MIF is necessary for late-stage melanoma patient MDSC immune suppression and differentiation

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Abstract

Highly aggressive cancers "entrain" innate and adaptive immune cells to suppress antitumor lymphocyte responses. Circulating myeloid-derived suppressor cells (MDSC) constitute the bulk ofmonocytic immunosuppressive activity in latestage melanoma patients. Previous studies revealed that monocyte-derived macrophage migration inhibitory factor (MIF) is necessary for the immunosuppressive function of tumor-associated macrophages and MDSCs in mouse models of melanoma. In the current study, we sought to determine whether MIF contributes to human melanoma MDSC induction and T-cell immunosuppression using melanoma patientderived MDSCs and an ex vivo coculture model of human melanoma-induced MDSC. We now report that circulating MDSCs isolated from late-stage melanoma patients are reliant upon MIF for suppression of antigen-independent T-cell activation and that MIF is necessary for maximal reactive oxygen species generation in these cells. Moreover, inhibition of MIF results in a functional reversion from immunosuppressive MDSC to an immunostimulatory dendritic cell (DC)-like phenotype that is at least partly due to reductions in MDSC prostaglandin E2 (PGE2). These findings indicate that monocytederived MIF is centrally involved in human monocytic MDSC induction/immunosuppressive function and that therapeutic targeting of MIF may provide a novel means of inducing antitumor DC responses in late-stage melanoma patients.

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Yaddanapudi, K., Rendon, B. E., Lamont, G., Kim, E. J., Rayyan, N. A., Richie, J., … Mitchell, R. A. (2016). MIF is necessary for late-stage melanoma patient MDSC immune suppression and differentiation. Cancer Immunology Research, 4(2), 101–112. https://doi.org/10.1158/2326-6066.CIR-15-0070-T

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