Eye Institute of Xiamen University, School of Medicine, Xiamen University, Xiamen University affiliated Xiamen Eye Center, Fujian Provincial Key Laboratory of Ophthalmology and Visual Science, Fujian Engineering and Research Center of Eye Regenerative Medicine, Department of Ophthalmology, Xiang'an Hospital of Xiamen University, Xiamen, Fujian 361005, China.
Shanghai Advanced Research Institute, Chinese Academy of Sciences, Shanghai, China.
Int J Biol Macromol. 2023 Dec 31;253(Pt 8):127586. doi: 10.1016/j.ijbiomac.2023.127586. Epub 2023 Oct 21.
As a leading cause of vision impairment and blindness, corneal alkali burns lead to long-term visual deterioration or even permanent visual impairment while effective treatment strategies remain a challenge. Herein, a thermo-sensitive hydrogel with the combination of multi-functional protein progranulin (PGRN), a biological macromolecule consisting of several hundred amino acids and possessing a high molecular weight, is efficiently prepared through a convenient stirring and mixing at the low temperature. The hydrogel can be easily administrated to the ocular surface contacting with the cornea, which can be immediately transformed into gel-like state due to the thermo-responsive behavior, realizing a site-specific coating to isolate further external stimulation. The smart coating not only exhibits excellent transparency and biocompatibility, but also presents a constant delivery of PGRN, creating a nutritious and supportive micro-environment for the ocular surface. The results show that the prepared functional hydrogel can efficiently suppress inflammation, accelerate re-epithelization, and intriguingly enhance axonal regeneration via modulation of multiple signaling pathways, indicating the novel designed Hydrogel is a promising therapy option for serious corneal injury.
作为视力损害和失明的主要原因,角膜碱烧伤导致长期视力恶化,甚至永久性视力损害,而有效的治疗策略仍然是一个挑战。在此,通过在低温下方便的搅拌和混合,高效制备了具有多功能蛋白颗粒蛋白聚糖(PGRN)的温敏水凝胶。该水凝胶可轻松施用于与角膜接触的眼表面,由于热响应行为,可立即转变为凝胶状,实现对特定部位的涂层以隔离进一步的外部刺激。智能涂层不仅表现出优异的透明度和生物相容性,而且还呈现出 PGRN 的持续释放,为眼表面创造了营养支持的微环境。结果表明,所制备的功能性水凝胶可通过调节多种信号通路有效抑制炎症、加速再上皮化,并令人惊讶地增强轴突再生,表明新型设计的水凝胶是严重角膜损伤的一种有前途的治疗选择。