Schepens Eye Research Institute, Massachusetts Eye and Ear, Department of Ophthalmology, Harvard Medical School, Boston, MA 02114, United States.
Department of Chemical and Biomolecular Engineering, University of California, Los Angeles, Los Angeles, CA 90095, United States.
Mater Sci Eng C Mater Biol Appl. 2021 Jan;120:111790. doi: 10.1016/j.msec.2020.111790. Epub 2020 Dec 10.
With 1.5-2.0 million new cases annually worldwide, corneal injury represents a common cause of vision loss, often from irreversible scarring due to surface corneal defects. In this study, we assessed the use of hepatocyte growth factor (HGF) loaded into an in situ photopolymerizable transparent gelatin-based hydrogel for the management of corneal defects. In vitro release kinetics showed that, in regard to the total amount of HGF released over a month, 55 ± 11% was released during the first 24 h, followed by a slow release profile for up to one month. The effect of HGF was assessed using an ex vivo model of pig corneal defect. After three days of organ culture, epithelial defects were found to be completely healed for 89% of the corneas treated with HGF, compared to only 11% of the corneas that had fully re-epithelialized when treated with the hydrogel without HGF. The thickness of the epithelial layer was found to be significantly higher for the HGF-treated group compared to the group treated with hydrogel without HGF (p = 0.0012). Finally, histological and immunostaining assessments demonstrated a better stratification and adhesion of the epithelial layer in the presence of HGF. These results suggest that the HGF-loaded hydrogel system represents a promising solution for the treatment of persistent corneal defects at risk of scarring.
每年全球有 150 万至 200 万例新发病例,角膜损伤是视力丧失的常见原因,通常是由于表面角膜缺陷导致的不可逆转的疤痕。在这项研究中,我们评估了将肝细胞生长因子(HGF)负载到原位光聚合透明明胶基水凝胶中用于管理角膜缺陷的用途。体外释放动力学表明,在一个月内释放的 HGF 的总量方面,在最初的 24 小时内释放了 55±11%,随后是长达一个月的缓慢释放曲线。使用猪角膜缺陷的离体模型评估了 HGF 的作用。经过三天的器官培养,在用 HGF 处理的角膜中,发现 89%的上皮缺损完全愈合,而在用不含 HGF 的水凝胶处理的角膜中,只有 11%完全再上皮化。与未用 HGF 处理的水凝胶相比,HGF 处理组的上皮层厚度明显更高(p=0.0012)。最后,组织学和免疫染色评估表明,在存在 HGF 的情况下,上皮层的分层和粘附更好。这些结果表明,负载 HGF 的水凝胶系统为治疗有疤痕风险的持续性角膜缺陷提供了一种有前途的解决方案。