Immune System Evasion as Hallmark of Melanoma Progression: The Role of Dendritic Cells

被引:103
作者
Tucci, Marco [1 ]
Passarelli, Anna [1 ]
Mannavola, Francesco [1 ]
Felici, Claudia [1 ]
Stucci, Luigia Stefania [1 ]
Cives, Mauro [1 ]
Silvestris, Francesco [1 ]
机构
[1] Univ Bari Aldo Moro, Dept Biomed Sci & Human Oncol, Bari, Italy
关键词
melanoma; dendritic cells; microenvironment; checkpoint inhibitors; T-cells; HUMAN LANGERHANS CELLS; TUMOR MICROENVIRONMENT; BRAF INHIBITORS; CANCER-IMMUNITY; PD-1; BLOCKADE; PLASMA-CELLS; NK CELLS; KAPPA-B; EXPRESSION; RECEPTOR;
D O I
10.3389/fonc.2019.01148
中图分类号
R73 [肿瘤学];
学科分类号
100214 ;
摘要
Melanoma is an immunogenic tumor whose relationship with immune cells resident in the microenvironment significantly influences cancer cell proliferation, progression, and metastasis. During melanomagenesis, both immune and melanoma cells undergo the immunoediting process that includes interconnected phases as elimination, equilibrium, and escape or immune evasion. In this context, dendritic cells (DCs) are active players that indirectly counteract the proliferation of melanoma cells. Moreover, DC maturation, migration, and cross-priming as well as their functional interplay with cytotoxic T-cells through ligands of immune checkpoint receptors result impaired. A number of signals propagated by highly proliferating melanoma cells and accessory cells as T-cells, natural killer cells (NKs), tumor-associated macrophages (TAMs), T-regulatory cells (T-regs), myeloid-derived suppressor cells (MDSCs), and endothelial cells participate to create an immunosuppressive milieu that results engulfed of tolerogenic factors and interleukins (IL) as IL-6 and IL-10. To underline the role of the immune infiltrate in blocking the melanoma progression, it has been described that the composition, density, and distribution of cytotoxic T-cells in the surrounding stroma is predictive of responsiveness to immunotherapy. Here, we review the major mechanisms implicated in melanoma progression, focusing on the role of DCs.
引用
收藏
页数:14
相关论文
共 143 条
[1]   Roles of the RANKL-RANK axis in antitumour immunity - implications for therapy [J].
Ahern, Elizabeth ;
Smyth, Mark J. ;
Dougall, William C. ;
Teng, Michele W. L. .
NATURE REVIEWS CLINICAL ONCOLOGY, 2018, 15 (11) :676-693
[2]   Signatures of mutational processes in human cancer [J].
Alexandrov, Ludmil B. ;
Nik-Zainal, Serena ;
Wedge, David C. ;
Aparicio, Samuel A. J. R. ;
Behjati, Sam ;
Biankin, Andrew V. ;
Bignell, Graham R. ;
Bolli, Niccolo ;
Borg, Ake ;
Borresen-Dale, Anne-Lise ;
Boyault, Sandrine ;
Burkhardt, Birgit ;
Butler, Adam P. ;
Caldas, Carlos ;
Davies, Helen R. ;
Desmedt, Christine ;
Eils, Roland ;
Eyfjord, Jorunn Erla ;
Foekens, John A. ;
Greaves, Mel ;
Hosoda, Fumie ;
Hutter, Barbara ;
Ilicic, Tomislav ;
Imbeaud, Sandrine ;
Imielinsk, Marcin ;
Jaeger, Natalie ;
Jones, David T. W. ;
Jones, David ;
Knappskog, Stian ;
Kool, Marcel ;
Lakhani, Sunil R. ;
Lopez-Otin, Carlos ;
Martin, Sancha ;
Munshi, Nikhil C. ;
Nakamura, Hiromi ;
Northcott, Paul A. ;
Pajic, Marina ;
Papaemmanuil, Elli ;
Paradiso, Angelo ;
Pearson, John V. ;
Puente, Xose S. ;
Raine, Keiran ;
Ramakrishna, Manasa ;
Richardson, Andrea L. ;
Richter, Julia ;
Rosenstiel, Philip ;
Schlesner, Matthias ;
Schumacher, Ton N. ;
Span, Paul N. ;
Teague, Jon W. .
NATURE, 2013, 500 (7463) :415-+
[3]   A homologue of the TNF receptor and its ligand enhance T-cell growth and dendritic-cell function [J].
Anderson, DM ;
Maraskovsky, E ;
Billingsley, WL ;
Dougall, WC ;
Tometsko, ME ;
Roux, ER ;
Teepe, MC ;
DuBose, RF ;
Cosman, D ;
Galibert, L .
NATURE, 1997, 390 (6656) :175-179
[4]  
[Anonymous], 2019, J CLIN ONCOL S
[5]   Increased efficacy of a dendritic cell-based therapeutic cancer vaccine with adenosine receptor antagonist and CD73 inhibitor [J].
Arab, Samaneh ;
Kheshtchin, Nasim ;
Ajami, Maryam ;
Ashurpoor, Mahbubeh ;
Safvati, Aida ;
Namdar, Afshin ;
Mirzaei, Reza ;
Niri, Neda Mousavi ;
Jadidi-Niaragh, Farhad ;
Ghahremani, Mohammad Hossein ;
Hadjati, Jamshid .
TUMOR BIOLOGY, 2017, 39 (03)
[6]   Lessons from Cancer Immunoediting in Cutaneous Melanoma [J].
Aris, Mariana ;
Barrio, Maria Marcela ;
Mordoh, Jose .
CLINICAL & DEVELOPMENTAL IMMUNOLOGY, 2012,
[7]   Nicotinamide Phosphoribosyltransferase (NAMPT) as a Therapeutic Target in BRAF-Mutated Metastatic Melanoma [J].
Audrito, Valentina ;
Manago, Antonella ;
La Vecchia, Sofia ;
Zamporlini, Federica ;
Vitale, Nicoletta ;
Baroni, Gianna ;
Cignetto, Simona ;
Serra, Sara ;
Bologna, Cinzia ;
Stingi, Aureliano ;
Arruga, Francesca ;
Vaisitti, Tiziana ;
Massi, Daniela ;
Mandala, Mario ;
Raffaelli, Nadia ;
Deaglio, Silvia .
JNCI-JOURNAL OF THE NATIONAL CANCER INSTITUTE, 2018, 110 (03)
[8]   Dendritic cells and the control of immunity [J].
Banchereau, J ;
Steinman, RM .
NATURE, 1998, 392 (6673) :245-252
[9]   The differential production of cytokines by human Langerhans cells and dermal CD14+ DCs controls CTL priming [J].
Banchereau, Jacques ;
Thompson-Snipes, Luann ;
Zurawski, Sandra ;
Blanck, Jean-Philippe ;
Cao, Yanying ;
Clayton, Sandra ;
Gorvel, Jean-Pierre ;
Zurawski, Gerard ;
Klechevsky, Eynav .
BLOOD, 2012, 119 (24) :5742-5749
[10]   A natural killer-dendritic cell axis defines checkpoint therapy-responsive tumor microenvironments [J].
Barry, Kevin C. ;
Hsu, Joy ;
Broz, Miranda L. ;
Cueto, Francisco J. ;
Binnewies, Mikhail ;
Combes, Alexis J. ;
Nelson, Amanda E. ;
Loo, Kimberly ;
Kumar, Raj ;
Rosenblum, Michael D. ;
Alvarado, Michael D. ;
Wolf, Denise M. ;
Bogunovic, Dusan ;
Bhardwaj, Nina ;
Daud, Adil, I ;
Ha, Patrick K. ;
Ryan, William R. ;
Pollack, Joshua L. ;
Samad, Bushra ;
Asthana, Saurabh ;
Chan, Vincent ;
Krummel, Matthew F. .
NATURE MEDICINE, 2018, 24 (08) :1178-1191