• Title/Summary/Keyword: Alkali-burned cornea

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Accelerating repaired basement membrane after bevacizumab treatment on alkali-burned mouse cornea

  • Lee, Koon-Ja;Lee, Ji-Young;Lee, Sung Ho;Choi, Tae Hoon
    • BMB Reports
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    • v.46 no.4
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    • pp.195-200
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    • 2013
  • 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 ${\mu}l$) 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.

Hitological Changes on the Wound Healing Process of Alkali Burned Mouse Cornea (알칼리 화상을 입은 마우스 각막에서 상처 치유과정 중 관찰된 조직학적 변화)

  • Lee, Ji-Young;Lee, Koon-Ja
    • Journal of Korean Ophthalmic Optics Society
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    • v.13 no.4
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    • pp.161-169
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    • 2008
  • Purpose: To better understand the corneal regeneration after alkali burn regarding the initial clinical progression and the therapy, we investigated the changes of the multi factors following chemical injury in cornea. Methods: This study was performed to observation on the healing process of alkali burned cornea in aspect of immunohistochemistry by immunofluorescence or H-E staining and TUNEL assay. Results: The results showed that although a healing process occurred after alkali burn, apoptosis of epithelial, stromal and endothelial cells in the cornea was continuously observed. Neovascularization and expression of ${\alpha}$-smooth muscle actin (${\alpha}$-SMA) from limbus and from injured cornea, respectively, were observed after 3 days of alkali burn. Formation of collagen III in corneal stroma and increased expression of chondroitin sulfate are coincident with expression of ${\alpha}$-SMA and transforming growth factor-${\beta}$ (TGF-${\beta}$). Conclusions: These data suggest that medical treatment within 3 days of alkali burn will be effective to inhibit neovascularization and formation of collagen III and chondroitin sulfate. This study extends our immumohistochemical understanding of healing process in alkali burned cornea, and the results get in this study will be cornerstones in the development of therapeutic agent for accelerating renewal of chemical damaged cornea.

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Bevacizumab accelerates corneal wound healing by inhibiting TGF-βexpression in alkali-burned mouse cornea

  • Lee, Sung-Ho;Leem, Hyun-Sung;Jeong, Seon-Mi;Lee, Koon-ja
    • BMB Reports
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    • v.42 no.12
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    • pp.800-805
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    • 2009
  • This study investigated the effect of subconjunctival injections of bevacizumab, an anti-VEGF antibody, on processes involved in corneal wound healing after alkali burn injury. Mice were divided into three groups: Group 1 was the saline-treated control, group 2 received subconjunctival injection of bevacizumab 1hr after injury and group 3 received bevacizumab 1 hr and 4 days after injury. Cornea neovascularization and opacity were observed using a slit lamp microscope. Corneal repair was assessed through histological analysis and immunostaining for CD31, $\alpha$-SMA, collagen I, and TGF-$\beta$2 7 days post-injury. In group 3, injection of bevacizumab significantly lowered neovascularization and improved corneal transparency. Immunostaining analysis demonstrated a reduction in CD31, $\alpha$-SMA and TGF-$\beta$2 levels in stroma compared to group 1. These results indicate that bevacizumab may be useful in reducing neovascularization and improving corneal transparency following corneal alkali burn injury by accelerating regeneration of the basement membrane.