Podoplanin Positive Myeloid Cells Promote Glioma Development by Immune Suppression
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[1] Monika S. Kowalczyk,et al. Induction and transcriptional regulation of the co-inhibitory gene module in T cells , 2018, Nature.
[2] R. Weinberg,et al. Understanding the tumor immune microenvironment (TIME) for effective therapy , 2018, Nature Medicine.
[3] Shelly Maman,et al. A history of exploring cancer in context , 2018, Nature Reviews Cancer.
[4] S. Watson,et al. The podoplanin-CLEC-2 axis inhibits inflammation in sepsis , 2017, Nature Communications.
[5] Weiqun Li,et al. Inhibition of arginase by CB-1158 blocks myeloid cell-mediated immune suppression in the tumor microenvironment , 2017, Journal of Immunotherapy for Cancer.
[6] M. Detmar,et al. Outflow of cerebrospinal fluid is predominantly through lymphatic vessels and is reduced in aged mice , 2017, Nature Communications.
[7] D. Thickett,et al. Effect of anti-podoplanin antibody administration during lipopolysaccharide-induced lung injury in mice , 2017, BMJ Open Respiratory Research.
[8] T. Petrova,et al. Microenvironmental regulation of tumour angiogenesis , 2017, Nature Reviews Cancer.
[9] S. Watson,et al. Mice with a deficiency in CLEC-2 are protected against deep vein thrombosis. , 2017, Blood.
[10] D. Quail,et al. The Microenvironmental Landscape of Brain Tumors. , 2017, Cancer cell.
[11] C. Brennan,et al. Macrophage Ontogeny Underlies Differences in Tumor-Specific Education in Brain Malignancies. , 2016, Cell reports.
[12] M. Mann,et al. L-Arginine Modulates T Cell Metabolism and Enhances Survival and Anti-tumor Activity , 2016, Cell.
[13] R. Kalluri. The biology and function of fibroblasts in cancer , 2016, Nature Reviews Cancer.
[14] J. Brown,et al. Colony stimulating factor 1 receptor inhibition delays recurrence of glioblastoma after radiation by altering myeloid cell recruitment and polarization. , 2016, Neuro-oncology.
[15] S. Razavi,et al. Immune Evasion Strategies of Glioblastoma , 2016, Front. Surg..
[16] P. Dzięgiel,et al. Podoplanin - a small glycoprotein with many faces. , 2016, American journal of cancer research.
[17] I. Henderson,et al. Inflammation drives thrombosis after Salmonella infection via CLEC-2 on platelets. , 2015, The Journal of clinical investigation.
[18] P. Angel,et al. Epithelial deletion of podoplanin is dispensable for re‐epithelialization of skin wounds , 2015, Experimental dermatology.
[19] P. Vajkoczy,et al. Resident microglia, and not peripheral macrophages, are the main source of brain tumor mononuclear cells , 2015, International Journal of Cancer.
[20] T. Langmann,et al. Glioma-Associated Microglia/Macrophages Display an Expression Profile Different from M1 and M2 Polarization and Highly Express Gpnmb and Spp1 , 2015, PloS one.
[21] J. Finke,et al. Myeloid derived suppressor cell infiltration of murine and human gliomas is associated with reduction of tumor infiltrating lymphocytes , 2015, Journal of Neuro-Oncology.
[22] V. Kuchroo,et al. Podoplanin negatively regulates CD4+ effector T cell responses. , 2015, The Journal of clinical investigation.
[23] Vivien W. Chan,et al. Macrophage IL-10 blocks CD8+ T cell-dependent responses to chemotherapy by suppressing IL-12 expression in intratumoral dendritic cells. , 2014, Cancer cell.
[24] H. Kettenmann,et al. Glioma-associated microglia and macrophages/monocytes display distinct electrophysiological properties and do not communicate via gap junctions , 2014, Neuroscience Letters.
[25] P. Wen,et al. Immunotherapy advances for glioblastoma. , 2014, Neuro-oncology.
[26] Robert P. Jenkins,et al. Dendritic Cells Control Fibroblastic Reticular Network Tension and Lymph Node Expansion , 2014, Nature.
[27] Jeffrey W Pollard,et al. Tumor-associated macrophages: from mechanisms to therapy. , 2014, Immunity.
[28] P. Dessen,et al. PD-L1 is a novel direct target of HIF-1α, and its blockade under hypoxia enhanced MDSC-mediated T cell activation , 2014, The Journal of experimental medicine.
[29] Tao Jiang,et al. Tumour-infiltrating CD4+ and CD8+ lymphocytes as predictors of clinical outcome in glioma , 2014, British Journal of Cancer.
[30] Geir Egil Eide,et al. Elevated CD3+ and CD8+ tumor-infiltrating immune cells correlate with prolonged survival in glioblastoma patients despite integrated immunosuppressive mechanisms in the tumor microenvironment and at the systemic level , 2013, Journal of Neuroimmunology.
[31] D. Quail,et al. Microenvironmental regulation of tumor progression and metastasis , 2013, Nature Medicine.
[32] Christina S. Leslie,et al. CSF-1R inhibition alters macrophage polarization and blocks glioma progression , 2013, Nature Medicine.
[33] R. Kaur,et al. Gliomas Promote Immunosuppression through Induction of B7-H1 Expression in Tumor-Associated Macrophages , 2013, Clinical Cancer Research.
[34] M. Pawlita,et al. High‐throughput SNP‐based authentication of human cell lines , 2013, International journal of cancer.
[35] M. Berger,et al. Increased Microglia/Macrophage Gene Expression in a Subset of Adult and Pediatric Astrocytomas , 2012, PloS one.
[36] J. Segall,et al. Microglial Stimulation of Glioblastoma Invasion Involves Epidermal Growth Factor Receptor (EGFR) and Colony Stimulating Factor 1 Receptor (CSF-1R) Signaling , 2012, Molecular medicine.
[37] P. Lichter,et al. Expression of podoplanin in human astrocytic brain tumors is controlled by the PI3K-AKT-AP-1 signaling pathway and promoter methylation. , 2012, Neuro-oncology.
[38] S. Watson,et al. Podoplanin-expressing inflammatory macrophages activate murine platelets via CLEC-2 , 2012, Journal of thrombosis and haemostasis : JTH.
[39] Jenna M. Sullivan,et al. Th17 cells induce ectopic lymphoid follicles in central nervous system tissue inflammation. , 2011, Immunity.
[40] T. Wynn,et al. Regulation of Macrophage Arginase Expression and Tumor Growth by the Ron Receptor Tyrosine Kinase , 2011, The Journal of Immunology.
[41] B. Kamińska,et al. Characteristics of the Alternative Phenotype of Microglia/Macrophages and its Modulation in Experimental Gliomas , 2011, PloS one.
[42] A. Ochiai,et al. Podoplanin-positive fibroblasts enhance lung adenocarcinoma tumor formation: podoplanin in fibroblast functions for tumor progression. , 2011, Cancer research.
[43] K. Mätz-Rensing,et al. Definition of leukocyte subsets in primate central nervous system by polychromatic flow cytometry , 2011, Cytometry. Part A : the journal of the International Society for Analytical Cytology.
[44] A. Unterberg,et al. Effector T-Cell Infiltration Positively Impacts Survival of Glioblastoma Patients and Is Impaired by Tumor-Derived TGF-β , 2011, Clinical Cancer Research.
[45] D. Zamboni,et al. A Method for Generation of Bone Marrow-Derived Macrophages from Cryopreserved Mouse Bone Marrow Cells , 2010, PloS one.
[46] F. Ginhoux,et al. Fate Mapping Analysis Reveals That Adult Microglia Derive from Primitive Macrophages , 2010, Science.
[47] A. Heimberger,et al. Glioma cancer stem cells induce immunosuppressive macrophages/microglia. , 2010, Neuro-oncology.
[48] D. Gilroy,et al. A distinct subset of podoplanin (gp38) expressing F4/80+ macrophages mediate phagocytosis and are induced following zymosan peritonitis , 2010, FEBS letters.
[49] Yi Lin,et al. Systemic immune suppression in glioblastoma: the interplay between CD14+HLA-DRlo/neg monocytes, tumor factors, and dexamethasone. , 2010, Neuro-oncology.
[50] F. Heppner,et al. Gliomas induce and exploit microglial MT1-MMP expression for tumor expansion , 2009, Proceedings of the National Academy of Sciences.
[51] I. Parney,et al. Flow cytometry and in vitro analysis of human glioma-associated macrophages. Laboratory investigation. , 2009, Journal of neurosurgery.
[52] E. Wagner,et al. Podoplanin is a novel fos target gene in skin carcinogenesis. , 2008, Cancer research.
[53] Luigi Naldini,et al. Tie2 identifies a hematopoietic lineage of proangiogenic monocytes required for tumor vessel formation and a mesenchymal population of pericyte progenitors. , 2005, Cancer cell.
[54] P. Kleihues,et al. Population-based studies on incidence, survival rates, and genetic alterations in astrocytic and oligodendroglial gliomas. , 2005, Journal of neuropathology and experimental neurology.
[55] M. Quintanilla,et al. Characterization of human PA2.26 antigen (T1α–2, podoplanin), a small membrane mucin induced in oral squamous cell carcinomas , 2005, International journal of cancer.
[56] M. Detmar,et al. Up-regulation of the lymphatic marker podoplanin, a mucin-type transmembrane glycoprotein, in human squamous cell carcinomas and germ cell tumors. , 2005, The American journal of pathology.
[57] J. Brayer,et al. Arginase I Production in the Tumor Microenvironment by Mature Myeloid Cells Inhibits T-Cell Receptor Expression and Antigen-Specific T-Cell Responses , 2004, Cancer Research.
[58] J. Serratosa,et al. High‐yield isolation of murine microglia by mild trypsinization , 2003, Glia.
[59] B. Badie,et al. Flow cytometric characterization of tumor-associated macrophages in experimental gliomas. , 2000, Neurosurgery.
[60] Andrew V. Nguyen,et al. Tumorigenesis and Neoplastic Progression A Novel Mouse Model of Inflammatory Bowel Disease Links Mammalian Target of Rapamycin-Dependent Hyperproliferation of Colonic Epithelium to Inflammation-Associated Tumorigenesis , 2010 .