A mouse model of intestinal stem cell function and regeneration

Author:

Slorach E.M.1,Campbell F.C.1,Dorin J.R.1

Affiliation:

1. Molecular Genetics Section, MRC Human Genetics Unit, Western General Hospital, Crewe Road, Edinburgh EH4 2XU, UK. Euan.Slorach@hgu.mrc.ac.uk

Abstract

We present here an in vivo mouse model for intestinal stem cell function and differentiation that uses postnatal intestinal epithelial cell aggregates to generate a differentiated murine small intestinal mucosa with full crypt-villus architecture. The process of neomucosal formation is highly similar to that of intestinal regeneration. Both in vivo grafting and primary culture of these cells reveal two different epithelial cell populations, which display properties consistent with intestinal epithelial transit amplifying and stem cell populations. Using this model system with a mixture of wild-type and transgene marked cells, we have shown that neomucosae originally develop from single aggregates, but that over time the mucosae fuse to form chimaeric mucosae. Despite fusion, the chimaeric mucosae maintain crypt clonality and villus polyclonality, demonstrating that clonal segregation persists during intestinal epithelial regeneration.

Publisher

The Company of Biologists

Subject

Cell Biology

Reference46 articles.

1. Regulation of intestinal epithelial-cell growth by transforming growth-factor type-beta.;Barnard;Proc. Natl. Acad. Sci. USA,1989

2. Functional isolation and characterization of human hematopoietic stem-cells.;Berardi;Science,1995

3. Differential localization by in situhybridization of distinct keratin mRNA species during intestinal epithelial cell development and differentiation.;Calnek;Differentiation,1993

4. Angiogenesis induced in vivo by hepatocyte growth factor is mediated by platelet-activating factor synthesis from macrophages.;Camussi;J. Immunol,1997

5. The turnover and shedding of epithelial cells. Part II. The Shedding in the small intestine.;Creamer;Gut,1961

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