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Long-term survival in non-human primates of stem cell-derived, MHC-unmatched corneal epithelial cell sheets.


ABSTRACT: When corneal epithelial stem cells residing in the corneal limbus become dysfunctional, called a limbal stem cell deficiency (LSCD), corneal transparency is decreased, causing severe vision loss. Transplantation of corneal epithelial cell sheets (CEPS) derived from stem cells, including induced pluripotent stem cells, is a promising treatment for LSCD. However, the potential effect of human leukocyte antigen (HLA) concordance on CEPS transplantation has not been addressed. Here, we show that there is no difference in the immune response to CEPS between HLA-matched and -unmatched peripheral blood mononuclear cells in mixed lymphocyte reactions. CEPS transplantation in cynomolgus monkeys revealed that the immune response to major histocompatibility-unmatched CEPS was not strong and could be controlled by local steroid administration. Furthermore, programmed death ligand 1 was identified as an immunosuppressive molecule in CEPS under inflammatory conditions in vitro. Our results indicate that corneal epithelium has low immunogenicity and allogeneic CEPS transplantation requires mild immunosuppression.

SUBMITTER: Yoshinaga Y 

PROVIDER: S-EPMC9287743 | biostudies-literature | 2022 Jul

REPOSITORIES: biostudies-literature

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Long-term survival in non-human primates of stem cell-derived, MHC-unmatched corneal epithelial cell sheets.

Yoshinaga Yu Y   Soma Takeshi T   Azuma Shohei S   Maruyama Kazuichi K   Hashikawa Yoshiko Y   Katayama Tomohiko T   Sasamoto Yuzuru Y   Takayanagi Hiroshi H   Hosen Naoki N   Shiina Takashi T   Ogasawara Kazumasa K   Hayashi Ryuhei R   Nishida Kohji K  

Stem cell reports 20220623 7


When corneal epithelial stem cells residing in the corneal limbus become dysfunctional, called a limbal stem cell deficiency (LSCD), corneal transparency is decreased, causing severe vision loss. Transplantation of corneal epithelial cell sheets (CEPS) derived from stem cells, including induced pluripotent stem cells, is a promising treatment for LSCD. However, the potential effect of human leukocyte antigen (HLA) concordance on CEPS transplantation has not been addressed. Here, we show that the  ...[more]

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