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Targeted disruption of the FGF2 gene does not prevent choroidal neovascularization in a murine model
1Department of Ophthalmology and Neuroscience, The Johns Hopkins University School of Medicine, Baltimore, Maryland 21287-9277, USA.
Abstract:
Choroidal neovascularization (CNV) is the major cause of severe visual loss in patients with age-related macular degeneration. Laser treatment is helpful for a minority of patients with CNV, and development of new treatments is hampered by a poor understanding of the molecular signals involved. Several lines of evidence have suggested that basic fibroblast growth factor (FGF2) plays a role in stimulating CNV. In this study, we tested this hypothesis using mice with targeted disruption of the FGF2 gene in a newly developed murine model of laser-induced CNV. One week after krypton laser photocoagulation in C57BL/6J mice, 34 of 60 burns (57%) showed fluorescein leakage and 13 of 16 (81%) showed histopathological evidence of CNV. At 2 weeks, CNV was detected in 9 of 10 burns (90%) in which a bubble had been observed at the time of the laser treatment. Electron microscopy showed fenestrated vessels with large lumens within choroidal neovascular lesions. Two weeks after laser-induced rupture of Bruch's membrane, 27 of 36 burns (75%) contained CNV in FGF2-deficient mice compared with 26 of 30 (87%) in wild-type control mice, a difference that is not statistically significant. This study demonstrates that FGF2 is not required for the development of CNV after laser-induced rupture of Bruch's membrane and provides a new model to investigate molecular mechanisms and anti-angiogenic therapy in CNV.
Insights
Basic fibroblast growth factor (FGF2) does not appear to be required for choroidal neovascularization (CNV) development. This study provides a new model for investigating anti-angiogenic therapies for CNV.
Area of Science:
- Ophthalmology
- Molecular Biology
- Genetics
Background:
- Choroidal neovascularization (CNV) is a primary cause of vision loss in age-related macular degeneration.
- Current treatments for CNV are limited, highlighting the need for better understanding of its molecular drivers.
- Basic fibroblast growth factor (FGF2) has been implicated in stimulating CNV.
Purpose of the Study:
- To investigate the role of FGF2 in the development of laser-induced CNV using a murine model.
- To determine if FGF2 is essential for the formation of choroidal neovascular lesions.
Main Methods:
- A murine model of laser-induced CNV was established in C57BL/6J mice.
- FGF2-deficient mice were compared with wild-type controls.
- Histopathological analysis and fluorescein leakage were used to assess CNV development.
Main Results:
- Laser photocoagulation successfully induced CNV in the murine model.
- CNV was detected in both FGF2-deficient and wild-type mice.
- There was no statistically significant difference in CNV incidence between FGF2-deficient and wild-type mice.
Conclusions:
- FGF2 is not required for the development of CNV following laser-induced rupture of Bruch's membrane.
- This study establishes a valuable new model for exploring CNV molecular mechanisms.
- The findings suggest potential avenues for developing anti-angiogenic therapies for CNV.