Interferon-γ and Tumor Necrosis Factor-α Polarize Bone Marrow Stromal Cells Uniformly to a Th1 Phenotype

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作者
Ping Jin
Yuanlong Zhao
Hui Liu
Jinguo Chen
Jiaqiang Ren
Jianjian Jin
Davide Bedognetti
Shutong Liu
Ena Wang
Francesco Marincola
David Stroncek
机构
[1] Cell Processing Section,Department of Transfusion Medicine
[2] Clinical Center,undefined
[3] National Institutes of Health,undefined
[4] Center for Human Immunology (CHI),undefined
[5] National Institutes of Health,undefined
[6] Research Branch,undefined
[7] Sidra Medical and Research Center,undefined
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Scientific Reports | / 6卷
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摘要
Activated T cells polarize mesenchymal stromal cells (MSCs) to a proinflammatory Th1 phenotype which likely has an important role in amplifying the immune response in the tumor microenvironment. We investigated the role of interferon gamma (IFN-γ) and tumor necrosis factor alpha (TNF-α), two factors produced by activated T cells, in MSC polarization. Gene expression and culture supernatant analysis showed that TNF-α and IFN-γ stimulated MSCs expressed distinct sets of proinflammatory factors. The combination of IFN-γ and TNF-α was synergistic and induced a transcriptome most similar to that found in MSCs stimulated with activated T cells and similar to that found in the inflamed tumor microenvironment; a Th1 phenotype with the expression of the immunosuppressive factors IL-4, IL-10, CD274/PD-L1 and indoleamine 2,3 dioxygenase (IDO). Single cell qRT-PCR analysis showed that the combination of IFN-γ and TNF-α polarized uniformly to this phenotype. The combination of IFN-γ and TNF-α results in the synergist uniform polarization of MSCs toward a primarily Th1 phenotype. The stimulation of MSCs by IFN-γ and TNF-α released from activated tumor infiltrating T cells is likely responsible for the production of many factors that characterize the tumor microenvironment.
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  • [1] Jiang XX(2005)Human mesenchymal stem cells inhibit differentiation and function of monocyte-derived dendritic cells Blood 105 4120-4126
  • [2] Pittenger MF(1999)Multilineage potential of adult human mesenchymal stem cells Science 284 143-147
  • [3] Prockop DJ(1997)Marrow stromal cells as stem cells for nonhematopoietic tissues Science 276 71-74
  • [4] English K(2013)Mechanisms of mesenchymal stromal cell immunomodulation Immunol Cell Biol 91 19-26
  • [5] Jin P(2014)Direct T cell-tumour interaction triggers TH1 phenotype activation through the modification of the mesenchymal stromal cells transcriptional programme Br J Cancer 110 2955-2964
  • [6] Harlin H(2009)Chemokine expression in melanoma metastases associated with CD8+ T-cell recruitment Cancer Res 69 3077-3085
  • [7] Spranger S(2013)Up-regulation of PD-L1, IDO and T(regs) in the melanoma tumor microenvironment is driven by CD8(+) T cells Sci Transl Med 5 200ra116-2371
  • [8] Wang E(2013)Prediction of response to anticancer immunotherapy using gene signatures J Clin Oncol 31 2369-7450
  • [9] Bedognetti D(2011)Molecular insights on the peripheral and intratumoral effects of systemic high-dose rIL-2 (aldesleukin) administration for the treatment of metastatic melanoma Clin Cancer Res 17 7440-2423
  • [10] Marincola FM(2013)CXCR3/CCR5 pathways in metastatic melanoma patients treated with adoptive therapy and interleukin-2 Br J Cancer 109 2412-2395