Literature DB >> 21998459

High expression of IL-22 suppresses antigen-induced immune responses and eosinophilic airway inflammation via an IL-10-associated mechanism.

Kazuyuki Nakagome1, Mitsuru Imamura, Kimito Kawahata, Hiroaki Harada, Katsuhide Okunishi, Taku Matsumoto, Oh Sasaki, Ryoichi Tanaka, Mitsunobu R Kano, He Chang, Haruo Hanawa, Jun-ichi Miyazaki, Kazuhiko Yamamoto, Makoto Dohi.   

Abstract

Allergic inflammation in the airway is generally considered a Th2-type immune response. However, Th17-type immune responses also play important roles in this process, especially in the pathogenesis of severe asthma. IL-22 is a Th17-type cytokine and thus might play roles in the development of allergic airway inflammation. There is increasing evidence that IL-22 can act as a proinflammatory or anti-inflammatory cytokine depending on the inflammatory context. However, its role in Ag-induced immune responses is not well understood. This study examined whether IL-22 could suppress allergic airway inflammation and its mechanism of action. BALB/c mice were sensitized and challenged with OVA-Ag to induce airway inflammation. An IL-22-producing plasmid vector was delivered before the systemic sensitization or immediately before the airway challenge. Delivery of the IL-22 gene before sensitization, but not immediately before challenge, suppressed eosinophilic airway inflammation. IL-22 gene delivery suppressed Ag-induced proliferation and overall cytokine production in CD4(+) T cells, indicating that it could suppress Ag-induced T cell priming. Antagonism of IL-22 by IL-22-binding protein abolished IL-22-induced immune suppression, suggesting that IL-22 protein itself played an essential role. IL-22 gene delivery neither increased regulatory T cells nor suppressed dendritic cell functions. The suppression by IL-22 was abolished by deletion of the IL-10 gene or neutralization of the IL-10 protein. Finally, IL-22 gene delivery increased IL-10 production in draining lymph nodes. These findings suggested that IL-22 could have an immunosuppressive effect during the early stage of an immune response. Furthermore, IL-10 plays an important role in the immune suppression by IL-22.

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Year:  2011        PMID: 21998459     DOI: 10.4049/jimmunol.1001560

Source DB:  PubMed          Journal:  J Immunol        ISSN: 0022-1767            Impact factor:   5.422


  34 in total

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Authors:  Michael Bonelli; Han-Yu Shih; Kiyoshi Hirahara; Kentner Singelton; Arian Laurence; Amanda Poholek; Tim Hand; Yohei Mikami; Golnaz Vahedi; Yuka Kanno; John J O'Shea
Journal:  Curr Top Microbiol Immunol       Date:  2014       Impact factor: 4.291

2.  A critical role for donor-derived IL-22 in cutaneous chronic GVHD.

Authors:  Kate H Gartlan; Hemamalini Bommiasamy; Katelyn Paz; Andrew N Wilkinson; Mary Owen; Dawn K Reichenbach; Tatjana Banovic; Kimberly Wehner; Faith Buchanan; Antiopi Varelias; Rachel D Kuns; Karshing Chang; Yuri Fedoriw; Thomas Shea; James Coghill; Michael Zaiken; Maximilian W Plank; Paul S Foster; Andrew D Clouston; Bruce R Blazar; Jonathan S Serody; Geoffrey R Hill
Journal:  Am J Transplant       Date:  2017-10-24       Impact factor: 8.086

3.  Expression of interleukin-22 and its significance in the pathogenesis of chronic rhinosinusitis.

Authors:  Xin Wang; Mi Gao; Yuan Xu; Huamin Guo; Chunyuan Zhao
Journal:  Int J Clin Exp Pathol       Date:  2014-08-15

4.  Interleukin-22 Immunotherapy during Severe Influenza Enhances Lung Tissue Integrity and Reduces Secondary Bacterial Systemic Invasion.

Authors:  Ronan Le Goffic; François Trottein; Adeline Barthelemy; Valentin Sencio; Daphnée Soulard; Lucie Deruyter; Christelle Faveeuw
Journal:  Infect Immun       Date:  2018-06-21       Impact factor: 3.441

5.  T cell activation threshold regulated by E3 ubiquitin ligase Cbl-b determines fate of inducible regulatory T cells.

Authors:  Guilin Qiao; Yixia Zhao; Zhenping Li; Peter Q Tang; Wallace Y Langdon; Tianlan Yang; Jian Zhang
Journal:  J Immunol       Date:  2013-06-07       Impact factor: 5.422

Review 6.  Interleukin-22: immunobiology and pathology.

Authors:  Jarrod A Dudakov; Alan M Hanash; Marcel R M van den Brink
Journal:  Annu Rev Immunol       Date:  2015-02-11       Impact factor: 28.527

7.  IL-22 is essential for lung epithelial repair following influenza infection.

Authors:  Derek A Pociask; Erich V Scheller; Sivanarayana Mandalapu; Kevin J McHugh; Richard I Enelow; Cheryl L Fattman; Jay K Kolls; John F Alcorn
Journal:  Am J Pathol       Date:  2013-03-11       Impact factor: 4.307

Review 8.  Key mediators in the immunopathogenesis of allergic asthma.

Authors:  Sannette Hall; Devendra K Agrawal
Journal:  Int Immunopharmacol       Date:  2014-06-13       Impact factor: 4.932

9.  Interleukin-22 reduces lung inflammation during influenza A virus infection and protects against secondary bacterial infection.

Authors:  Stoyan Ivanov; Joelle Renneson; Josette Fontaine; Adeline Barthelemy; Christophe Paget; Elodie Macho Fernandez; Fany Blanc; Carl De Trez; Laurye Van Maele; Laure Dumoutier; Michel-René Huerre; Gérard Eberl; Mustapha Si-Tahar; Pierre Gosset; Jean Christophe Renauld; Jean Claude Sirard; Christelle Faveeuw; François Trottein
Journal:  J Virol       Date:  2013-04-17       Impact factor: 5.103

10.  Interleukin-22 reduces the severity of collagen-induced arthritis in association with increased levels of interleukin-10.

Authors:  Sujata Sarkar; Xiaoqun Zhou; Shivali Justa; Swaroopa Rani Bommireddy
Journal:  Arthritis Rheum       Date:  2013-04
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