PLoS ONE · 2011 · 64 citations · 23 references
Ocular DiseaseOcular Surface PhysiologyOcular PharmacologyCorneal WoundingInflammationMatrix BiologyMolecular SignalingCorneal InflammationOphthalmologyCorneal DystrophyVascular BiologyOcular TissueCell BiologyCorneal InjuryExperimental OphthalmologyAlkali InjuryWound HealingMedicineExtracellular Matrix
SERPINA3K is a member of the serine proteinase inhibitor (SERPIN) family. Here we evaluated the therapeutic effects of SERPINA3K on neovascularization and inflammation in a rat cornea alkali burn model that is commonly employed to study corneal wounding. Topical treatment of the injured rat cornea with SERPINA3K (20 µg/eye/day) for 7 days significantly decreased the neovascular area, compared with the groups treated with BSA or PBS. The SERPINA3K treatment also ameliorated the corneal inflammation as evaluated by the inflammatory index. Furthermore, SERPINA3K enhanced the recovery of corneal epithelium after the alkali injury. Toward the mechanism of action, SERPINA3K down-regulated the expression of the pro-angiogenic and pro-inflammatory factors, vascular endothelial growth factor and tumor necrosis factor-α and up-regulated the expression of the anti-angiogenic factor, pigment epithelium-derived factor. SERPINA3K specifically inhibited growth of vascular endothelial cells. Meanwhile, SERPINA3K significantly up-regulated the expression of EGFR in the corneal epithelium. These findings suggest that SERPINA3K has therapeutic potential for corneal inflammation and NV.
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Pigment Epithelium-Derived Factor: A Potent Inhibitor of Angiogenesis
David W. Dawson, Olga V. Volpert, Paul Gillis et al. · Science · 1999 · 1.5K citations
Unbalanced expression of VEGF and PEDF in ischemia‐induced retinal neovascularization
Guoquan Gao, Yan Li, Dongchang Zhang et al. · FEBS Letters · 2001 · 297 citations · Full text
Ocular Disease, Retinal Neovascularization, Retinal Levels +16