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Updated: Oct 6, 2025

A Mouse Model for Laser-induced Choroidal Neovascularization
Published on: December 27, 2015
Comparative ligandomics implicates secretogranin III as a disease-restricted angiogenic factor in laser-induced
Liyang Ji1,2,3, Prabuddha Waduge1,2, Wencui Wan2,4
1Cullen Eye Institute, Department of Ophthalmology, Baylor College of Medicine, Houston, TX, USA.
Abstract:
Choroidal neovascularization (CNV) is a leading cause of vision loss in the elderly. All approved anti-angiogenic drug therapies for CNV target vascular endothelial growth factor (VEGF) but confer limited efficacy. Identification of other CNV-related angiogenic factors will facilitate the development of VEGF-independent alternative therapies. Here, we applied comparative ligandomics to live mice with or without laser-induced CNV for global mapping of CNV-selective endothelial ligands. Secretogranin III (Scg3) previously identified by the same approach as a diabetes-restricted angiogenic factor was mapped with a more than 935-fold increase in binding to CNV vessels compared to healthy choriocapillaris. A novel in vivo ligand binding assay independently confirmed a marked increase in Scg3 binding to CNV vessels, whereas VEGF showed no increase in CNV-selective binding. A new technique of functional immunohistochemistry allowed the visualization and confirmed the increase in in vivo Scg3 binding to CNV vasculatures, including CNV microcapillaries with detailed vascular structures, which was blocked by anti-Scg3 humanized antibody Fab fragment (hFab). The hFab effectively alleviated laser-induced CNV with an efficacy similar to the anti-VEGF drug aflibercept. Homozygous deletion of the Scg3 gene in mice significantly reduced the severity of CNV. Furthermore, the therapeutic activity of anti-Scg3 hFab, but not aflibercept, was abolished in Scg3-/- mice, suggesting the Scg3-dependent nature of the hFab-mediated therapy. These findings suggest that Scg3 plays an important role in CNV pathogenesis and is a promising disease-restricted angiogenic factor for ligand-guided disease-targeted anti-angiogenic therapy of CNV.
Insights
Secretogranin III (Scg3) is a novel target for treating choroidal neovascularization (CNV), a major cause of vision loss. Therapies targeting Scg3 show promise as an alternative to current treatments for CNV.
Area of Science:
- Ophthalmology
- Angiogenesis Research
- Molecular Biology
Background:
- Choroidal neovascularization (CNV) causes significant vision loss in the elderly.
- Current anti-angiogenic therapies targeting vascular endothelial growth factor (VEGF) have limited efficacy.
- Novel therapeutic targets are needed for effective CNV treatment.
Purpose of the Study:
- To identify novel CNV-selective angiogenic factors beyond VEGF.
- To investigate the role of Secretogranin III (Scg3) in CNV pathogenesis.
- To evaluate Scg3 as a therapeutic target for CNV.
Main Methods:
- Comparative ligandomics in laser-induced CNV mouse models.
- In vivo ligand binding assays and functional immunohistochemistry.
- Evaluation of anti-Scg3 antibody efficacy and Scg3 gene deletion effects.
Main Results:
- Secretogranin III (Scg3) showed a significant, >935-fold increase in binding to CNV vessels.
- VEGF binding did not increase in CNV vessels.
- Anti-Scg3 antibody fragment (hFab) effectively reduced CNV severity, comparable to aflibercept.
- Scg3 gene deletion reduced CNV severity, and anti-Scg3 hFab efficacy was abolished in Scg3-/- mice.
Conclusions:
- Scg3 is a key angiogenic factor in CNV pathogenesis.
- Scg3 represents a promising, disease-restricted target for novel anti-angiogenic therapies for CNV.
- Scg3-targeted therapy offers a potential VEGF-independent treatment strategy for CNV.
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