724
Views
1
CrossRef citations to date
0
Altmetric
Review Article

Dendritic cells as critical players in allergic rhinitis

Article: 25680 | Received 08 Aug 2014, Accepted 28 Sep 2014, Published online: 24 Oct 2014

References

  • Fokkens WJ Vroom TM Rijntjes E Mulder PG. Fluctuation of the number of CD-1(T6)-positive dendritic cells, presumably Langerhans cells, in the nasal mucosa of patients with an isolated grass-pollen allergy before, during, and after the grass-pollen season. J Allergy Clin Immunol. 1989;84(1):39-43.
  • Fokkens WJ Vroom TM Rijntjes E Mulder PG. CD-1 (T6), HLA-DR-expressing cells, presumably Langerhans cells, in nasal mucosa. Allergy. 1989;44(3):167-72.
  • Jahnsen FL Farkas L Lund-Johansen F Brandtzaeg P. Involvement of plasmacytoid dendritic cells in human diseases. Hum Immunol. 2002;63(12):1201-5.
  • KleinJan A Willart M van Rijt LS Braunstahl GJ Leman K Jung S et al An essential role for dendritic cells in human and experimental allergic rhinitis. J Allergy Clin Immunol. 2006;118(5):1117-25.
  • Takano K Kojima T Go M Murata M Ichimiya S Himi T et al HLA-DR- and CD11c-positive dendritic cells penetrate beyond well-developed epithelial tight junctions in human nasal mucosa of allergic rhinitis. J Histochem Cytochem. 2005;53(5):611-9.
  • Hammad H Lambrecht BN. Dendritic cells and airway epithelial cells at the interface between innate and adaptive immune responses. Allergy. 2011;66(5):579-87.
  • Kojima T Go M Takano K Kurose M Ohkuni T Koizumi J et al Regulation of tight junctions in upper airway epithelium. Biomed Res Int. 2013;2013:947072: [PubMed Abstract] [PubMed CentralFull Text]
  • Ogasawara N Kojima T Go M Takano K Kamekura R Ohkuni T et al Epithelial barrier and antigen uptake in lymphoepithelium of human adenoids. Acta Otolaryngol. 2011;131(2):116-23.
  • Lundberg K Rydnert F Greiff L Lindstedt M. Human blood dendritic cell subsets exhibit discriminative pattern recognition receptor profiles. Immunology. 2014;142(2):279-88.
  • Willart MA Hammad H. Alarming dendritic cells for allergic sensitization. Allergol Int. 2010;59(2):95-103.
  • Willart MA Deswarte K Pouliot P Braun H Beyaert R Lambrecht BN et al Interleukin-1alpha controls allergic sensitization to inhaled house dust mite via the epithelial release of GM-CSF and IL-33. J Exp Med. 2012;209(8):1505-17.
  • Nakanishi W Yamaguchi S Matsuda A Suzukawa M Shibui A Nambu A et al IL-33, but not IL-25, is crucial for the development of house dust mite antigen-induced allergic rhinitis. PLoS One. 2013;8(10):e78099
  • Ober C Yao TC. The genetics of asthma and allergic disease: A 21st century perspective. Immunol Rev. 2011;242(1):10-30.
  • Vercelli D. Discovering susceptibility genes for asthma and allergy. Nat Rev Immunol. 2008;8(3):169-82.
  • Wjst M Sargurupremraj M Arnold M. Genome-wide association studies in asthma: What they really told us about pathogenesis. Curr Opin Allergy Clin Immunol. 2013;13(1):112-8.
  • Baba S Kondo K Kanaya K Suzukawa K Ushio M Urata S et al Expression of IL-33 and its receptor ST2 in chronic rhinosinusitis with nasal polyps. Laryngoscope. 2014;124(4):E115-22.
  • Baumann R Rabaszowski M Stenin I Tilgner L Gaertner-Akerboom M Scheckenbach K et al Nasal levels of soluble IL-33R ST2 and IL-16 in allergic rhinitis: Inverse correlation trends with disease severity. Clin Exp Allergy. 2013;43(10):1134-43. [PubMed Abstract]
  • Rank MA Kobayashi T Kozaki H Bartemes KR Squillace DL Kita H. IL-33-activated dendritic cells induce an atypical TH2-type response. J Allergy Clin Immunol. 2009;123(5):1047-54.
  • Besnard AG Togbe D Guillou N Erard F Quesniaux V Ryffel B. IL-33-activated dendritic cells are critical for allergic airway inflammation. Eur J Immunol. 2011;41(6):1675-86.
  • Kurokawa M Matsukura S Kawaguchi M Ieki K Suzuki S Watanabe S et al Interleukin-33-activated dendritic cells induce the production of thymus and activation-regulated chemokine and macrophage-derived chemokine. Int Arch Allergy Immunol. 2013;161(Suppl 2):52-7.
  • Rogala B Gluck J. The role of interleukin-33 in rhinitis. Curr Allergy Asthma Rep. 2013;13(2):196-202.
  • Haenuki Y Matsushita K Futatsugi-Yumikura S Ishii KJ Kawagoe T Imoto Y et al A critical role of IL-33 in experimental allergic rhinitis. J Allergy Clin Immunol. 2012;130 1 184–94, e11
  • Buning C Genschel J Weltrich R Lochs H Schmidt H. The interleukin-25 gene located in the inflammatory bowel disease (IBD) 4 region: No association with inflammatory bowel disease. Eur J Immunogenet. 2003;30(5):329-33.
  • Nagarkar DR Poposki JA Tan BK Comeau MR Peters AT Hulse KE et al Thymic stromal lymphopoietin activity is increased in nasal polyps of patients with chronic rhinosinusitis. J Allergy Clin Immunol. 2013;132 3 [PubMed CentralFull Text] 593–600, e12
  • Melum GR Farkas L Scheel C Van Dieren B Gran E Liu YJ et al A thymic stromal lymphopoietin-responsive dendritic cell subset mediates allergic responses in the upper airway mucosa. J Allergy Clin Immunol. 2014
  • Liu T Liang X Li TL Ma J Yang JF Yang PC. Staphylococcal enterotoxin B compromises the immune tolerant status in the airway mucosa. Clin Exp Allergy. 2012;42(3):375-82.
  • Ito T Wang YH Duramad O Hori T Delespesse GJ Watanabe N et al TSLP-activated dendritic cells induce an inflammatory T helper type 2 cell response through OX40 ligand. J Exp Med. 2005;202(9):1213-23.
  • Xu L Zhang M Ma W Jin S Song W He S. Cockroach allergen Bla g 7 promotes TIM4 expression in dendritic cells leading to Th2 polarization. Mediators Inflamm. 2013;2013:983149: [PubMed Abstract] [PubMed CentralFull Text]
  • Schlereth S Lee HS Khandelwal P Saban DR. Blocking CCR7 at the ocular surface impairs the pathogenic contribution of dendritic cells in allergic conjunctivitis. Am J Pathol. 2012;180(6):2351-60.
  • Hellings PW Ceuppens JL. Mouse models of global airway allergy: What have we learned and what should we do next?. Allergy. 2004;59(9):914-9.
  • Tomaki M Zhao LL Lundahl J Sjostrand M Jordana M Linden A et al Eosinophilopoiesis in a murine model of allergic airway eosinophilia: Involvement of bone marrow IL-5 and IL-5 receptor alpha. J Immunol. 2000;165(7):4040-50.
  • Saito H Howie K Wattie J Denburg A Ellis R Inman MD et al Allergen-induced murine upper airway inflammation: Local and systemic changes in murine experimental allergic rhinitis. Immunology. 2001;104(2):226-34.
  • McCusker C Chicoine M Hamid Q Mazer B. Site-specific sensitization in a murine model of allergic rhinitis: Role of the upper airway in lower airways disease. J Allergy Clin Immunol. 2002;110(6):891-8.
  • Wang Y McCusker CT. Interleukin-13-dependent bronchial hyper-responsiveness following isolated upper-airway allergen challenge in a murine model of allergic rhinitis and asthma. Clin Exp Allergy. 2005;35(8):1104-11.
  • KleinJan A. The crucial role of dendritic cells in rhinitis. Curr Opin Allergy Clin Immunol. 2011;11(1):12-7.
  • Horiguchi S Matsuoka T Okamoto Y Sakurai D Kobayashi K Chazono H et al Migration of tumor antigen-pulsed dendritic cells after mucosal administration in the human upper respiratory tract. J Clin Immunol. 2007;27(6):598-604.
  • Reinartz SM van Tongeren J van Egmond D de Groot EJ Fokkens WJ van Drunen CM. Dendritic cells in nasal mucosa of subjects with different allergic sensitizations. J Allergy Clin Immunol. 2011;128(4):887-90.
  • Ekman AK Erjefalt JS Jansson L Cardell LO. Allergen-induced accumulation of CD68−, CD123+ dendritic cells in the nasal mucosa. Int Arch Allergy Immunol. 2011;155(3):234-42.
  • Ayers CM Schlosser RJ O'Connell BP Atkinson C Mulligan RM Casey SE et al Increased presence of dendritic cells and dendritic cell chemokines in the sinus mucosa of chronic rhinosinusitis with nasal polyps and allergic fungal rhinosinusitis. Int Forum Allergy Rhinol. 2011;1(4):296-302.
  • Kleinjan A van Nimwegen M Leman K Hoogsteden HC Lambrecht BN. Topical treatment targeting sphingosine-1-phosphate and sphingosine lyase abrogates experimental allergic rhinitis in a murine model. Allergy. 2013;68(2):204-12.
  • Xie MQ Liu J Long Z Tian DF Zhao CQ Yang PC. Modulation of immune tolerance with a Chinese traditional prescription inhibits allergic rhinitis in mice. N Am J Med Sci. 2011;3(11):503-7.
  • O'Connell BP Schlosser RJ Wentzel JL Nagel W Mulligan JK. Systemic monocyte-derived dendritic cells and associated Th2 skewing in chronic rhinosinusitis. Otolaryngol Head Neck Surg. 2014;150(2):312-20.
  • Pilette C Jacobson MR Ratajczak C Detry B Banfield G VanSnick J et al Aberrant dendritic cell function conditions Th2-cell polarization in allergic rhinitis. Allergy. 2013;68(3):312-21.
  • Shen C Hupin C Froidure A Detry B Pilette C. Impaired ICOSL in human myeloid dendritic cells promotes Th2 responses in patients with allergic rhinitis and asthma. Clin Exp Allergy. 2014;44(6):831-41.
  • van Rijt LS Jung S Kleinjan A Vos N Willart M Duez C et al In vivo depletion of lung CD11c+ dendritic cells during allergen challenge abrogates the characteristic features of asthma. J Exp Med. 2005;201(6):981-91.
  • Kaur D Brightling C. OX40/OX40 ligand interactions in T-cell regulation and asthma. Chest. 2012;141(2):494-9.
  • Gauvreau GM Boulet LP Cockcroft DW FitzGerald JM Mayers I Carlsten C et al OX40L blockade and allergen-induced airway responses in subjects with mild asthma. Clin Exp Allergy. 2014;44(1):29-37.
  • Gauvreau GM O'Byrne PM Boulet LP Wang Y Cockcroft D Bigler J et al Effects of an anti-TSLP antibody on allergen-induced asthmatic responses. N Engl J Med. 2014;370(22):2102-10.
  • Liu Y Yu HJ Wang N Zhang YN Huang SK Cui YH et al Clara cell 10-kDa protein inhibits T(H)17 responses through modulating dendritic cells in the setting of allergic rhinitis. J Allergy Clin Immunol. 2013;131 2 387-94. [PubMed Abstract] [PubMed CentralFull Text] e1–12
  • Idzko M Hammad H van Nimwegen M Kool M Muller T Soullie T et al Local application of FTY720 to the lung abrogates experimental asthma by altering dendritic cell function. J Clin Invest. 2006;116(11):2935-44.
  • Liao JJ Huang MC Goetzl EJ. Cutting edge: Alternative signaling of Th17 cell development by sphingosine 1-phosphate. J Immunol. 2007;178(9):5425-8.
  • Pfaar O Cazan D Klimek L Larenas-Linnemann D Calderon MA. Adjuvants for immunotherapy. Curr Opin Allergy Clin Immunol. 2012;12(6):648-57.
  • Bielinska AU Makidon PE Janczak KW Blanco LP Swanson B Smith DM et al Distinct pathways of humoral and cellular immunity induced with the mucosal administration of a nanoemulsion adjuvant. J Immunol. 2014;192(6):2722-33.
  • Amsen D Antov A Flavell RA. The different faces of Notch in T-helper-cell differentiation. Nat Rev Immunol. 2009;9(2):116-24.