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April 4, 2026International Journal of Molecular Sciences2 citationsOpen Access

Downregulation of the Transglutaminase 2–NF-κB Inflammatory Axis by a Fusion Protein of Cementoin and Secretory Leukocyte Protease Inhibitor Reduces Corneal Angiogenesis

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JSJuan Pablo SalicaMPMaría Constanza PotilinskiGOGustavo Ortiz

Key Points

  • The study aims to investigate the effects of a fusion protein on corneal neovascularization and inflammation following alkali burns.
  • Used a rat model of alkali-induced corneal injury
  • Topical treatment with fusion protein, SLPI, or Buffer after injury
  • Clinical assessments included corneal healing, opacity, and neovascularization
  • Utilized histological, immunofluorescence, RT-qPCR, and Western blot analyses
  • FP treatment enhanced corneal re-epithelialization and reduced opacity
  • Significant reduction in corneal neovascularization compared to controls
  • Downregulation of pro-inflammatory cytokines like TNF-α, IL-17, and VEGF was noted
  • FP suppressed transglutaminase 2 and NF-κB signaling pathway components

Abstract

Corneal alkali burns represent one of the most severe forms of ocular surface injury and frequently result in persistent inflammation, corneal neovascularization, stromal remodeling, and permanent visual impairment. Current therapeutic approaches incompletely control the inflammatory mechanisms that sustain pathological angiogenesis and tissue disorganization. In this study, we evaluated the effects of a transglutaminase-binding fusion protein (FP) in a rat model of alkali-induced corneal injury. Following standardized alkali burns, animals were treated topically with FP, secretory leukocyte protease inhibitor (SLPI), or Buffer. Corneal epithelial healing, opacity, and neovascularization were assessed clinically and by digital image-based quantification, while histological and immunofluorescence analyses were used to evaluate stromal organization and vascular invasion. Molecular mechanisms were investigated by RT-qPCR and Western blot analysis of key inflammatory, angiogenic, and signaling mediators. FP treatment significantly accelerated corneal re-epithelialization, reduced corneal opacity, and markedly attenuated corneal neovascularization compared to SLPI and Buffer controls. These effects were associated with coordinated downregulation of pro-inflammatory cytokines and angiogenic mediators, including TNF-α, IL-17, VEGF, and cPLA2. Notably, FP suppressed transglutaminase 2 expression and induced early and sustained downregulation of NF-κB pathway components, identifying modulation of an upstream inflammatory pathway central to corneal angiogenesis and stromal remodeling. Collectively, these findings demonstrate that FP effectively limits inflammation-driven corneal neovascularization and tissue remodeling following alkali injury, supporting its potential as a disease-modifying therapeutic strategy for inflammatory ocular surface disorders.

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Cite This Study

Salica et al. (2026) studied this question.

synapsesocial.com/papers/69d0afde659487ece0fa5ee9https://doi.org/10.3390/ijms27073247
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