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    • Melanoma
    • myeloid-derived suppressor cellRemove myeloid-derived suppressor cell filter
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    Article Type

    • Research Article4

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    • Ariizumi, Kiyoshi1
    • Bracci, Laura1
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    • MDSC4
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    • Original Article Melanocytes/Melanoma
      Open Archive

      Phenformin Inhibits Myeloid-Derived Suppressor Cells and Enhances the Anti-Tumor Activity of PD-1 Blockade in Melanoma

      Journal of Investigative Dermatology
      Vol. 137Issue 8p1740–1748Published online: April 19, 2017
      • Sun Hye Kim
      • Man Li
      • Sebastian Trousil
      • Yaqing Zhang
      • Marina Pasca di Magliano
      • Kenneth D. Swanson
      • and others
      Cited in Scopus: 94
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        Biguanides, such as the diabetes therapeutics metformin and phenformin, have shown antitumor activity both in vitro and in vivo. However, their potential effects on the tumor microenvironment are largely unknown. Here we report that phenformin selectively inhibits granulocytic myeloid-derived suppressor cells in spleens of tumor-bearing mice and ex vivo. Phenformin induces production of reactive oxygen species in granulocytic myeloid-derived suppressor cells, whereas the antioxidant N-acetylcysteine attenuates the inhibitory effects of phenformin.
        Phenformin Inhibits Myeloid-Derived Suppressor Cells and Enhances the Anti-Tumor Activity of PD-1 Blockade in Melanoma
      • Original Article Melanocytes/Melanoma
        Open Archive

        Combining Type I Interferons and 5-Aza-2′-Deoxycitidine to Improve Anti-Tumor Response against Melanoma

        Journal of Investigative Dermatology
        Vol. 137Issue 1p159–169Published online: September 10, 2016
        • Valeria Lucarini
        • Carla Buccione
        • Giovanna Ziccheddu
        • Francesca Peschiaroli
        • Paola Sestili
        • Rossella Puglisi
        • and others
        Cited in Scopus: 49
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        • Video
        Resistance to IFN-I–induced antineoplastic effects has been reported in many tumors and arises, in part, from epigenetic silencing of IFN-stimulated genes by DNA methylation. We hypothesized that restoration of IFN-stimulated genes by co-administration of the demethylating drug 5-aza-2′-deoxycitidine (decitabine [DAC]) may enhance the susceptibility to IFN-I–mediated antitumoral effects in melanoma. We show that combined administration of IFN-I and DAC significantly inhibits the growth of murine and human melanoma cells, both in vitro and in vivo.
        Combining Type I Interferons and 5-Aza-2′-Deoxycitidine to Improve Anti-Tumor Response against Melanoma
      • Original Article Immunology/Infection
        Open Archive

        Myeloid-Derived Suppressor Cells in Psoriasis Are an Expanded Population Exhibiting Diverse T-Cell–Suppressor Mechanisms

        Journal of Investigative Dermatology
        Vol. 136Issue 9p1801–1810Published online: May 25, 2016
        • Lauren Y. Cao
        • Jin-Sung Chung
        • Takahiro Teshima
        • Lawrence Feigenbaum
        • Ponciano D. Cruz Jr.
        • Heidi T. Jacobe
        • and others
        Cited in Scopus: 32
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          Psoriasis vulgaris is an inflammatory skin disease caused by hyperactivated T cells regulated by positive and negative mechanisms; although the former have been much studied, the latter have not. We studied the regulatory mechanism mediated by myeloid-derived suppressor cells (MDSCs) and showed that MDSCs expanded in melanoma patients express dendritic cell-associated heparan sulfate proteoglycan-dependent integrin ligand, a critical mediator of T-cell suppressor function. We examined expansion of DC-HIL+ MDSCs in psoriasis and characterized their functional properties.
          Myeloid-Derived Suppressor Cells in Psoriasis Are an Expanded Population Exhibiting Diverse T-Cell–Suppressor Mechanisms
        • Original Article Immunology/Infection
          Open Archive

          Increased, but Functionally Impaired, CD14+ HLA-DR–/low Myeloid-Derived Suppressor Cells in Psoriasis: A Mechanism of Dysregulated T Cells

          Journal of Investigative Dermatology
          Vol. 136Issue 4p798–808Published online: January 22, 2016
          • David C. Soler
          • Andrew B. Young
          • Lori Fiessinger
          • Fabrizio Galimberti
          • Sara Debanne
          • Sarah Groft
          • and others
          Cited in Scopus: 18
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            The clinical extent of psoriasis pathology is regulated in part by defects in immune networks, including a defect in the suppressive actions of regulatory T cells. Recently, CD14+ HLA-DR–/low monocytic myeloid-derived suppressor cells (Mo-MDSCs) have been shown to suppress T-cell activation as one of their suppressive mechanisms. However, little is known about the role of Mo-MDSCs and their functional relationship to T-cell suppression in relation to human chronic immune-mediated inflammatory diseases, including psoriasis.
            Increased, but Functionally Impaired, CD14+ HLA-DR–/low Myeloid-Derived Suppressor Cells in Psoriasis: A Mechanism of Dysregulated T Cells
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