PLoS ONE · 2013 · 77 citations · 15 references
ImmunologyImmune RegulationImmunoeditingImmunologic MechanismCell ProliferationImmunotherapyCancer BiologyTumor BiologyTumor ImmunityCancer Cell BiologyImmune MediatorImmature DcsDcs MaturationDc MaturationAutoimmunityT Cell ImmunityCell BiologyDendritic CellsCancer ImmunosurveillanceDendritic Cell BiologyCellular Immune ResponseMedicine
Dendritic cells (DCs) play a key role in the initiation stage of an antigen-specific immune response. A variety of tumor-derived factors (TDFs) can suppress DC maturation and function, resulting in defects in the tumor-specific immune response. To identify unknown TDFs that may suppress DCs maturation and function, we established a high-throughput screening technology based on a human liver tumor T7 phage cDNA library and screened all of the proteins derived from hepatoma cells that potentially interact with immature DCs. Growth/differentiation factor-15 (GDF-15) was detected and chosen for further study. By incubation of DCs cultures with GDF-15, we demonstrate that GDF-15 can inhibit surface protrusion formation during DC maturation; suppress the membrane expression of CD83, CD86 and HLA-DR on DCs; enhance phagocytosis by DCs; reduce IL-12 and elevate TGF-β1 secretion by DCs; inhibit T cell stimulation and cytotoxic T lymphocyte (CTL) activation by DCs. By building tumor-bearing mouse models, we demonstrate that GDF-15 can inhibit the ability of DCs to stimulate a tumor-specific immune response in vivo. These results indicate that GDF-15 may be one of the critical molecules that inhibit DC maturation and function and are involved in tumor immune escape. Thus, GDF-15 may be a novel target in tumor immunotherapy.
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MIC-1 serum level and genotype: associations with progress and prognosis of colorectal carcinoma.
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Serum concentrations of macrophage inhibitory cytokine 1 (MIC 1) as a predictor of miscarriage
Stephen Tong, Budi Marjono, David A. Brown et al. · The Lancet · 2004 · 108 citations
Inflammation, Cytokine, Hematology +11