Review Article
Cellular pathways to β-cell replacement
Article first published online: 18 OCT 2006
DOI: 10.1002/dmrr.692
Copyright © 2005 John Wiley & Sons, Ltd.
Additional Information
How to Cite
Fellous, T. G., Guppy, N. J., Brittan, M. and Alison, M. R. (2007), Cellular pathways to β-cell replacement. Diabetes/Metabolism Research and Reviews, 23: 87–99. doi: 10.1002/dmrr.692
Publication History
- Issue published online: 30 JAN 2007
- Article first published online: 18 OCT 2006
- Manuscript Accepted: 7 SEP 2006
- Manuscript Revised: 21 AUG 2006
- Manuscript Received: 23 JUN 2006
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Keywords:
- diabetes mellitus;
- β-cell;
- pancreatic regeneration;
- adult stem cells;
- bone marrow;
- transdifferentiation;
- Pdx1
Abstract
In the twenty-first century, diabetic patients are likely to be one of the major beneficiaries from the advancement of regenerative medicine through cellular therapies. Though the existence of a specific self-renewing stem cell within the pancreas is still far from clear, a surprising variety of cells within the pancreas can differentiate towards a β-cell phenotype: ductular cells, periductular mesenchymal cells and β-cells themselves can all give rise to new β-cells. Extra-pancreatic adult somatic stem cells, in particular, those originating from bone marrow may also be capable of differentiating to β-cells, though equally well the beneficial effects of bone marrow cells may reside in their contribution to the damaged islet vasculature. Forced expression of the β-cell-specific transcription factor Pdx1 in hepatocytes also holds promise as a therapeutic strategy to increase insulin levels in diabetic individuals. Embryonic stem (ES) cells are clearly another possible source for generating β-cells, but ES cells are beyond the scope of this review, which focuses on adult stem and progenitor cells capable of producing β-cells. Despite considerable endeavour, we still have much to learn in the field of pancreatic regeneration prior to any clinically applicable therapy based upon adult stem cells. Copyright © 2006 John Wiley & Sons, Ltd.

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