State Key Laboratory of Ophthalmology, Zhongshan Ophthalmic Center, Sun Yat-sen University, Guangzhou, 510623, China.
Guangdong Engineering Technology Research Centre for Functional Biomaterials, School of Materials Science and Engineering, SunYat-sen University, Guangzhou, 510006, China.
Small Methods. 2024 Mar;8(3):e2300996. doi: 10.1002/smtd.202300996. Epub 2023 Nov 23.
Penetrating corneal wounds can cause severe vision impairment and require prompt intervention to restore globe integrity and minimize the risk of infection. Tissue adhesives have emerged as a promising alternative to suturing for mitigating postoperative complications. However, conventional water-soluble adhesives suffer formidable challenges in sealing penetrating corneal wounds due to dilution or loss in a moist environment. Inspired by the robust adhesion of mussels in aquatic conditions, an injectable photocurable bioadhesive hydrogel (referred to as F20HD5) composed of polyether F127 diacrylate and dopamine-modified hyaluronic acid methacrylate is developed for sutureless closure of corneal full-thickness wounds. F20HD5 exhibits high transparency, wound-sealing ability, proper viscosity, biodegradability, and excellent biocompatibility. It allows in situ cross-linking via visible light, thereby providing sufficient mechanical strength and adhesiveness. In vivo, the adhesive hydrogel effectively closed penetrating linear corneal incisions and corneal injuries with minimal tissue loss in rabbits. During the 56-day follow-up, the hydrogel facilitates the repair of the injured corneas, resulting in more symmetrical curvatures and less scarring in distinction to the untreated control. Thus, bioinspired hydrogel holds promise as an effective adhesive for sealing full-thickness corneal wounds.
穿透性角膜伤口可导致严重的视力损害,需要及时干预以恢复眼球完整性并最大程度降低感染风险。组织粘合剂已成为减轻术后并发症的一种很有前途的缝合替代方法。然而,由于在潮湿环境中稀释或丧失,传统的水溶性粘合剂在密封穿透性角膜伤口方面面临着巨大的挑战。受贻贝在水生环境中强大的粘附力的启发,开发了一种由聚醚 F127 二丙烯酸酯和多巴胺修饰的透明质酸甲基丙烯酰胺组成的可注射光固化生物粘合剂水凝胶(称为 F20HD5),用于无需缝合即可闭合全层角膜伤口。F20HD5 表现出高透明度、伤口密封能力、适当的粘度、生物降解性和优异的生物相容性。它可以通过可见光进行原位交联,从而提供足够的机械强度和粘附性。在体内,粘合剂水凝胶可有效闭合兔的线性穿透性角膜切口和角膜损伤,组织损失最小。在 56 天的随访期间,水凝胶有助于受伤角膜的修复,与未治疗的对照组相比,曲率更对称,疤痕更少。因此,仿生水凝胶有望成为一种有效的全层角膜伤口密封粘合剂。