IgE promotes type 2 innate lymphoid cells in murine food allergy

被引:68
作者
Burton, O. T. [1 ,2 ]
Tamayo, J. Medina [1 ,2 ]
Stranks, A. J. [1 ]
Miller, S. [1 ]
Koleoglou, K. J. [1 ]
Weinberg, E. O. [3 ]
Oettgen, H. C. [1 ,2 ]
机构
[1] Boston Childrens Hosp, Dept Med, Boston, MA 02115 USA
[2] Harvard Med Sch, Dept Pediat, Boston, MA USA
[3] Tufts Univ, Sch Med, Dept Integrat Physiol & Pathobiol, Boston, MA 02111 USA
关键词
food allergy; IgE; ILC2; mast cell; MAST-CELLS; INDUCED ANAPHYLAXIS; IL-4; INFLAMMATION; INDUCTION; BASOPHILS; HOSPITALIZATIONS; DIFFERENTIATION; INTERLEUKIN-13; SUSCEPTIBILITY;
D O I
10.1111/cea.13075
中图分类号
R392 [医学免疫学];
学科分类号
100102 ;
摘要
BackgroundMast cells serve an important sentinel function at mucosal barriers and have been implicated as key early inducers of type 2 immune responses in food allergy. The generation of Th2 and IgE following food allergen ingestion is inhibited in the absence of mast cells. Group 2 innate lymphoid cells are also thought to play an important early role in nascent allergic responses. ObjectiveTo test whether IgE-mediated mast cell activation promotes intestinal ILC2 responses following ingestion of food allergens and whether ILC2 amplify food allergy. MethodsTwo different mouse models of food allergy, one using intraperitoneally ovalbumin (OVA)-primed BALB/c animals and the other using enterally peanut-sensitized inherently atopic IL4raF709 mice, were applied to test the contributions of IgE antibodies and mast cells to ILC2 responses. The effect of ILC2 on mast cell activation and on anaphylaxis was tested. ResultsILC2 responses were significantly impaired in both models of food allergy in Igh7(-/-) mice harbouring a targeted deletion of the gene encoding IgE. A similar reduction in food allergen-induced ILC2 was observed in mast cell-deficient Il4raF709 Kit(W-sh) mice, and this was partially corrected by reconstituting these animals using cultured bone marrow mast cells. Mast cells activated ILC2 for IL-13 production in an IL-4R-dependent manner. Activated ILC2 amplified systemic anaphylaxis by increasing target tissue sensitivity to mast cell mediators. Conclusions and Clinical RelevanceThese findings support an important role for IgE-activated mast cells in driving intestinal ILC2 expansion in food allergy and reveal that ILC2, in turn, can enhance responsiveness to the mediators of anaphylaxis produced by mast cells. Strategies designed to inhibit IgE signalling or mast cell activation are likely to inhibit both type 2 immunity and immediate hypersensitivity in food allergy.
引用
收藏
页码:288 / 296
页数:9
相关论文
共 57 条
[1]   Intestinal Mast Cell Levels Control Severity of Oral Antigen-Induced Anaphylaxis in Mice [J].
Ahrens, Richard ;
Osterfeld, Heather ;
Wu, David ;
Chen, Chun-Yu ;
Arumugam, Muthuvel ;
Groschwitz, Katherine ;
Strait, Richard ;
Wang, Yui-Hsi ;
Finkelman, Fred D. ;
Hogan, Simon P. .
AMERICAN JOURNAL OF PATHOLOGY, 2012, 180 (04) :1535-1546
[2]   IL-1β, IL-4 and IL-12 control the fate of group 2 innate lymphoid cells in human airway inflammation in the lungs [J].
Bal, Suzanne M. ;
Bernink, Jochem H. ;
Nagasawa, Maho ;
Groot, Jelle ;
Shikhagaie, Medya M. ;
Golebski, Kornel ;
van Drunen, Cornelis M. ;
Lutter, Rene ;
Jonkers, Rene E. ;
Hombrink, Pleun ;
Bruchard, Melanie ;
Villaudy, Julien ;
Munneke, J. Marius ;
Fokkens, Wytske ;
Erjefalt, Jonas S. ;
Spits, Hergen ;
Ros, Xavier Romero .
NATURE IMMUNOLOGY, 2016, 17 (06) :636-+
[3]  
Brandt EB, 2003, J CLIN INVEST, V112, P1666, DOI 10.1172/JCI19785
[4]   Targeting IL-4/IL-13 signaling to alleviate oral allergen-induced diarrhea [J].
Brandt, Eric B. ;
Munitz, Ariel ;
Orekov, Tatyana ;
Mingler, Melissa K. ;
McBride, Melissa ;
Finkelman, Fred D. ;
Rothenberg, Marc E. .
JOURNAL OF ALLERGY AND CLINICAL IMMUNOLOGY, 2009, 123 (01) :53-58
[5]   Direct effects of IL-4 on mast cells drive their intestinal expansion and increase susceptibility to anaphylaxis in a murine model of food allergy [J].
Burton, O. T. ;
Darling, A. R. ;
Zhou, J. S. ;
Noval Rivas, Magali ;
Jones, T. G. ;
Gurish, M. F. ;
Chatila, T. A. ;
Oettgen, H. C. .
MUCOSAL IMMUNOLOGY, 2013, 6 (04) :740-750
[6]   Oral immunotherapy induces IgG antibodies that act through FcγRIIb to suppress IgE-mediated hypersensitivity [J].
Burton, Oliver T. ;
Logsdon, Stephanie L. ;
Zhou, Joseph S. ;
Medina-Tamayo, Jaciel ;
Abdel-Gadir, Azza ;
Noval Rivas, Magali ;
Koleoglou, Kyle J. ;
Chatila, Talal A. ;
Schneider, Lynda C. ;
Rachid, Rima ;
Umetsu, Dale T. ;
Oettgen, Hans C. .
JOURNAL OF ALLERGY AND CLINICAL IMMUNOLOGY, 2014, 134 (06) :1310-+
[7]   Immunoglobulin E Signal Inhibition during Allergen Ingestion Leads to Reversal of Established Food Allergy and Induction of Regulatory T Cells [J].
Burton, Oliver T. ;
Noval Rivas, Magali ;
Zhou, Joseph S. ;
Logsdon, Stephanie L. ;
Darling, Alanna R. ;
Koleoglou, Kyle J. ;
Roers, Axel ;
Houshyar, Hani ;
Crackower, Michael A. ;
Chatila, Talal A. ;
Oettgen, Hans C. .
IMMUNITY, 2014, 41 (01) :141-151
[8]   Innate lymphoid cells mediate influenza-induced airway hyper-reactivity independently of adaptive immunity [J].
Chang, Ya-Jen ;
Kim, Hye Young ;
Albacker, Lee A. ;
Baumgarth, Nicole ;
McKenzie, Andrew N. J. ;
Smith, Dirk E. ;
DeKruyff, Rosemarie H. ;
Umetsu, Dale T. .
NATURE IMMUNOLOGY, 2011, 12 (07) :631-U186
[9]   Induction of Interleukin-9-Producing Mucosal Mast Cells Promotes Susceptibility to IgE-Mediated Experimental Food Allergy [J].
Chen, Chun-Yu ;
Lee, Jee-Boong ;
Liu, Bo ;
Ohta, Shoichiro ;
Wang, Pin-Yi ;
Kartashov, Andrey V. ;
Mugge, Luke ;
Abonia, J. Pablo ;
Barski, Artem ;
Izuhara, Kenji ;
Rothenberg, Marc E. ;
Finkelman, Fred D. ;
Hogan, Simon P. ;
Wang, Yui-Hsi .
IMMUNITY, 2015, 43 (04) :788-802
[10]   T helper cell IL-4 drives intestinal Th2 priming to oral peanut antigen, under the control of OX40L and independent of innate-like lymphocytes [J].
Chu, D. K. ;
Mohammed-Ali, Z. ;
Jimenez-Saiz, R. ;
Walker, T. D. ;
Goncharova, S. ;
Llop-Guevara, A. ;
Kong, J. ;
Gordon, M. E. ;
Barra, N. G. ;
Gillgrass, A. E. ;
Van Seggelen, H. ;
Khan, W. I. ;
Ashkar, A. A. ;
Bramson, J. L. ;
Humbles, A. A. ;
Kolbeck, R. ;
Waserman, S. ;
Jordana, M. .
MUCOSAL IMMUNOLOGY, 2014, 7 (06) :1395-1404