4.2 Article

Efficient generation of pancreatic β-like cells from the mouse gallbladder

期刊

STEM CELL RESEARCH
卷 17, 期 3, 页码 587-596

出版社

ELSEVIER
DOI: 10.1016/j.scr.2016.10.009

关键词

Gallbladder; Type 1 diabetes; Pancreatic beta cells; Insulin; Reprogramming

资金

  1. Helmsley Charitable Trust [2012PG-T1D010]
  2. NIH Beta Cell Biology Consortium NIDDK grant [U01 DK089569]

向作者/读者索取更多资源

Direct reprogramming is a promising approach for the replacement of beta cells in diabetes. Reprogramming of cells originating from the endodermal lineage, such as acinar cells in the pancreas, liver cells and gallbladder cells has been of particular interest because of their developmental proximity to beta cells. Our previous work showed that mouse gallbladder epithelium can be partially reprogrammed in vitro to generate islet-like cells (rGBC1). Here, the reprogramming protocol was substantially improved, yielding cells (rGBC2) closer to functional beta cells than the 1st generation method with higher conversion efficiency and insulin expression. In addition to insulin synthesis and processing, rGBC2 presented many hallmark features of beta cells, including insulin secretion in response to high glucose stimulation. Gene expression analysis indicated that rGBC2 clustered closer with beta cells and had a metabolic gene expression profile resembling neonatal beta cells. When transplanted into immune-deficient animals, rGBC2 were stable for at least 5 months and further matured in vivo. Taken together, this approach provides further understanding of endodermal lineage conversion and potential for development of cell replacement therapy for type 1 diabetes patients. (C) 2016 The Authors. Published by Elsevier B.V.

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