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PMID: 28220123 Published · epublish English Journal Article Review

Human Tumor-Infiltrating Myeloid Cells: Phenotypic and Functional Diversity.

Frontiers in immunology ·Vol. 8 ·2017-00-00 ·Pages 86

Elliott LA, Doherty GA, Sheahan K, Ryan EJ

Abstract

Our current understanding of human tumor-resident myeloid cells is, for the most part, based on a large body of work in murine models or studies enumerating myeloid cells in patient tumor samples using immunohistochemistry (IHC). This has led to the establishment of the theory that, by and large, tumor-resident myeloid cells are either "protumor" M2 macrophages or myeloid-derived suppressor cells (MDSC). This concept has accelerated our understanding of myeloid cells in tumor progression and enabled the elucidation of many key regulatory mechanisms involved in cell recruitment, polarization, and activation. On the other hand, this paradigm does not embrace the complexity of the tumor-resident myeloid cell phenotype (IHC can only measure 1 or 2 markers per sample) and their possible divergent function in the hostile tumor microenvironment. Here, we examine the criteria that define human tumor-infiltrating myeloid cell subsets and provide a comprehensive and critical review of human myeloid cell nomenclature in cancer. We also highlight new evidence characterizing their contribution to cancer pathogenesis based on evidence derived from clinical studies drawing comparisons with murine studies where necessary. We then review the mechanisms in which myeloid cells are regulated by tumors in humans and how these are being targeted therapeutically.

Keywords
immune cell phenotyping macrophages monocytes myeloid derived suppressor cells neutrophils oncoimmunology tumor microenvironment
Authors & Affiliations
4 authors, click to expand affiliations / ORCID
Elliott Louise A
Centre for Colorectal Disease, St. Vincent's University Hospital, School of Medicine, University College Dublin , Dublin , Ireland.
Doherty Glen A
Centre for Colorectal Disease, St. Vincent's University Hospital, School of Medicine, University College Dublin , Dublin , Ireland.
Sheahan Kieran
Centre for Colorectal Disease, St. Vincent's University Hospital, School of Medicine, University College Dublin , Dublin , Ireland.
Ryan Elizabeth J
Centre for Colorectal Disease, St. Vincent's University Hospital, School of Medicine, University College Dublin , Dublin , Ireland.
References (129)
129 references, click to expand
  1. Tumor stroma-derived factors skew monocyte to dendritic cell differentiation toward a suppressive CD14+ PD-L1+ phenotype in prostate cancer.
    Oncoimmunology. 2014 Dec 13;3(9):e955331 PMID: 25941611
  2. The prognostic landscape of genes and infiltrating immune cells across human cancers.
    Nat Med. 2015 Aug;21(8):938-45 PMID: 26193342
  3. Increased circulating myeloid-derived suppressor cells correlate with clinical cancer stage, metastatic tumor burden, and doxorubicin-cyclophosphamide chemotherapy.
    Cancer Immunol Immunother. 2009 Jan;58(1):49-59 PMID: 18446337
  4. Increased circulating Lin(-/low) CD33(+) HLA-DR(-) myeloid-derived suppressor cells in hepatocellular carcinoma patients.
    Hepatol Res. 2014 Jun;44(6):639-50 PMID: 23701406
  5. Circulating immunosuppressive cells of prostate cancer patients before and after radical prostatectomy: profile comparison.
    Int J Urol. 2013 Oct;20(10):971-8 PMID: 23421558
  6. Lymphocyte subsets, lymphocyte reactivity to mitogens, NK cell activity and neutrophil and monocyte phagocytic functions in patients with bladder carcinoma.
    Anticancer Res. 2003 Nov-Dec;23(6D):5185-9 PMID: 14981987
  7. Circulating and tumor-infiltrating myeloid-derived suppressor cells in patients with colorectal carcinoma.
    PLoS One. 2013;8(2):e57114 PMID: 23437326
  8. Dual role of tumour-infiltrating T helper 17 cells in human colorectal cancer.
    Gut. 2015 Dec 30;:null PMID: 26719303
  9. PGE(2)-induced CXCL12 production and CXCR4 expression controls the accumulation of human MDSCs in ovarian cancer environment.
    Cancer Res. 2011 Dec 15;71(24):7463-70 PMID: 22025564
  10. IL4Ralpha+ myeloid-derived suppressor cell expansion in cancer patients.
    J Immunol. 2009 May 15;182(10):6562-8 PMID: 19414811
  11. TIE2-expressing monocytes as a diagnostic marker for hepatocellular carcinoma correlates with angiogenesis.
    Hepatology. 2013 Apr;57(4):1416-25 PMID: 22815256
  12. Arginase: an emerging key player in the mammalian immune system.
    Br J Pharmacol. 2009 Oct;158(3):638-51 PMID: 19764983
  13. Population alterations of L-arginase- and inducible nitric oxide synthase-expressed CD11b+/CD14⁻/CD15+/CD33+ myeloid-derived suppressor cells and CD8+ T lymphocytes in patients with advanced-stage non-small cell lung cancer.
    J Cancer Res Clin Oncol. 2010 Jan;136(1):35-45 PMID: 19572148
  14. Ipilimumab treatment results in an early decrease in the frequency of circulating granulocytic myeloid-derived suppressor cells as well as their Arginase1 production.
    Cancer Immunol Res. 2013 Sep;1(3):158-62 PMID: 24777678
  15. Prognostic role of CD10⁺ myeloid cells in association with tumor budding at the invasion front of colorectal cancer.
    Cancer Sci. 2011 Sep;102(9):1724-33 PMID: 21599811
  16. CXCR2 Inhibition Profoundly Suppresses Metastases and Augments Immunotherapy in Pancreatic Ductal Adenocarcinoma.
    Cancer Cell. 2016 Jun 13;29(6):832-45 PMID: 27265504
  17. A positive feedback loop between mesenchymal-like cancer cells and macrophages is essential to breast cancer metastasis.
    Cancer Cell. 2014 May 12;25(5):605-20 PMID: 24823638
  18. Analysis of Tie2-expressing monocytes (TEM) in patients with colorectal cancer.
    Cancer Invest. 2012 Mar;30(3):225-30 PMID: 22171993
  19. Immune monitoring of the circulation and the tumor microenvironment in patients with regionally advanced melanoma receiving neoadjuvant ipilimumab.
    PLoS One. 2014 Feb 03;9(2):e87705 PMID: 24498358
  20. Myeloid-derived suppressor cells suppress antitumor immune responses through IDO expression and correlate with lymph node metastasis in patients with breast cancer.
    J Immunol. 2013 Apr 1;190(7):3783-97 PMID: 23440412
  21. Anti-programmed-death-receptor-1 treatment with pembrolizumab in ipilimumab-refractory advanced melanoma: a randomised dose-comparison cohort of a phase 1 trial.
    Lancet. 2014 Sep 20;384(9948):1109-17 PMID: 25034862
  22. Molecular profiling reveals a tumor-promoting phenotype of monocytes and macrophages in human cancer progression.
    Immunity. 2014 Nov 20;41(5):815-29 PMID: 25453823
  23. Phenotypic diversity and plasticity in circulating neutrophil subpopulations in cancer.
    Cell Rep. 2015 Feb 3;10(4):562-73 PMID: 25620698
  24. Dissecting the tumor myeloid compartment reveals rare activating antigen-presenting cells critical for T cell immunity.
    Cancer Cell. 2014 Nov 10;26(5):638-52 PMID: 25446897
  25. The tumor microenvironment shapes lineage, transcriptional, and functional diversity of infiltrating myeloid cells.
    Cancer Immunol Res. 2014 Jul;2(7):655-67 PMID: 24801837
  26. CSF1/CSF1R blockade reprograms tumor-infiltrating macrophages and improves response to T-cell checkpoint immunotherapy in pancreatic cancer models.
    Cancer Res. 2014 Sep 15;74(18):5057-69 PMID: 25082815
  27. Distinct RNA transcriptome patterns are potentially associated with angiogenesis in Tie2-expressing monocytes.
    Gene. 2016 Apr 10;580(1):1-7 PMID: 26748243
  28. c-Met identifies a population of matrix metalloproteinase 9-producing monocytes in peritumoural stroma of hepatocellular carcinoma.
    J Pathol. 2015 Nov;237(3):319-29 PMID: 26108200
  29. Immune cell infiltration as an indicator of the immune microenvironment of pancreatic cancer.
    Br J Cancer. 2013 Mar 5;108(4):914-23 PMID: 23385730
  30. 2015: The Year of Anti-PD-1/PD-L1s Against Melanoma and Beyond.
    EBioMedicine. 2015 Jan 19;2(2):92-3 PMID: 26137543
  31. Disruption of CXCR2-mediated MDSC tumor trafficking enhances anti-PD1 efficacy.
    Sci Transl Med. 2014 May 21;6(237):237ra67 PMID: 24848257
  32. CCL2 recruits inflammatory monocytes to facilitate breast-tumour metastasis.
    Nature. 2011 Jun 08;475(7355):222-5 PMID: 21654748
  33. Arginase I-producing myeloid-derived suppressor cells in renal cell carcinoma are a subpopulation of activated granulocytes.
    Cancer Res. 2009 Feb 15;69(4):1553-60 PMID: 19201693
  34. Mechanisms affecting neutrophil migration capacity in breast cancer patients before and after chemotherapy.
    Cancer Chemother Pharmacol. 2014 Feb;73(2):317-24 PMID: 24258454
  35. CSF-1R inhibition alters macrophage polarization and blocks glioma progression.
    Nat Med. 2013 Oct;19(10):1264-72 PMID: 24056773
  36. Prognostic significance of tumor budding in rectal cancer biopsies before neoadjuvant therapy.
    Mod Pathol. 2014 Jan;27(1):156-62 PMID: 23887296
  37. Tumor-derived chemokine CCL5 enhances TGF-β-mediated killing of CD8(+) T cells in colon cancer by T-regulatory cells.
    Cancer Res. 2012 Mar 1;72(5):1092-102 PMID: 22282655
  38. Increased frequency and clinical significance of myeloid-derived suppressor cells in human colorectal carcinoma.
    World J Gastroenterol. 2012 Jul 7;18(25):3303-9 PMID: 22783056
  39. Intermediate monocytes but not TIE2-expressing monocytes are a sensitive diagnostic indicator for colorectal cancer.
    PLoS One. 2012;7(9):e44450 PMID: 22973451
  40. Fueling the engine and releasing the break: combinational therapy of cancer vaccines and immune checkpoint inhibitors.
    Cancer Biol Med. 2015 Sep;12(3):201-8 PMID: 26487965
  41. Tumor infiltration by FcγRIII (CD16)+ myeloid cells is associated with improved survival in patients with colorectal carcinoma.
    Int J Cancer. 2011 Jun 1;128(11):2663-72 PMID: 20715106
  42. Myeloid cells obtained from the blood but not from the tumor can suppress T-cell proliferation in patients with melanoma.
    Clin Cancer Res. 2012 Oct 1;18(19):5212-23 PMID: 22837179
  43. Recommendations for myeloid-derived suppressor cell nomenclature and characterization standards.
    Nat Commun. 2016 Jul 06;7:12150 PMID: 27381735
  44. M-CSF and GM-CSF Receptor Signaling Differentially Regulate Monocyte Maturation and Macrophage Polarization in the Tumor Microenvironment.
    Cancer Res. 2016 Jan 1;76(1):35-42 PMID: 26573801
  45. KIT oncogene inhibition drives intratumoral macrophage M2 polarization.
    J Exp Med. 2013 Dec 16;210(13):2873-86 PMID: 24323358
  46. A Higher Frequency of CD14+ CD169+ Monocytes/Macrophages in Patients with Colorectal Cancer.
    PLoS One. 2015 Oct 28;10(10):e0141817 PMID: 26509874
  47. The tumor microenvironment underlies acquired resistance to CSF-1R inhibition in gliomas.
    Science. 2016 May 20;352(6288):aad3018 PMID: 27199435
  48. Tumor-Produced Interleukin-8 Attracts Human Myeloid-Derived Suppressor Cells and Elicits Extrusion of Neutrophil Extracellular Traps (NETs).
    Clin Cancer Res. 2016 Aug 1;22(15):3924-36 PMID: 26957562
  49. Peripheral blood neutrophil granulocytes from patients with head and neck squamous cell carcinoma functionally differ from their counterparts in healthy donors.
    Int J Immunopathol Pharmacol. 2011 Jul-Sep;24(3):683-93 PMID: 21978700
  50. Coordinated regulation of myeloid cells by tumours.
    Nat Rev Immunol. 2012 Mar 22;12(4):253-68 PMID: 22437938
  51. Increased circulating immunosuppressive CD14(+)HLA-DR(-/low) cells correlate with clinical cancer stage and pathological grade in patients with bladder carcinoma.
    J Int Med Res. 2011;39(4):1381-91 PMID: 21986138
  52. Phase 2 study of carlumab (CNTO 888), a human monoclonal antibody against CC-chemokine ligand 2 (CCL2), in metastatic castration-resistant prostate cancer.
    Invest New Drugs. 2013 Jun;31(3):760-8 PMID: 22907596
  53. Orally administered colony stimulating factor 1 receptor inhibitor PLX3397 in recurrent glioblastoma: an Ivy Foundation Early Phase Clinical Trials Consortium phase II study.
    Neuro Oncol. 2016 Apr;18(4):557-64 PMID: 26449250
  54. Myeloid-derived suppressor cells as regulators of the immune system.
    Nat Rev Immunol. 2009 Mar;9(3):162-74 PMID: 19197294
  55. Tie2 identifies a hematopoietic lineage of proangiogenic monocytes required for tumor vessel formation and a mesenchymal population of pericyte progenitors.
    Cancer Cell. 2005 Sep;8(3):211-26 PMID: 16169466
  56. VEGF, IL-18 and NO production by neutrophils and their serum levels in patients with oral cavity cancer.
    Cytokine. 2005 May 7;30(3):93-9 PMID: 15826815
  57. Hypoxia-Induced Epithelial-to-Mesenchymal Transition in Hepatocellular Carcinoma Induces an Immunosuppressive Tumor Microenvironment to Promote Metastasis.
    Cancer Res. 2016 Feb 15;76(4):818-30 PMID: 26837767
  58. Expression of Tie-2 by human monocytes and their responses to angiopoietin-2.
    J Immunol. 2007 Jun 1;178(11):7405-11 PMID: 17513791
  59. Tumor-Associated Neutrophils Recruit Macrophages and T-Regulatory Cells to Promote Progression of Hepatocellular Carcinoma and Resistance to Sorafenib.
    Gastroenterology. 2016 Jun;150(7):1646-1658.e17 PMID: 26924089
  60. Tumor-associated neutrophils stimulate T cell responses in early-stage human lung cancer.
    J Clin Invest. 2014 Dec;124(12):5466-80 PMID: 25384214
  61. Active secretion of CXCL10 and CCL5 from colorectal cancer microenvironments associates with GranzymeB+ CD8+ T-cell infiltration.
    Oncotarget. 2015 Feb 20;6(5):2981-91 PMID: 25671296
  62. Tumour-infiltrating macrophages and clinical outcome in breast cancer.
    J Clin Pathol. 2012 Feb;65(2):159-63 PMID: 22049225
  63. Immunosuppressive CD14+HLA-DRlow/- monocytes in prostate cancer.
    Prostate. 2010 Mar 1;70(4):443-55 PMID: 19902470
  64. CCL2-induced chemokine cascade promotes breast cancer metastasis by enhancing retention of metastasis-associated macrophages.
    J Exp Med. 2015 Jun 29;212(7):1043-59 PMID: 26056232
  65. Polarization of tumor-associated neutrophil phenotype by TGF-beta: "N1" versus "N2" TAN.
    Cancer Cell. 2009 Sep 8;16(3):183-94 PMID: 19732719
  66. Tumor-associated neutrophils as a new prognostic factor in cancer: a systematic review and meta-analysis.
    PLoS One. 2014 Jun 06;9(6):e98259 PMID: 24906014
  67. Targeting of tumour-infiltrating macrophages via CCL2/CCR2 signalling as a therapeutic strategy against hepatocellular carcinoma.
    Gut. 2017 Jan;66(1):157-167 PMID: 26452628
  68. Circulating and tumor-infiltrating myeloid cell subsets in patients with bladder cancer.
    Int J Cancer. 2012 Mar 1;130(5):1109-19 PMID: 21480223
  69. Dual role of CCL3/CCR1 in oral squamous cell carcinoma: implications in tumor metastasis and local host defense.
    Oncol Rep. 2007 Nov;18(5):1107-13 PMID: 17914560
  70. The effects of gemcitabine and capecitabine combination chemotherapy and of low-dose adjuvant GM-CSF on the levels of myeloid-derived suppressor cells in patients with advanced pancreatic cancer.
    Cancer Immunol Immunother. 2014 Feb;63(2):175-83 PMID: 24292263
  71. Subsets of myeloid-derived suppressor cells in tumor-bearing mice.
    J Immunol. 2008 Oct 15;181(8):5791-802 PMID: 18832739
  72. Type, density, and location of immune cells within human colorectal tumors predict clinical outcome.
    Science. 2006 Sep 29;313(5795):1960-4 PMID: 17008531
  73. PD-L1 Expression Correlates with Tumor-Infiltrating Lymphocytes and Response to Neoadjuvant Chemotherapy in Breast Cancer.
    Cancer Immunol Res. 2015 Apr;3(4):326-32 PMID: 25527356
  74. Integrative Analyses of Colorectal Cancer Show Immunoscore Is a Stronger Predictor of Patient Survival Than Microsatellite Instability.
    Immunity. 2016 Mar 15;44(3):698-711 PMID: 26982367
  75. Monocyte chemotactic protein-1 expression as a prognosic biomarker in patients with solid tumor: a meta analysis.
    Int J Clin Exp Pathol. 2014 Jun 15;7(7):3876-86 PMID: 25120764
  76. Head and neck cancer relapse after chemoradiotherapy correlates with CD163+ macrophages in primary tumour and CD11b+ myeloid cells in recurrences.
    Br J Cancer. 2014 Oct 14;111(8):1509-18 PMID: 25093488
  77. Infiltration of a mixture of immune cells may be related to good prognosis in patients with differentiated thyroid carcinoma.
    Clin Endocrinol (Oxf). 2012 Dec;77(6):918-25 PMID: 22738343
  78. A first-in-human, first-in-class, phase I study of carlumab (CNTO 888), a human monoclonal antibody against CC-chemokine ligand 2 in patients with solid tumors.
    Cancer Chemother Pharmacol. 2013 Apr;71(4):1041-50 PMID: 23385782
  79. Angels and demons: Th17 cells represent a beneficial response, while neutrophil IL-17 is associated with poor prognosis in squamous cervical cancer.
    Oncoimmunology. 2015 Feb 03;4(1):e984539 PMID: 25949866
  80. Tumor-induced STAT3 activation in monocytic myeloid-derived suppressor cells enhances stemness and mesenchymal properties in human pancreatic cancer.
    Cancer Immunol Immunother. 2014 May;63(5):513-28 PMID: 24652403
  81. Myeloid-derived suppressor cell accumulation and function in patients with newly diagnosed glioblastoma.
    Neuro Oncol. 2011 Jun;13(6):591-9 PMID: 21636707
  82. PD-1 alters T-cell metabolic reprogramming by inhibiting glycolysis and promoting lipolysis and fatty acid oxidation.
    Nat Commun. 2015 Mar 26;6:6692 PMID: 25809635
  83. Tissue-Resident Macrophage Ontogeny and Homeostasis.
    Immunity. 2016 Mar 15;44(3):439-49 PMID: 26982352
  84. Arginase-1 mRNA expression correlates with myeloid-derived suppressor cell levels in peripheral blood of NSCLC patients.
    Lung Cancer. 2013 Sep;81(3):468-74 PMID: 23850196
  85. Chemokine expression is associated with the accumulation of tumour associated macrophages (TAMs) and progression in human colorectal cancer.
    Clin Exp Metastasis. 2007;24(2):121-30 PMID: 17390111
  86. PD-L1 is a novel direct target of HIF-1α, and its blockade under hypoxia enhanced MDSC-mediated T cell activation.
    J Exp Med. 2014 May 5;211(5):781-90 PMID: 24778419
  87. Increased levels of granulocytic myeloid-derived suppressor cells in peripheral blood and tumour tissue of pancreatic cancer patients.
    J Immunol Res. 2014;2014:879897 PMID: 24741628
  88. Monocytic cell differentiation from band-stage neutrophils under inflammatory conditions via MKK6 activation.
    Blood. 2014 Oct 23;124(17 ):2713-24 PMID: 25214442
  89. Clinical implications of the intrinsic molecular subtypes of breast cancer.
    Breast. 2015 Nov;24 Suppl 2:S26-35 PMID: 26253814
  90. Invasive breast carcinoma cells from patients exhibit MenaINV- and macrophage-dependent transendothelial migration.
    Sci Signal. 2014 Nov 25;7(353):ra112 PMID: 25429076
  91. Immature immunosuppressive CD14+HLA-DR-/low cells in melanoma patients are Stat3hi and overexpress CD80, CD83, and DC-sign.
    Cancer Res. 2010 Jun 1;70(11):4335-45 PMID: 20484028
  92. Angiopoietin-2 regulates gene expression in TIE2-expressing monocytes and augments their inherent proangiogenic functions.
    Cancer Res. 2010 Jul 1;70(13):5270-80 PMID: 20530679
  93. Detection of M2 macrophages and colony-stimulating factor 1 expression in serous and mucinous ovarian epithelial tumors.
    Pathol Int. 2009 May;59(5):300-5 PMID: 19432671
  94. Human inflammatory dendritic cells induce Th17 cell differentiation.
    Immunity. 2013 Feb 21;38(2):336-48 PMID: 23352235
  95. Anti-programmed cell death protein-1/ligand-1 therapy in different cancers.
    Br J Cancer. 2015 Apr 28;112(9):1421-7 PMID: 25856776
  96. Myeloid-derived suppressor cells enhance stemness of cancer cells by inducing microRNA101 and suppressing the corepressor CtBP2.
    Immunity. 2013 Sep 19;39(3):611-21 PMID: 24012420
  97. STAT3 regulates arginase-I in myeloid-derived suppressor cells from cancer patients.
    J Clin Invest. 2013 Apr;123(4):1580-9 PMID: 23454751
  98. Tumour microenvironment of both early- and late-stage colorectal cancer is equally immunosuppressive.
    Br J Cancer. 2014 Aug 26;111(5):927-32 PMID: 25058349
  99. Protective role of the inflammatory CCR2/CCL2 chemokine pathway through recruitment of type 1 cytotoxic γδ T lymphocytes to tumor beds.
    J Immunol. 2013 Jun 15;190(12):6673-80 PMID: 23686489
  100. Prognostic value of the neutrophil to lymphocyte ratio in lung cancer: A meta-analysis.
    Clinics (Sao Paulo). 2015 Jul;70(7):524-30 PMID: 26222823
  101. Pancreatic adenocarcinoma induces bone marrow mobilization of myeloid-derived suppressor cells which promote primary tumor growth.
    Cancer Immunol Immunother. 2012 Sep;61(9):1373-85 PMID: 22215137
  102. Sunitinib mediates reversal of myeloid-derived suppressor cell accumulation in renal cell carcinoma patients.
    Clin Cancer Res. 2009 Mar 15;15(6):2148-57 PMID: 19276286
  103. Macrophage colony-stimulating factor augments Tie2-expressing monocyte differentiation, angiogenic function, and recruitment in a mouse model of breast cancer.
    PLoS One. 2014 Jun 03;9(6):e98623 PMID: 24892425
  104. CSF-1 regulation of the wandering macrophage: complexity in action.
    Trends Cell Biol. 2004 Nov;14(11):628-38 PMID: 15519852
  105. Inhibition of tumor-derived prostaglandin-e2 blocks the induction of myeloid-derived suppressor cells and recovers natural killer cell activity.
    Clin Cancer Res. 2014 Aug 1;20(15):4096-106 PMID: 24907113
  106. A first in man phase I trial of the oral immunomodulator, indoximod, combined with docetaxel in patients with metastatic solid tumors.
    Oncotarget. 2014 Sep 30;5(18):8136-46 PMID: 25327557
  107. Serum interleukin-8 reflects tumor burden and treatment response across malignancies of multiple tissue origins.
    Clin Cancer Res. 2014 Nov 15;20(22):5697-707 PMID: 25224278
  108. Tumor-infiltrating monocytes/macrophages promote tumor invasion and migration by upregulating S100A8 and S100A9 expression in cancer cells.
    Oncogene. 2016 Nov 3;35(44):5735-5745 PMID: 27086923
  109. A new population of myeloid-derived suppressor cells in hepatocellular carcinoma patients induces CD4(+)CD25(+)Foxp3(+) T cells.
    Gastroenterology. 2008 Jul;135(1):234-43 PMID: 18485901
  110. The release of soluble forms of TRAIL and DR5 by neutrophils of oral cavity cancer patients.
    Folia Histochem Cytobiol. 2008;46(2):177-83 PMID: 18519235
  111. Circulating and tumor-infiltrating myeloid cells predict survival in human pleural mesothelioma.
    Cancer. 2011 Nov 15;117(22):5234-44 PMID: 21523763
  112. Prognostic value of neutrophil-to-lymphocyte ratio in breast cancer.
    FEBS Open Bio. 2015 May 12;5:502-7 PMID: 26137435
  113. Metabolism of L-arginine by myeloid-derived suppressor cells in cancer: mechanisms of T cell suppression and therapeutic perspectives.
    Immunol Invest. 2012;41(6-7):614-34 PMID: 23017138
  114. The M2 phenotype of tumor-associated macrophages in the stroma confers a poor prognosis in pancreatic cancer.
    Tumour Biol. 2016 Jul;37(7):8657-64 PMID: 26738860
  115. PD-1 Blockade in Tumors with Mismatch-Repair Deficiency.
    N Engl J Med. 2015 Jun 25;372(26):2509-20 PMID: 26028255
  116. Origin and Role of a Subset of Tumor-Associated Neutrophils with Antigen-Presenting Cell Features in Early-Stage Human Lung Cancer.
    Cancer Cell. 2016 Jul 11;30(1):120-35 PMID: 27374224
  117. Macrophages: obligate partners for tumor cell migration, invasion, and metastasis.
    Cell. 2006 Jan 27;124(2):263-6 PMID: 16439202
  118. RORC1 Regulates Tumor-Promoting "Emergency" Granulo-Monocytopoiesis.
    Cancer Cell. 2015 Aug 10;28(2):253-69 PMID: 26267538
  119. CSF1R inhibition with emactuzumab in locally advanced diffuse-type tenosynovial giant cell tumours of the soft tissue: a dose-escalation and dose-expansion phase 1 study.
    Lancet Oncol. 2015 Aug;16(8):949-56 PMID: 26179200
  120. The frequency of tumor-infiltrating Tie-2-expressing monocytes in renal cell carcinoma: its relationship to angiogenesis and progression.
    Urology. 2013 Oct;82(4):974.e9-13 PMID: 23947989
  121. Transcriptome-based network analysis reveals a spectrum model of human macrophage activation.
    Immunity. 2014 Feb 20;40(2):274-88 PMID: 24530056
  122. Mucosal macrophages in intestinal homeostasis and inflammation.
    J Innate Immun. 2011;3(6):550-64 PMID: 22025201
  123. Colony-stimulating factor 1 promotes progression of mammary tumors to malignancy.
    J Exp Med. 2001 Mar 19;193(6):727-40 PMID: 11257139
  124. Peripheral myeloid-derived suppressor and T regulatory PD-1 positive cells predict response to neoadjuvant short-course radiotherapy in rectal cancer patients.
    Oncotarget. 2015 Apr 10;6(10):8261-70 PMID: 25823653
  125. Significance of macrophage chemoattractant protein-1 in macrophage recruitment, angiogenesis, and survival in human breast cancer.
    Clin Cancer Res. 2000 Aug;6(8):3282-9 PMID: 10955814
  126. The prognostic impact of M-CSF, CSF-1 receptor, CD68 and CD3 in prostatic carcinoma.
    Histopathology. 2008 Jul;53(1):30-8 PMID: 18510570
  127. Increased expression of colony stimulating factor-1 is a predictor of poor prognosis in patients with clear-cell renal cell carcinoma.
    BMC Cancer. 2015 Feb 18;15:67 PMID: 25886010
  128. Long-lasting disease stabilization in the absence of toxicity in metastatic lung cancer patients vaccinated with an epitope derived from indoleamine 2,3 dioxygenase.
    Clin Cancer Res. 2014 Jan 1;20(1):221-32 PMID: 24218513
  129. Expansion of CCR8(+) inflammatory myeloid cells in cancer patients with urothelial and renal carcinomas.
    Clin Cancer Res. 2013 Apr 1;19(7):1670-80 PMID: 23363815
Article Info
Journal
Frontiers in immunology
Abbr.
Front Immunol
ISSN
1664-3224
Published
2017-00-00
Epub
2017-00-06
Pages
86
Language
English
Region
Switzerland
NLM ID
101560960
PMCID
PMC5292650
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