BioGPS
  • Home
  • Help
  • Plugins
  • Datasets
  • Sign Up
  • Login
Examples: Gene Symbol(s), Gene Ontology, Splicing plugins, Melanoma datasets
advanced
Home › Dataset Library › Transcription profiling by array of human pancreatic islet cells after in vitro expansion

Dataset: Transcription profiling by array of human pancreatic islet cells after in vitro expansion

Pancreatic islet transplantation as a cure for type 1 diabetes (T1D) cannot be scaled up due to a scarcity of human pancreas donors. In...

Registered by ArrayExpress Uploader
View Dataset

Pancreatic islet transplantation as a cure for type 1 diabetes (T1D) cannot be scaled up due to a scarcity of human pancreas donors. In vitro expansion of beta cells from mature human pancreatic islets provides an alternative source of insulin-producing cells. The exact nature of the expanded cells produced by diverse expansion protocols, and their potential for differentiation into functional beta cells, remain elusive. We performed a large-scale meta-analysis of gene expression in human pancreatic islet cells, which were processed using three different previously described protocols for expansion and attempted re-differentiation. All three expansion protocols induced dramatic changes in the expression profiles of pancreatic islets; many of these changes are shared among the three protocols. Attempts at re-differentiation of expanded cells induce a limited number of gene expression changes. Nevertheless, these fail to restore a pancreatic islet-like gene expression pattern. Comparison with a collection of public microarray datasets confirmed that expanded cells are highly comparable to mesenchymal stem cells. Genes induced in expanded cells are also enriched for targets of transcription factors important for pluripotency induction. The present data increases our understanding of the active pathways in expanded and re-differentiated islets. Knowledge of the mesenchymal stem cell potential may help development of drug therapeutics to restore beta cell mass in T1D patients. Experiment Overall Design: In this study, we have tested three different protocols to expand human pancreatic islets in monolayer and after attempted maneuvers to re-differentiate the expanded cells back to islets. We have characterized the resulting cells in detail by performing microarray analyses with fresh pancreatic islets, expanded islet cells and re-differentiated cells. Genes modified by either of three protocols have 70 to 80% overlap with the genes changed by the other two protocols. Although there are promising changes in the right direction, none of the three protocols could achieve a return to a functional islet state. The expanded cells highly resemble Mesenchymal Stem Cells (MSC), and similar gene regulatory networks seem to be active in both cell types. On the other hand, the expanded islet cells are different from MSC in that they seem to retain activity of some islet gene modules. The current results highlight the importance of designing new strategies that take into account the MSC potential of expanded cells.

Species:
human

Samples:
33

Source:
E-GEOD-15543

PubMed:
19622797

Updated:
Dec.12, 2014

Registered:
Sep.12, 2014


Factors: (via ArrayExpress)
Sample growth condition protocol
GSE15543GSM388740 redifferentiated cell culture expansion protocol: PPRF
GSE15543GSM388740 redifferentiated cell culture expansion protocol: PPRF
GSE15543GSM388740 redifferentiated cell culture expansion protocol: PPRF
GSE15543GSM388740 redifferentiated cell culture expansion protocol: PPRF
GSE15543GSM388744 expanded cell culture expansion protocol: PPRF
GSE15543GSM388740 redifferentiated cell culture expansion protocol: PPRF
GSE15543GSM388740 redifferentiated cell culture expansion protocol: PPRF
GSE15543GSM388740 redifferentiated cell culture expansion protocol: PPRF
GSE15543GSM388740 redifferentiated cell culture expansion protocol: PPRF
GSE15543GSM388749 freshly isolated cells
GSE15543GSM388749 freshly isolated cells
GSE15543GSM388744 expanded cell culture expansion protocol: PPRF
GSE15543GSM388752 expanded cell culture expansion protocol: Whittier
GSE15543GSM388749 freshly isolated cells
GSE15543GSM388749 freshly isolated cells
GSE15543GSM388755 redifferentiated cell culture expansion protocol: NIH
GSE15543GSM388756 redifferentiated cell culture expansion protocol: Whittier
GSE15543GSM388757 expanded cell culture expansion protocol: NIH
GSE15543GSM388755 redifferentiated cell culture expansion protocol: NIH
GSE15543GSM388749 freshly isolated cells
GSE15543GSM388749 freshly isolated cells
GSE15543GSM388752 expanded cell culture expansion protocol: Whittier
GSE15543GSM388756 redifferentiated cell culture expansion protocol: Whittier
GSE15543GSM388757 expanded cell culture expansion protocol: NIH
GSE15543GSM388756 redifferentiated cell culture expansion protocol: Whittier
GSE15543GSM388752 expanded cell culture expansion protocol: Whittier
GSE15543GSM388749 freshly isolated cells
GSE15543GSM388749 freshly isolated cells
GSE15543GSM388755 redifferentiated cell culture expansion protocol: NIH
GSE15543GSM388757 expanded cell culture expansion protocol: NIH
GSE15543GSM388757 expanded cell culture expansion protocol: NIH
GSE15543GSM388752 expanded cell culture expansion protocol: Whittier
GSE15543GSM388755 redifferentiated cell culture expansion protocol: NIH

Tags

  • beta cell
  • cell
  • hand
  • insulin
  • pancreas
  • pancreatic islet
  • right
  • stem cell

Other Formats

JSON    XML
  • About
  • Blog
  • Help
  • FAQ
  • Downloads
  • API
  • iPhone App
  • Email updates
© 2025 The Scripps Research Institute. All rights reserved. (ver 94eefe6 )
  • Terms of Use