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An Alkali-burn Injury Model of Corneal Neovascularization in the Mouse
Published on: April 7, 2014
Inhibition of mouse alkali burn induced-corneal neovascularization by recombinant adenovirus encoding human
Shi-you Zhou1, Zhao-lian Xie, Ou Xiao
1Zhongshan Ophthalmic Center, Sun Yat-sen University, The State Key Laboratory of Ophthalmology, Guangzhou, China. zhoushiy@mail.sysu.edu.cn
Purpose:
To evaluate the activity of recombinant adenovirus encoding human vasohibin-1 (Ad-Vasohibin-1) on mouse corneal neovasularization induced by alkali burn.
Methods:
For the treatment group, 50 mice each received subconjunctival injection (5 microl) of 10(9) plaque forming units of replication-defective Ad-Vasohibin-1. Control group mice received the same dosage of blank adenoviral vector (AdNull). Five days after injection, corneal neovascularization (CNV) was induced by placing 2.5 microl of 0.1 M NaOH on the right cornea for 30 s. Subsequently, CNV was observed and photographed every 3 days for a total duration of 9 days after the alkali burn. The percentage of neovascularized area was measured and compared with the AdNull control. The expression of human vasohibin-1 protein was detected by immunohistochemistry and western blotting at 5, 8, and 14 days after injection. The mRNA expression levels of murine vascular endothelial growth factor (Vegf), VEGF receptor 1 and 2 (Vegfr1, Vegfr2), and vasohibin-1 (Vash1) were analyzed and compared by real time quantitative reverse-transcription polymerase chain reaction.
Results:
The percentage of neovascularized area within the cornea was significantly reduced in mice treated with Ad-Vasohibin-1 compared to mice treated with AdNull at every time point after alkali-induced injury (7.11%+/-3.91% and 15.48%+/-1.79% of corneal area in the treatment and control groups, respectively, on day 3; 31.64%+/-4.71% and 43.93%+/-6.15% on day 6, and 45.02%+/-9.98% and 66.24%+/-7.17% on day 9, all p<0.001). Human vasohibin-1 protein was detected at the injection sites on day 3 after corneal burn and was highly expressed in the central subepithelial stroma and co-localized with neovascularized vessels within the alkali-treated cornea on day 6. On day 9, the peripheral cornea exhibited a similar staining pattern as the central cornea, but a more intense vasohibin-1 immunostaining signal was detected in the deep stroma. Some of the vasohibin-1 stain signal diffused into the frontal and deep stroma of the central cornea and was not co-localized with new vessels. By contrast, in mice injected with AdNull or normal corneas, no vasohibin-1 stain signal was detected within the corneas. Vasohibin-1 protein expression within treated corneas was also further confirmed by western blotting on day 5. Expression appeared to peak by day 8 and was maintained at high levels until day 14. However, Vasohibin-1 protein was not detected in the corneas of normal mice or mice treated with AdNull. Real-time quantitative reverse-transcription polymerase chain reaction analysis showed that expression of Vegfr2 and endogenous Vash1 mRNA were significantly decreased in the treatment versus control group (t(1)=-2.161, p(1)=0.047; t(2)=-2.236, p(2)=0.041). In contrast, there were no significant differences in Vegf and Vegfr1 mRNA expression levels between the treatment and control groups (p>0.05 for both).
Conclusions:
Subconjunctival injection of Ad-Vasohibin-1 significantly reduces corneal neovascularization in alkali-treated mouse corneas. This effect of anti-neovascularization may be related to the downregulation of Vegfr2 expression.
Insights
Recombinant adenovirus encoding human vasohibin-1 significantly reduced corneal neovascularization in mice after alkali burns. This anti-neovascularization effect may be linked to decreased vascular endothelial growth factor receptor 2 expression.
Area of Science:
- Ophthalmology
- Gene Therapy
- Vascular Biology
Background:
- Corneal neovascularization (CNV) is a pathological process that can lead to vision impairment.
- Adenovirus-mediated gene delivery offers a potential therapeutic strategy for ocular diseases.
Purpose of the Study:
- To evaluate the efficacy of recombinant adenovirus encoding human vasohibin-1 (Ad-Vasohibin-1) in inhibiting alkali burn-induced corneal neovascularization in mice.
Main Methods:
- Mice received subconjunctival injections of Ad-Vasohibin-1 or a control adenoviral vector (AdNull).
- Corneal neovascularization was induced by alkali burn and monitored over 9 days.
- Neovascularized area, protein expression (immunohistochemistry, Western blotting), and mRNA levels (RT-qPCR) of key angiogenic factors were analyzed.
Main Results:
- Ad-Vasohibin-1 treatment significantly reduced the percentage of neovascularized corneal area compared to the AdNull control group.
- Human vasohibin-1 protein was detected in treated corneas and co-localized with neovascularized vessels.
- Downregulation of vascular endothelial growth factor receptor 2 (Vegfr2) and endogenous vasohibin-1 (Vash1) mRNA was observed in the Ad-Vasohibin-1 group.
Conclusions:
- Subconjunctival injection of Ad-Vasohibin-1 effectively reduces corneal neovascularization in a mouse alkali burn model.
- The anti-neovascularization effect is potentially mediated by the downregulation of Vegfr2 expression.

