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Photoactivated growth factor release from bio-orthogonally crosslinked hydrogels for the regeneration of corneal defects

Publication ,  Journal Article
Kang, NW; Seo, YA; Jackson, KJ; Jang, K; Song, E; Han, U; Chen, F; Heilshorn, SC; Myung, D
Published in: Bioactive Materials
October 1, 2024

In situ-forming hydrogels are an attractive option for corneal regeneration, and the delivery of growth factors from such constructs have the potential to improve re-epithelialization and stromal remodeling. However, challenges persist in controlling the release of therapeutic molecules from hydrogels. Here, an in situ-forming bio-orthogonally crosslinked hydrogel containing growth factors tethered via photocleavable linkages (PC-HACol hydrogel) was developed to accelerate corneal regeneration. Epidermal growth factor (EGF) was conjugated to the hydrogel backbone through photo-cleavable (PC) spacer arms and was released when exposed to mild intensity ultraviolet (UV) light (2–5 mW/cm2, 365 nm). The PC-HACol hydrogel rapidly gelled within a few minutes when applied to corneal defects, with excellent transparency and biocompatibility. After subsequent exposure to UV irradiation, the hydrogel promoted the proliferation and migration of corneal epithelial cells in vitro. The rate of re-epithelialization was positively correlated to the frequency of irradiation, verified through ex vivo rabbit cornea organ culture studies. In an in vivo rat corneal wound healing study, the PC-HACol hydrogel exposed to UV light significantly promoted re-epithelialization, the remodeling of stromal layers, and exhibited significant anti-scarring effects, with minimal α-SMA and robust ALDH3A1 expression. Normal differentiation of the regenerated epithelia after healing was evaluated by expression of the corneal epithelial biomarker, CK12. The remodeled cornea exhibited full recovery of corneal thickness and layer number without hyperplasia of the epithelium.

Duke Scholars

Published In

Bioactive Materials

DOI

ISSN

2452-199X

Publication Date

October 1, 2024

Volume

40

Start / End Page

417 / 429

Related Subject Headings

  • 4016 Materials engineering
  • 4003 Biomedical engineering
  • 3404 Medicinal and biomolecular chemistry
 

Citation

APA
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MLA
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Kang, N. W., Seo, Y. A., Jackson, K. J., Jang, K., Song, E., Han, U., … Myung, D. (2024). Photoactivated growth factor release from bio-orthogonally crosslinked hydrogels for the regeneration of corneal defects. Bioactive Materials, 40, 417–429. https://doi.org/10.1016/j.bioactmat.2024.05.045
Kang, N. W., Y. A. Seo, K. J. Jackson, K. Jang, E. Song, U. Han, F. Chen, S. C. Heilshorn, and D. Myung. “Photoactivated growth factor release from bio-orthogonally crosslinked hydrogels for the regeneration of corneal defects.” Bioactive Materials 40 (October 1, 2024): 417–29. https://doi.org/10.1016/j.bioactmat.2024.05.045.
Kang NW, Seo YA, Jackson KJ, Jang K, Song E, Han U, et al. Photoactivated growth factor release from bio-orthogonally crosslinked hydrogels for the regeneration of corneal defects. Bioactive Materials. 2024 Oct 1;40:417–29.
Kang, N. W., et al. “Photoactivated growth factor release from bio-orthogonally crosslinked hydrogels for the regeneration of corneal defects.” Bioactive Materials, vol. 40, Oct. 2024, pp. 417–29. Scopus, doi:10.1016/j.bioactmat.2024.05.045.
Kang NW, Seo YA, Jackson KJ, Jang K, Song E, Han U, Chen F, Heilshorn SC, Myung D. Photoactivated growth factor release from bio-orthogonally crosslinked hydrogels for the regeneration of corneal defects. Bioactive Materials. 2024 Oct 1;40:417–429.

Published In

Bioactive Materials

DOI

ISSN

2452-199X

Publication Date

October 1, 2024

Volume

40

Start / End Page

417 / 429

Related Subject Headings

  • 4016 Materials engineering
  • 4003 Biomedical engineering
  • 3404 Medicinal and biomolecular chemistry