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Updated: May 12, 2026

An Alkali-burn Injury Model of Corneal Neovascularization in the Mouse
Published on: April 7, 2014
Accelerating repaired basement membrane after bevacizumab treatment on alkali-burned mouse cornea
Koon-Ja Lee1, Ji-Young Lee, Sung Ho Lee
1Department of Optometry, Eulji University, Seongnam 461-713, Korea. kjl@eulji.ac.kr
Abstract:
To understand the corneal regeneration induced by bevacizumab, we investigated the structure changes of stroma and basement membrane regeneration. A Stick soaked in 0.5 N NaOH onto the mouse cornea and 2.5 mg/ml of bevacizumab was delivered into an alkali-burned cornea (2 μl) by subconjunctival injections at 1 hour and 4 days after injury. At 7 days after injury, basement membrane regeneration was observed by transmission electron microscope. Uneven and thin epithelial basement membrane, light density of hemidesmosomes, and edematous collagen fibril bundles are shown in the alkali-burned cornea. Injured epithelial basement membrane and hemidesmosomes and edematous collagen fibril bundles resulting from alkali-burned mouse cornea was repaired by bevacizumab treatment. This study demonstrates that bevacizumab can play an important role in wound healing in the cornea by accelerating the reestablishment of basement membrane integrity that leads to barriers for scar formation.

