Display Settings:

Format

Send to:

Choose Destination
We are sorry, but NCBI web applications do not support your browser and may not function properly. More information
    Diabetes. 2011 Jan;60(1):239-47. doi: 10.2337/db10-0573. Epub 2010 Oct 22.

    Production of functional glucagon-secreting α-cells from human embryonic stem cells.

    Source

    BetaLogics Venture, Centocor Research and Development, Skillman, New Jersey, USA.

    Abstract

    OBJECTIVE:

    Differentiation of human embryonic stem (hES) cells to fully developed cell types holds great therapeutic promise. Despite significant progress, the conversion of hES cells to stable, fully differentiated endocrine cells that exhibit physiologically regulated hormone secretion has not yet been achieved. Here we describe an efficient differentiation protocol for the in vitro conversion of hES cells to functional glucagon-producing α- cells.

    RESEARCH DESIGN AND METHODS:

    Using a combination of small molecule screening and empirical testing, we developed a six-stage differentiation protocol for creating functional α-cells. An extensive in vitro and in vivo characterization of the differentiated cells was performed.

    RESULTS:

    A high rate of synaptophysin expression (>75%) and robust expression of glucagon and the α-cell transcription factor ARX was achieved. After a transient polyhormonal state in which cells coexpress glucagon and insulin, maturation in vitro or in vivo resulted in depletion of insulin and other β-cell markers with concomitant enrichment of α-cell markers. After transplantation, these cells secreted fully processed, biologically active glucagon in response to physiologic stimuli including prolonged fasting and amino acid challenge. Moreover, glucagon release from transplanted cells was sufficient to reduce demand for pancreatic glucagon, resulting in a significant decrease in pancreatic α-cell mass.

    CONCLUSIONS:

    These results indicate that fully differentiated pancreatic endocrine cells can be created via stepwise differentiation of hES cells. These cells may serve as a useful screening tool for the identification of compounds that modulate glucagon secretion as well as those that promote the transdifferentiation of α-cells to β-cells.

    PMID:
    20971966
    [PubMed - indexed for MEDLINE]
    PMCID:
    PMC3012176
    Free PMC Article

    Images from this publication.See all images (6)Free text

    FIG. 3.
    FIG. 5.
    FIG. 1.
    FIG. 2.
    FIG. 4.
    FIG. 6.

      Supplemental Content

      Icon for HighWire Icon for PubMed Central

      Save items

      Recent activity

      Your browsing activity is empty.

      Activity recording is turned off.

      Turn recording back on

      See more...
      Write to the Help Desk