Dendritic cell plasticity in tumor-conditioned skin: CD14+ cells at the cross-roads of immune activation and suppression

被引:36
作者
van de Ven, Rieneke [1 ,2 ]
Lindenberg, Jelle J. [1 ]
Oosterhoff, Dinja [1 ]
de Gruijl, Tanja D. [1 ]
机构
[1] Vrije Univ Amsterdam Med Ctr, Dept Med Oncol, Canc Ctr Amsterdam, NL-1081 HV Amsterdam, Netherlands
[2] Providence Canc Ctr, Robert W Franz Canc Res Ctr, Earle A Chiles Res Inst, Lab Mol & Tumor Immunol, Portland, OR USA
关键词
dendritic cells; human DC subsets; skin; macrophages; cancer; immune suppression;
D O I
10.3389/fimmu.2013.00403
中图分类号
R392 [医学免疫学]; Q939.91 [免疫学];
学科分类号
100102 ;
摘要
Tumors abuse myeloid plasticity to re-direct dendritic cell (DC) differentiation from T cell stimulatory subsets to immune-suppressive subsets that can interfere with anti-tumor immunity. Lined by a dense network of easily accessible DC the skin is a preferred site for the delivery of DC-targeted vaccines. Various groups have recently been focusing on functional aspects of DC subsets in the skin and how these may be affected by tumor-derived suppressive factors. IL-6, Prostaglandin-E2, and IL-10 were identified as factors in cultures of primary human tumors responsible for the inhibited development and activation of skin DC as well as monocyte-derived DC. IL-10 was found to be uniquely able to convert fully developed DC to immature macrophage-like cells with functional M2 characteristics in a physiologically highly relevant skin explant model in which the phenotypic and functional traits of "crawl-out" DC were studied. Mostly from mouse studies, the JAK2/STAT3 signaling pathway has emerged as a "master switch" of tumor-induced immune suppression. Our lab has additionally identified p38-MAPK as an important signaling element in human DC suppression, and recently validated it as such in ex vivo cultures of single-cell suspensions from melanoma metastases. Through the identification of molecular mechanisms and signaling events that drive myeloid immune suppression in human tumors, more effective DC-targeted cancer vaccines may be designed.
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页数:7
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共 63 条
[51]   Inducing antitumor T cell immunity: Comparative functional analysis of interstitial versus Langerhans dendritic cells in a human cell line model [J].
Santegoets, Saskia J. A. M. ;
Bontkes, Hetty J. ;
Stam, Anita G. M. ;
Bhoelan, Farien ;
Ruizendaal, Janneke J. ;
van den Eertwegh, Alfons J. M. ;
Hooijberg, Erik ;
Scheper, Rik J. ;
de Gruijl, Tanja D. .
JOURNAL OF IMMUNOLOGY, 2008, 180 (07) :4540-4549
[52]   Prostanoids play a major role in the primary tumor-induced inhibition of dendritic cell differentiation [J].
Sombroek, CC ;
Stam, AGM ;
Masterson, AJ ;
Lougheed, SM ;
Schakel, MJAG ;
Meijer, CJLM ;
Pinedo, HM ;
van den Eertwegh, AJM ;
Scheper, RJ ;
de Gruijl, TD .
JOURNAL OF IMMUNOLOGY, 2002, 168 (09) :4333-4343
[53]   'Dressed for success' C-type lectin receptors for the delivery of glyco-vaccines to dendritic cells [J].
Unger, Wendy W. J. ;
van Kooyk, Yvette .
CURRENT OPINION IN IMMUNOLOGY, 2011, 23 (01) :131-137
[54]   Characterization of four conventional dendritic cell subsets in human skin-draining lymph nodes in relation to T-cell activation [J].
van de Ven, Rieneke ;
van den Hout, Mari F. C. M. ;
Lindenberg, Jelle J. ;
Sluijter, Berbel J. R. ;
van Leeuwen, Paul A. M. ;
Lougheed, Sinead M. ;
Meijer, Sybren ;
van den Tol, M. Petrousjka ;
Scheper, Rik J. ;
de Gruijl, Tanja D. .
BLOOD, 2011, 118 (09) :2502-2510
[55]   Response Breslow thickness and excision interval affect the activation state of Langerhans cells in melanoma sentinel lymph nodes [J].
van den Hout, Mari F. C. M. ;
Koster, Bas D. ;
Sluijter, Berbel J. R. ;
van Leeuwen, Paul A. M. ;
Meijer, Sybren ;
van den Tol, Monique Petrousjka ;
van den Eertwegh, Alfons J. M. ;
Scheper, Rik J. ;
van de Ven, Rieneke ;
de Gruijl, Tanja D. .
BLOOD, 2012, 119 (20) :4809-4810
[56]   Cutting edge: Loss of TLR2, TLR4, and TLR5 on Langerhans cells abolishes bacterial recognition [J].
van der Aar, Angelic M. G. ;
Sylva-Steenland, Regien M. R. ;
Bos, Jan D. ;
Kapsenberg, Martien L. ;
de Jong, Esther C. ;
Teunissen, Marcel B. M. .
JOURNAL OF IMMUNOLOGY, 2007, 178 (04) :1986-1990
[57]   A gene signature of inhibitory MHC receptors identifies a BDCA3+ subset of IL-10-induced dendritic cells with reduced allostimulatory capacity in vitro [J].
Velten, FW ;
Duperrier, K ;
Bohlender, J ;
Metharom, P ;
Goerdt, S .
EUROPEAN JOURNAL OF IMMUNOLOGY, 2004, 34 (10) :2800-2811
[58]   Tumor-specific CD8+ T cell reactivity in the sentinel lymph node of GM-CSF-treated stage I melanoma patients is associated with high myeloid dendritic cell content [J].
Vuylsteke, RJCLM ;
Molenkamp, BG ;
van Leeuwen, PAM ;
Meijer, S ;
Wijnands, PGJTB ;
Haanen, JBAG ;
Scheper, RJ ;
de Gruijl, TD .
CLINICAL CANCER RESEARCH, 2006, 12 (09) :2826-2833
[59]   Local administration of granulocyte/macrophage colony-stimulating factor increases the number and activation state of dendritic cells in the sentinel lymph node of early-stage melanoma [J].
Vuylsteke, RJCLM ;
Molenkamp, BG ;
Gietema, HA ;
van Leeuwen, PAM ;
Wijnands, PGJTB ;
Vos, W ;
van Diest, PJ ;
Scheper, RJ ;
Meijer, S ;
de Gruijl, TD .
CANCER RESEARCH, 2004, 64 (22) :8456-8460
[60]   Allergen-enhanced thrombomodulin (blood dendritic cell antigen 3, CD141) expression on dendritic cells is associated with a TH2-skewed immune response [J].
Yerkovich, Stephanie T. ;
Roponen, Marjut ;
Smith, Miranda E. ;
McKenna, Kathy ;
Bosco, Anthony ;
Subrata, Lily S. ;
Mamessier, Emilie ;
Wikstrom, Matthew E. ;
Le Souef, Peter ;
Sly, Peter D. ;
Holt, Patrick G. ;
Upham, John W. .
JOURNAL OF ALLERGY AND CLINICAL IMMUNOLOGY, 2009, 123 (01) :209-216