相关的关键基因(如NOTCH I、GSK3β、ACTG和VCL)的表达增强。使用小鼠的体内研究表明,H-SF/HA gel@M-SF在48小时内实现了完全伤口闭合,优于H-SF/HA凝胶。这些结果强调了SF分子量和浓度在水凝胶设计中的重要性,并突出了H-SF/HA gel@M-SF在眼科应用中的潜力。