Key result
Intraperitoneal injection of telmisartan reduced the neovascularized area in the cornea by 70% compared to control mice on day 7 after suturing.
Effect estimate: 70% smaller
Telmisartan significantly reduces inflammation-driven corneal neovascularization in a mouse model, suggesting AT1R as a potential therapeutic target.
Should not yet alter clinical management of corneal neovascularization; leaves open AT1R blockade as a therapeutic target.
PURPOSE: To determine the role of angiotensin II type 1 receptor (AT1R) signaling in corneal neovascularization. METHODS: Corneal neovascularization was induced by suturing 10-0 nylon 1 mm away from limbal vessels in C57 BJ6 mice. Angiotensinogen and its receptor (AT1R) gene expression levels were evaluated by semiquantitative reverse transcription-polymerase chain reaction (RT-PCR). The expression of angiotensin II (Ang2) and AT1R was confirmed by Western blotting and immunohistochemistry. To investigate the function of Ang2 in corneal neovascularization, infiltrating macrophages in vascularized corneas and the neovascularized area were investigated after intraperitoneal injection of an AT1R antagonist (telmisartan, 10 mg/kg). Further, corneal mRNA of VEGF, MCP-1, IL-6, ICAM-1, and TNF-alpha was examined in control and telmisartan-treated mice. RESULTS: Ang2 and AT1R markedly increased in the neovascularized corneas compared with normal corneas. Ang2 and AT1R were expressed in epithelium and stromal cells (vascular endothelium, infiltrating leukocytes, and keratocytes) in neovascularized cornea at protein levels and were weakly detected in normal corneal epithelium. Infiltrating macrophages were reduced in telmisartan-treated mice on day 7 after suturing. Neovascularized area in the cornea of telmisartan-treated mice was 70% smaller than that of control mice on day 7 after suturing. A PPAR-gamma antagonist partially, but significantly, reversed the suppressive effect of telmisartan on induction of corneal neovascularization. The expression of VEGF, MCP-1, IL-6, and ICAM-1 was significantly inhibited in telmisartan-treated mice. CONCLUSIONS: These findings indicate that Ang2, abundantly expressed in neovascularized corneas, has a significant role in inflammation-related driven corneal neovascularization. AT1R may be a therapeutic target for the suppression of corneal neovascularization.
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Usui et al. (2008) studied Corneal neovascularization. Telmisartan (AT1R antagonist) vs. Control was evaluated on Neovascularized area in the cornea on day 7 after suturing (70% smaller). Intraperitoneal injection of telmisartan reduced the neovascularized area in the cornea by 70% compared to control mice on day 7 after suturing.
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