Moon Loren, Kaur Pritpal, Wang Jiangxia, Sodhi Akrit, Eberhart Charles, Soiberman Uri
Wilmer Eye Institute, Johns Hopkins Medical Institute, Baltimore, Maryland, United States.
Department of Biostatistics, Johns Hopkins University Bloomberg School of Public Health, Baltimore, Maryland, United States.
Invest Ophthalmol Vis Sci. 2025 Jan 2;66(1):52. doi: 10.1167/iovs.66.1.52.
Although mechanical injury to the cornea (e.g. chronic eye rubbing) is a known risk factor for keratoconus progression, how it contributes to loss of corneal integrity is not known. Here, we set out to determine how eye rubbing can influence keratoconus progression by exploring the expression of known disease markers in mechanically stressed corneal epithelial cells.
To explore the effects of mechanical stress on the expression of genes implicated in keratoconus (e.g. WNT10A, COL12A1, and TGFB1), we measured their expression using an in vitro model that simulates eye rubbing by cyclic stretching of an immortalized human corneal epithelial cell line (hTCEpi) for 16 hours. We further examined the influence of WNT10A expression in hTCEpi cells using loss-of-function approaches.
Mechanical strain led to a marked reduction in WNT10A mRNA and protein expression, as well as decreased collagen XII mRNA and protein expression, in hTCEpi cells. Reduced expression of WNT10A protein in WNT10A knockdown cells resulted in reduced protein expression of collagens I and XII, and reduced mRNA expression of MMP9 and TGFB1. Conversely, primary keratocytes treated with recombinant WNT10A protein increased TGFB1 mRNA expression.
We provide a molecular explanation for how mechanical strain results in reduced expression of WNT10A in the corneal epithelium, which, in turn, leads to depletion of collagen type I and XII, and TGFβ1 expression. These results provide a molecular link among mechanical strain, WNT10A expression, and the biomechanical failure of the keratoconus cornea.
虽然角膜机械损伤(如长期揉眼)是圆锥角膜进展的已知危险因素,但其如何导致角膜完整性丧失尚不清楚。在此,我们通过探索机械应激的角膜上皮细胞中已知疾病标志物的表达,来确定揉眼如何影响圆锥角膜的进展。
为了探究机械应激对圆锥角膜相关基因(如WNT10A、COL12A1和TGFB1)表达的影响,我们使用一种体外模型测量它们的表达,该模型通过对永生化人角膜上皮细胞系(hTCEpi)进行16小时的循环拉伸来模拟揉眼。我们还使用功能丧失方法进一步研究了WNT10A在hTCEpi细胞中的表达影响。
机械应变导致hTCEpi细胞中WNT10A mRNA和蛋白表达显著降低,以及胶原XII mRNA和蛋白表达减少。WNT10A基因敲低细胞中WNT10A蛋白表达降低,导致I型和XII型胶原的蛋白表达减少,以及MMP9和TGFB1的mRNA表达降低。相反,用重组WNT10A蛋白处理的原代角膜细胞增加了TGFB1 mRNA表达。
我们提供了一个分子解释,说明机械应变如何导致角膜上皮中WNT10A表达降低,进而导致I型和XII型胶原以及TGFβ1表达减少。这些结果在机械应变、WNT10A表达和圆锥角膜的生物力学衰竭之间建立了分子联系。