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Human corneal limbal organoids maintaining limbal stem cell niche function. | LitMetric

Human corneal limbal organoids maintaining limbal stem cell niche function.

Stem Cell Res

Department of Ophthalmology, Keio University School of Medicine, 35 Shinanomachi, Shinjuku-ku, Tokyo 160-8582, Japan. Electronic address:

Published: December 2020

AI Article Synopsis

  • Corneal epithelial stem cells are found in the limbal region and are crucial for corneal health.
  • Researchers developed limbal organoids from donor corneas that showed promising growth and characteristics for use in transplants.
  • These organoids successfully integrated into a rabbit model of limbal deficiency, indicating their potential as a source of cells for clinical applications.

Article Abstract

Corneal epithelial stem cells reside in the limbal area between the cornea and conjunctiva. We examined the potential use of limbal organoids as a source of transplantable limbal stem cells. After treating tissue with collagenase, limbal cells were seeded onto Matrigel and cultivated using limbal phenotype maintenance medium. After 1-month, approximately 500 organoids were formed from one donor cornea. Organoids derived from vertical sites (superior and inferior limbus) showed large colony forming efficiency, a higher ratio of slow cycling cells and N-cadherin-expressing epithelial cells compared to horizontal sites. The progenitor markers Keratin (K) 15 and p63 were expressed in epithelial sheets engineered form a single organoid. Organoids transplanted in the limbus of a rabbit limbal deficiency model confirmed the presence of organoid-derived cells extending on to host corneas by immunohistochemistry. Our data show that limbal organoids with a limbal phenotype can be maintained for up to 1 month in vitro which can each give rise to a fully stratified corneal epithelium complete with basal progenitor cells. Limbal organoids were successfully engrafted in vivo to provide epithelial cells in a rabbit limbal deficiency model, suggesting that organoids may be an efficient cell source for clinical use.

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Source
http://dx.doi.org/10.1016/j.scr.2020.102012DOI Listing

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