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Updated: Jan 23, 2026

A Mouse Model for Laser-induced Choroidal Neovascularization
Published on: December 27, 2015
Activated protein C induces suppression and regression of choroidal neovascularization- A murine model
Tami Livnat1, Yehonatan Weinberger2, Ivan Budnik3
1Sackler Faculty of Medicine, Tel Aviv University, Tel-Aviv, Israel; Laboratory of Eye Research, Felsenstein Medical Research Center, Petah-Tikva, Israel; The Israeli National Hemophilia Center and the Amalia Biron Thrombosis Research Institute, Sheba Medical Center, Tel-Hashomer, Israel.
Abstract:
Activated protein C (APC) exerts diverse cell signaling pathways which results in multiple distinct cytoprotective actions. These include anti-apoptotic and anti-inflammatory activities and stabilization of endothelial and epithelial barriers. We studied the ability of APC to inhibit the leakage and the growth of newly formed as well as pre-existing choroidal neovascularization (CNV) and examined the ability of APC to stabilize the Retinal Pigmented Epithelium (RPE). We explored the contribution of Tie2 receptor to the protective effects of APC. CNV was induced by laser photocoagulation in C57BL/6J mice. APC was injected intravitreally immediately or 7 days after CNV induction. Neovascularization was evaluated on RPE-choroidal flatmounts using FITC-dextran perfusion and CD31 immunofluorescence. CNV leakage was measured by fluorescein angiography (FA). The ability of APC to stabilize the RPE barrier was evaluated in-vitro by dextran permeability and zonula occludens 1 (ZO1) immunostaining. Tie2 blocking was induced in-vivo by intraperitoneal injection of Tie2 kinase inhibitor and in-vitro by incubation with anti Tie2 antibodies. APC treatment dramatically inhibited the generation of newly formed CNV leakage sites and reversed leakage in 85% of the pre-existing CNV leaking sites. In RPE cell culture, APC induced translocation of ZO1 to the cell membrane, accompanied by reduction in permeability of the monolayer. Inhibition of Tie2 significantly decreased APC protective activities in both the mouse model and the RPE cell culture. Our results show that APC treatment significantly inhibits the leakage and growth of newly formed, as well as pre-existing CNV, and its protective activities are partially mediated via the Tie2 receptor. The data suggest that APC should be further investigated as a possible effective treatment for CNV.
Insights
Activated protein C (APC) significantly reduces leakage and growth in choroidal neovascularization (CNV). These protective effects are partly mediated by the Tie2 receptor, suggesting APC as a potential CNV treatment.
Area of Science:
- Ophthalmology
- Vascular Biology
- Cell Signaling
Background:
- Activated protein C (APC) has known cytoprotective functions, including anti-apoptotic and anti-inflammatory effects.
- APC stabilizes endothelial and epithelial barriers, crucial for maintaining tissue integrity.
- Choroidal neovascularization (CNV) involves abnormal blood vessel growth and leakage, leading to vision loss.
Purpose of the Study:
- To investigate APC's efficacy in inhibiting the leakage and growth of both new and existing CNV.
- To assess APC's ability to stabilize the Retinal Pigmented Epithelium (RPE) barrier.
- To explore the role of the Tie2 receptor in mediating APC's protective effects on CNV and RPE.
Main Methods:
- CNV was induced in mice via laser photocoagulation, with subsequent intravitreal APC injections.
- Neovascularization and leakage were quantified using FITC-dextran perfusion, CD31 immunofluorescence, and fluorescein angiography.
- In vitro, RPE barrier function was assessed by dextran permeability and ZO1 immunostaining, with Tie2 inhibition using specific antibodies.
Main Results:
- APC treatment markedly inhibited new CNV leakage and reversed leakage in 85% of pre-existing CNV sites.
- In vitro, APC promoted ZO1 translocation to the RPE cell membrane, reducing monolayer permeability.
- Inhibition of Tie2 signaling significantly diminished APC's protective effects in both in vivo and in vitro models.
Conclusions:
- APC effectively inhibits the leakage and growth of choroidal neovascularization.
- APC's protective actions on CNV and RPE are partially mediated through the Tie2 receptor pathway.
- APC demonstrates potential as a therapeutic agent for treating CNV.
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