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An Alkali-burn Injury Model of Corneal Neovascularization in the Mouse
Published on: April 7, 2014
NADPH oxidase 2 plays a role in experimental corneal neovascularization
Elsa C Chan1, Peter van Wijngaarden1, Elsie Chan1
1Centre for Eye Research Australia, Royal Victorian Eye and Ear Hospital, East Melbourne, Victoria 3002, Australia Ophthalmology, Department of Surgery, University of Melbourne, East Melbourne, Victoria 3002, Australia.
Abstract:
Corneal neovascularization, the growth of new blood vessels in the cornea, is a leading cause of vision impairment after corneal injury. Neovascularization typically occurs in response to corneal injury such as that caused by infection, physical trauma, chemical burns or in the setting of corneal transplant rejection. The NADPH oxidase enzyme complex is involved in cell signalling for wound-healing angiogenesis, but its role in corneal neovascularization has not been studied. We have now analysed the role of the Nox2 isoform of NADPH oxidase in corneal neovascularization in mice following chemical injury. C57BL/6 mice aged 8-14 weeks were cauterized with an applicator coated with 75% silver nitrate and 25% potassium nitrate for 8 s. Neovascularization extending radially from limbal vessels was observed in corneal whole-mounts from cauterized wild type mice and CD31+ vessels were identified in cauterized corneal sections at day 7. In contrast, in Nox2 knockout (Nox2 KO) mice vascular endothelial growth factor-A (Vegf-A), Flt1 mRNA expression, and the extent of corneal neovascularization were all markedly reduced compared with their wild type controls. The accumulation of Iba-1+ microglia and macrophages in the cornea was significantly less in Nox2 KO than in wild type mice. In conclusion, we have demonstrated that Nox2 is implicated in the inflammatory and neovascular response to corneal chemical injury in mice and clearly VEGF is a mediator of this effect. This work raises the possibility that therapies targeting Nox2 may have potential for suppressing corneal neovascularization and inflammation in humans.
Insights
The study found that Nox2, an enzyme, plays a key role in corneal neovascularization and inflammation following injury. Targeting Nox2 may offer new therapies for vision impairment caused by new blood vessel growth in the cornea.
Area of Science:
- Ophthalmology
- Immunology
- Molecular Biology
Background:
- Corneal neovascularization (CNV) causes vision loss after corneal injury.
- The role of NADPH oxidase, specifically the Nox2 isoform, in CNV is not well understood.
Purpose of the Study:
- To investigate the role of the Nox2 isoform of NADPH oxidase in mouse corneal neovascularization after chemical injury.
Main Methods:
- Chemical cauterization of corneas in wild-type and Nox2 knockout (Nox2 KO) mice.
- Analysis of corneal whole-mounts and sections for neovascularization (CD31+ vessels).
- Quantification of vascular endothelial growth factor-A (Vegf-A) and Flt1 mRNA expression, and immune cell infiltration (Iba-1+ cells).
Main Results:
- Nox2 KO mice showed significantly reduced corneal neovascularization compared to wild-type controls.
- Vascular endothelial growth factor-A (Vegf-A) and Flt1 mRNA expression were markedly reduced in Nox2 KO mice.
- Inflammatory cell infiltration (microglia and macrophages) was significantly lower in Nox2 KO mice.
Conclusions:
- Nox2 is implicated in the inflammatory and neovascular response to corneal chemical injury in mice.
- VEGF acts as a mediator in the Nox2-driven neovascularization process.
- Targeting Nox2 may be a potential therapeutic strategy for suppressing corneal neovascularization and inflammation.

