Schepens Eye Research Institute of Mass Eye & Ear, Harvard Medical School, 20 Staniford Street, Boston, MA, 02114, USA.
Sci Rep. 2024 Nov 2;14(1):26421. doi: 10.1038/s41598-024-75488-w.
Different therapeutic modalities, including steroids, have been used to treat corneal scarring. However, the ability of steroids to reduce corneal scarring is limited and associated with numerous side effects. Our previous studies have demonstrated that topical hepatocyte growth factor (HGF) after corneal injury suppresses the development of stromal scars. Here, we investigated whether HGF can re-establish corneal clarity and normalize tissue structure in corneas with pre-existing scars. Corneal scarring was induced by mechanically removing the corneal epithelium and the anterior third of the stroma using a hand-held Algerbrush II in C57BL/6 mice. Substantial scar tissue formed by day 10 post-injury, at which time the epithelium was debrided and treated with 0.1% recombinant mouse HGF, 0.1% dexamethasone (steroid) or 0.1% control protein thrice a day for 10 days. Corneal clarity was significantly restored in the HGF treatment group, compared to both the steroid and control protein treatment groups. Moreover, HGF treatment downregulated the expression of αSMA and upregulated the expression of extracellular matrix-remodeling matrix metalloproteinases 1 and 10 (MMP1 and MMP10), suggesting HGF upregulates tissue remodeling molecule MMP1 and 10 to promote tissue restoration. These findings offer novel insights into the mechanisms by which HGF re-establishes corneal clarity, and promotes epithelial regeneration in corneas with pre-existing stromal scarring.
不同的治疗方法,包括类固醇,已被用于治疗角膜瘢痕。然而,类固醇降低角膜瘢痕的能力有限,且伴有许多副作用。我们之前的研究表明,角膜损伤后局部应用肝细胞生长因子(HGF)可抑制基质瘢痕的形成。在这里,我们研究了 HGF 是否可以重建已存在瘢痕的角膜的清晰度并使组织结构恢复正常。通过在 C57BL/6 小鼠中使用手动 Algerbrush II 机械去除角膜上皮和前 3/1 的基质来诱导角膜瘢痕。在损伤后第 10 天形成大量的瘢痕组织,此时除去上皮并用 0.1%重组小鼠 HGF、0.1%地塞米松(类固醇)或 0.1%对照蛋白每天处理 3 次,持续 10 天。与类固醇和对照蛋白处理组相比,HGF 处理组的角膜清晰度明显恢复。此外,HGF 处理下调了 αSMA 的表达,上调了细胞外基质重塑基质金属蛋白酶 1 和 10(MMP1 和 MMP10)的表达,表明 HGF 上调组织重塑分子 MMP1 和 10 以促进组织修复。这些发现为 HGF 重建角膜清晰度和促进已有基质瘢痕的角膜上皮再生的机制提供了新的见解。