AI Article Synopsis

  • The primary method for treating corneal blindness is through human donor cornea transplantation, but there's a shortage of donors and a high risk of transplant rejection due to conditions like corneal neovascularization.
  • Researchers have developed a new type of donor cornea substitute (DCS) using a composite biosynthetic scaffold that incorporates a sustained release system of the anti-VEGF drug, bevacizumab, which is designed to reduce the risk of graft failure.
  • Preliminary tests showed that this composite DCS maintains good optical properties, is non-toxic to human corneal cells, and effectively releases bevacizumab for up to three weeks, suggesting it could be a viable alternative for treating corneal diseases linked to neovascularization.

Article Abstract

Currently the only widely accepted corneal blindness treatment is human donor cornea transplantation. However, increasing shortage of donor corneas as well as high risk of rejection in some corneal diseases remain two major problems, which limit the success of corneal transplantation. Corneal neovascularization is considered as one of the main risk factors of graft failure. Different cell-free biosynthetic scaffolds fabricated from collagens or collagen-like peptides are being tested as donor cornea substitutes (DCS). Here, we report for the first-time composite biosynthetic DCS with integrated sustained release system of anti-VEGF drug, bevacizumab and their preliminary in vitro validation. We have tethered gold nanoparticles with bevacizumab and integrated into a collagen-based cell-free hydrogel scaffold. Developed grafts preserved good optical properties and were confirmed not toxic to human corneal epithelial cells. Bevacizumab has been shown to constantly releasing from the DCS up to 3 weeks and preserved its anti-angiogenic properties. These results provide background for further use of infused composite biosynthetic DCS with integrated nanosystem of bevacizumab sustained release in corneal disease accompanied by neovascularisation where conventional corneal transplantation might fail.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC7533359PMC
http://dx.doi.org/10.1016/j.heliyon.2020.e05105DOI Listing

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