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Conjunctival reconstruction via enrichment of human conjunctival epithelial stem cells by p75 through the NGF-p75-SALL2 signaling axis. | LitMetric

AI Article Synopsis

  • Severe conjunctival diseases lead to scarring that restricts eye movement and vision, making reconstruction difficult due to limited methods for enriching stem cells.
  • The study found that p75 positive conjunctival epithelial cells (CjECs) are primarily found in the basal layer of the conjunctiva, expressing high levels of stem cell markers and showing strong growth potential for conjunctival reconstruction.
  • Adding nerve growth factor (NGF) enhances the differentiation of CjECs through a specific signaling pathway, while its precursor, proNGF, inhibits this process, highlighting the potential of p75++ CjECs in eye recovery therapies.

Article Abstract

Severe conjunctival diseases can cause significant conjunctival scarring, which seriously limits eye movement and affects patients' vision. Conjunctival reconstruction remains challenging due to the lack of efficient methods for stem cells enrichment. This study indicated that p75 positive conjunctival epithelial cells (CjECs) were mainly located in the basal layer of human conjunctival epithelium and showed an immature differentiation state in vivo. The p75 strongly positive (p75++) CjECs enriched by immuno-magnetic beads exhibited high expression of stem cell markers and low expression of differentiated keratins. During continuous cell passage cultivation, p75++ CjECs showed the strongest proliferation potential and were able to reconstruct the conjunctiva in vivo with the most complete structure and function. Exogenous addition of NGF promoted the differentiation of CjECs by increasing nuclear localization of SALL2 in p75++ CjECs while proNGF played an opposite role. Altogether, p75++ CjECs present stem cell characteristics and exhibit the strongest proliferation potential so can be used as seed cells for conjunctival reconstruction, and NGF-p75-SALL2 signaling pathway was involved in regulating the differentiation of CjECs.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC7581450PMC
http://dx.doi.org/10.1002/sctm.19-0449DOI Listing

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