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MG53 promotes corneal wound healing and mitigates fibrotic remodeling in rodents
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AbstractThe cornea plays an important role in transmitting light and providing protection to the eye, but is susceptible to injury and infection. Standard treatments for corneal wounds include topical lubricants, antibiotics, bandage contact lens, and surgery. However, these measures are often ineffective. Here we show that MG53, a protein with an essential role in cell membrane repair, contributes to the corneal injury-repair process. Native MG53 is present in the corneal epithelia, tear film, and aqueous humor, suggesting its potential function in corneal homeostasis. Knockout of MG53 in mice causes impaired healing and regenerative capacity following injury. Exogenous recombinant human MG53 (rhMG53) protein protects the corneal epithelia against mechanical injury and enhances healing by promoting migration of corneal fibroblasts. Using in vivo alkaline-induced injury to the rat cornea, we show that rhMG53 promotes re-epithelialization and reduces post-injury fibrosis and vascularization. Finally, we show that rhMG53 modulates TGF-β-mediated fibrotic remodeling associated with corneal injury. Overall, our data support the bi-functional role of MG53 in facilitating corneal healing and maintaining corneal transparency by reducing fibrosis and vascularization associated with corneal injuries.
Title: MG53 promotes corneal wound healing and mitigates fibrotic remodeling in rodents
Description:
AbstractThe cornea plays an important role in transmitting light and providing protection to the eye, but is susceptible to injury and infection.
Standard treatments for corneal wounds include topical lubricants, antibiotics, bandage contact lens, and surgery.
However, these measures are often ineffective.
Here we show that MG53, a protein with an essential role in cell membrane repair, contributes to the corneal injury-repair process.
Native MG53 is present in the corneal epithelia, tear film, and aqueous humor, suggesting its potential function in corneal homeostasis.
Knockout of MG53 in mice causes impaired healing and regenerative capacity following injury.
Exogenous recombinant human MG53 (rhMG53) protein protects the corneal epithelia against mechanical injury and enhances healing by promoting migration of corneal fibroblasts.
Using in vivo alkaline-induced injury to the rat cornea, we show that rhMG53 promotes re-epithelialization and reduces post-injury fibrosis and vascularization.
Finally, we show that rhMG53 modulates TGF-β-mediated fibrotic remodeling associated with corneal injury.
Overall, our data support the bi-functional role of MG53 in facilitating corneal healing and maintaining corneal transparency by reducing fibrosis and vascularization associated with corneal injuries.
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