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Largazole Inhibits Ocular Angiogenesis by Modulating the Expression of VEGFR2 and p21
Beiying Qiu1,2, Alison Tan1,2, Yu Zhi Tan3
1Centre for Vision Research, Duke NUS Medical School, 8 College Road, Singapore 169857, Singapore.
Abstract:
Ocular angiogenic diseases, characterized by abnormal blood vessel formation in the eye, are the leading cause of blindness. Although Anti-VEGF therapy is the first-line treatment in the market, a substantial number of patients are refractory to it or may develop resistance over time. As uncontrolled proliferation of vascular endothelial cells is one of the characteristic features of pathological neovascularization, we aimed to investigate the role of the class I histone deacetylase (HDAC) inhibitor Largazole, a cyclodepsipeptide from a marine cyanobacterium, in ocular angiogenesis. Our study showed that Largazole strongly inhibits retinal vascular endothelial cell viability, proliferation, and the ability to form tube-like structures. Largazole strongly inhibits the vessel outgrowth from choroidal explants in choroid sprouting assay while it does not affect the quiescent choroidal vasculature. Largazole also inhibits vessel outgrowth from metatarsal bones in metatarsal sprouting assay without affecting pericytes coverage. We further demonstrated a cooperative effect between Largazole and an approved anti-VEGF drug, Alflibercept. Mechanistically, Largazole strongly inhibits the expression of VEGFR2 and leads to an increased expression of cell cycle inhibitor, p21. Taken together, our study provides compelling evidence on the anti-angiogenic role of Largazole that exerts its function through mediating different signaling pathways.
Insights
Largazole, a marine-derived compound, effectively inhibits ocular angiogenesis by targeting vascular endothelial cells. It shows promise in treating angiogenesis-related blindness, potentially enhancing anti-VEGF therapies.
Area of Science:
- Ophthalmology
- Molecular Biology
- Marine Biotechnology
Background:
- Ocular angiogenic diseases cause blindness.
- Anti-VEGF therapy is limited by patient resistance.
- Uncontrolled vascular endothelial cell proliferation drives neovascularization.
Purpose of the Study:
- Investigate Largazole, a class I histone deacetylase (HDAC) inhibitor, for ocular angiogenesis.
- Determine Largazole's anti-angiogenic mechanisms and potential synergistic effects.
Main Methods:
- Assessed Largazole's effect on retinal vascular endothelial cell viability, proliferation, and tube formation.
- Utilized choroid and metatarsal sprouting assays to evaluate vessel outgrowth.
- Analyzed VEGFR2 and p21 expression levels.
- Investigated synergistic effects with anti-VEGF drug Alflibercept.
Main Results:
- Largazole significantly inhibited endothelial cell viability, proliferation, and tube formation.
- Largazole suppressed choroidal and metatarsal vessel outgrowth without affecting quiescent vasculature or pericytes.
- Largazole demonstrated a cooperative effect with Alflibercept.
- Mechanistically, Largazole reduced VEGFR2 expression and increased p21 expression.
Conclusions:
- Largazole exhibits potent anti-angiogenic properties relevant to ocular diseases.
- Largazole functions through distinct signaling pathways, including VEGFR2 and p21 modulation.
- Largazole represents a potential therapeutic candidate for angiogenesis-related blindness, possibly in combination with existing treatments.
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