Immune Mechanisms of Sublingual Immunotherapy

被引:32
作者
Jay, David C. [1 ]
Nadeau, Kari C. [1 ]
机构
[1] Stanford Univ, Inst Immun, Stanford, CA 94305 USA
关键词
Sublingual immunotherapy; Allergy; Regulatory T cell; Tolerance; Mucosal immunity; Biomarker; REGULATORY T-CELLS; PLACEBO-CONTROLLED TRIAL; ALLERGEN IMMUNOTHERAPY; CLINICAL-EFFICACY; DOUBLE-BLIND; ORAL IMMUNOTHERAPY; PERIPHERAL-BLOOD; LANGERHANS CELLS; DENDRITIC CELLS; GRASS;
D O I
10.1007/s11882-014-0473-1
中图分类号
R392 [医学免疫学];
学科分类号
100102 ;
摘要
Sublingual immunotherapy (SLIT) is a well-established allergen-specific immunotherapy and a safe and effective strategy to reorient inappropriate immune responses in allergic patients. SLIT takes advantage of the tolerogenic environment of the oral mucosa to promote tolerance to the allergen. Several clinical studies have investigated the complex interplay of innate and adaptive immune responses that SLIT exploits. The oral immune system is composed of tolerogenic dendritic cells that, following uptake of allergen during SLIT, support the differentiation of T helper cell type 1 (Th1) and the induction of IL-10-producing regulatory T cells. Following SLIT, allergic disease-promoting T helper cell type 2 (Th2) responses shift to a Th1 inflammatory response, and IL-10 and transforming growth factor (TGF)-beta production by regulatory T cells and tolerogenic dendritic cells suppress allergen-specific T cell responses. These immune changes occur both in the sublingual mucosa and in the periphery of a patient following SLIT. SLIT also promotes the synthesis of allergen-specific IgG and IgA antibodies that block allergen-IgE complex formation and binding to inflammatory cells, thus encouraging an anti-inflammatory environment. Several of these revealing findings have also paved the way for the identification of biomarkers of the clinical efficacy of SLIT. This review presents the emerging elucidation of the immune mechanisms mediated by SLIT.
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页码:1 / 7
页数:7
相关论文
共 61 条
[1]   Role of interleukin 10 in specific immunotherapy [J].
Akdis, CA ;
Blesken, T ;
Akdis, M ;
Wüthrich, B ;
Blaser, K .
JOURNAL OF CLINICAL INVESTIGATION, 1998, 102 (01) :98-106
[2]   Distribution of Langerhans cells and mast cells within the human oral mucosa: new application sites of allergens in sublingual immunotherapy? [J].
Allam, J. -P. ;
Stojanovski, G. ;
Friedrichs, N. ;
Peng, W. ;
Bieber, T. ;
Wenzel, J. ;
Novak, N. .
ALLERGY, 2008, 63 (06) :720-727
[3]   Phl p 5 resorption in human oral mucosa leads to dose-dependent and time-dependent allergen binding by oral mucosal Langerhans cells, attenuates their maturation, and enhances their migratory and TGF-β1 and IL-10-producing properties [J].
Allam, Jean-Pierre ;
Wuertzen, Peter A. ;
Reinartz, Markus ;
Winter, Jochen ;
Vrtala, Susanne ;
Chen, Kuan-Wei ;
Valenta, Rudolf ;
Wenghoefer, Matthias ;
Appel, Thorsten ;
Gros, Eva ;
Niederhagen, Bernd ;
Bieber, Thomas ;
Lund, Kaare ;
Novak, Natalija .
JOURNAL OF ALLERGY AND CLINICAL IMMUNOLOGY, 2010, 126 (03) :638-U5
[4]   Dendritic cells modification during sublingual immunotherapy in children with allergic symptoms to house dust mites [J].
Angelini, Federica ;
Pacciani, Valentina ;
Corrente, Stefania ;
Silenzi, Romina ;
Di Pede, Alessandra ;
Polito, Antonella ;
Riccardi, Carla ;
Di Cesare, Silvia ;
Yammine, Marie Laure ;
Rossi, Paolo ;
Moschese, Viviana ;
Chini, Loredana .
WORLD JOURNAL OF PEDIATRICS, 2011, 7 (01) :24-30
[5]   Comparing subcutaneous and sublingual immunotherapy: what do we know? [J].
Bahceciler, Nerin N. ;
Galip, Nilufer .
CURRENT OPINION IN ALLERGY AND CLINICAL IMMUNOLOGY, 2012, 12 (06) :640-647
[6]   Heterogeneity of antibody responses among clinical responders during grass pollen sublingual immunotherapy [J].
Baron-Bodo, V. ;
Horiot, S. ;
Lautrette, A. ;
Chabre, H. ;
Drucbert, A. S. ;
Danze, P. M. ;
Senechal, H. ;
Peltre, G. ;
Galvain, S. ;
Zeldin, R. K. ;
Horak, F. ;
Moingeon, P. .
CLINICAL AND EXPERIMENTAL ALLERGY, 2013, 43 (12) :1362-1373
[7]  
Begin P, 2014, HUM VACC IMMUNOTHER, V10, P29
[8]   Sublingual immunotherapy induces IL-10-producing T regulatory cells, allergen-specific T-cell tolerance, and immune deviation [J].
Bohle, Barbara ;
Kinaciyan, Tamar ;
Gerstmayr, Marianne ;
Radakovics, Astrid ;
Jahn-Schmid, Beatrice ;
Ebner, Christof .
JOURNAL OF ALLERGY AND CLINICAL IMMUNOLOGY, 2007, 120 (03) :707-713
[9]   Allergen-specific CD4+T cell responses in peripheral blood do not predict the early onset of clinical efficacy during grass pollen sublingual immunotherapy [J].
Bonvalet, M. ;
Moussu, H. ;
Wambre, E. ;
Ricarte, C. ;
Horiot, S. ;
Rimaniol, A-C ;
Kwok, W. W. ;
Horak, F. ;
de Beaumont, O. ;
Baron-Bodo, V. ;
Moingeon, P. .
CLINICAL AND EXPERIMENTAL ALLERGY, 2012, 42 (12) :1745-1755
[10]   Effect of sublingual immunotherapy with grass monomeric allergoid on allergen-specific T-cell proliferation and interleukin 10 production [J].
Burastero, Sarnuele E. ;
Mistrello, Gianni ;
Falagiani, Paolo ;
Paolucci, Clara ;
Breda, Daniela ;
Roncarolo, Daniela ;
Zanotta, Stefania ;
Monasterolo, Giorgio ;
Rossi, Renato E. .
ANNALS OF ALLERGY ASTHMA & IMMUNOLOGY, 2008, 100 (04) :343-350