Skip to main navigation Skip to search Skip to main content

Functional engraftment of colon epithelium expanded in vitro from a single adult Lgr5(+) stem cell.

Translated title of the contribution: Functional engraftment of colon epithelium expanded in vitro from a single adult Lgr5(+) stem cell.
  • S. Yui
  • , T. Nakamura
  • , T. Sato
  • , Y. Nemoto
  • , T. Mizutani
  • , X. Zheng
  • , S. Ichinose
  • , T. Nagaishi
  • , R. Okamoto
  • , K. Tsuchiya
  • , H.C. Clevers
  • , M. Watanabe

Research output: Contribution to journalArticleAcademicpeer-review

Abstract

Adult stem-cell therapy holds promise for the treatment of gastrointestinal diseases. Here we describe methods for long-term expansion of colonic stem cells positive for leucine-rich repeat containing G protein-coupled receptor 5 (Lgr5(+) cells) in culture. To test the transplantability of these cells, we reintroduced cultured GFP(+) colon organoids into superficially damaged mouse colon. The transplanted donor cells readily integrated into the mouse colon, covering the area that lacked epithelium as a result of the introduced damage in recipient mice. At 4 weeks after transplantation, the donor-derived cells constituted a single-layered epithelium, which formed self-renewing crypts that were functionally and histologically normal. Moreover, we observed long-term (>6 months) engraftment with transplantation of organoids derived from a single Lgr5(+) colon stem cell after extensive in vitro expansion. These data show the feasibility of colon stem-cell therapy based on the in vitro expansion of a single adult colonic stem cell.
Translated title of the contributionFunctional engraftment of colon epithelium expanded in vitro from a single adult Lgr5(+) stem cell.
Original languageUndefined/Unknown
Pages (from-to)618-23
Number of pages6
JournalNature Medicine
Volume18
Issue number4
Publication statusPublished - 2012

Fingerprint

Dive into the research topics of 'Functional engraftment of colon epithelium expanded in vitro from a single adult Lgr5(+) stem cell.'. Together they form a unique fingerprint.

Cite this