Display Settings:

Format

Send to:

Choose Destination
    Diabetes. 2010 Nov;59(11):2862-71. Epub 2010 Aug 6.

    Neutralization of interleukin-16 protects nonobese diabetic mice from autoimmune type 1 diabetes by a CCL4-dependent mechanism.

    Source

    Department of Microbiology and Immunology, University of Western Ontario, London, Ontario, Canada.

    Abstract

    OBJECTIVE:

    The progressive infiltration of pancreatic islets by lymphocytes is mandatory for development of autoimmune type 1 diabetes. This inflammatory process is mediated by several mediators that are potential therapeutic targets to arrest development of type 1 diabetes. In this study, we investigate the role of one of these mediators, interleukin-16 (IL-16), in the pathogenesis of type 1 diabetes in NOD mice.

    RESEARCH DESIGN AND METHODS:

    At different stages of progression of type 1 diabetes, we characterized IL-16 in islets using GEArray technology and immunoblot analysis and also quantitated IL-16 activity in cell migration assays. IL-16 expression was localized in islets by immunofluorescence and confocal imaging. In vivo neutralization studies were performed to assess the role of IL-16 in the pathogenesis of type 1 diabetes.

    RESULTS:

    The increased expression of IL-16 in islets correlated with the development of invasive insulitis. IL-16 immunoreactivity was found in islet infiltrating T-cells, B-cells, NK-cells, and dendritic cells, and within an insulitic lesion, IL-16 was derived from infiltrating cells. CD4(+) and CD8(+) T-cells as well as B220(+) B-cells were identified as sources of secreted IL-16. Blockade of IL-16 in vivo protected against type 1 diabetes by interfering with recruitment of CD4(+) T-cells to the pancreas, and this protection required the activity of the chemokine CCL4.

    CONCLUSIONS:

    IL-16 production by leukocytes in islets augments the severity of insulitis during the onset of type 1 diabetes. IL-16 and CCL4 appear to function as counterregulatory proteins during disease development. Neutralization of IL-16 may represent a novel therapy for the prevention of type 1 diabetes.

    PMID:
    20693344
    [PubMed - indexed for MEDLINE]
    PMCID:
    PMC2963545
    Free PMC Article

    Images from this publication.See all images (8) Free text

    FIG. 1.
    FIG. 3.
    FIG. 5.
    FIG. 7.
    FIG. 2.
    FIG. 4.
    FIG. 6.
    FIG. 8.

      Supplemental Content

      Icon for HighWire Press Icon for PubMed Central

      Save items

      loading

      Recent activity

      Your browsing activity is empty.

      Activity recording is turned off.

      Turn recording back on

      See more...
      Write to the Help Desk