Journal of Otolaryngology and Ophthalmology of Shandong University ›› 2019, Vol. 33 ›› Issue (1): 9-12.doi: 10.6040/j.issn.1673-3770.1.2018.019

• Invited Review • Previous Articles     Next Articles

Research progress of group Ⅱ innate lymphoid cells in the allergic rhinitis

Yinshi GUO*(),Hui LU   

  1. Department of Allergy & Immunology, Renji Hospital, School of Medicine, Shanghai Jiao Tong University, Shanghai 200127, China
  • Received:2017-10-08 Online:2019-01-20 Published:2019-01-28
  • Contact: Yinshi GUO E-mail:drguoyinshi@163.com
  • Supported by:
    2013国家临床重点专科建设项目;国家卫生计生委公益性行业科研专项(2015SQ00136)

Abstract:

Allergic rhinitis (AR) is an allergic respiratory inflammation. T helper type 2 (Th2) cell activation plays an important role in the mediation of the disease. AR involves the innate and adaptive immune systems. Type 2 innate lymphoid cells (ILC2s) are considered the innate counterparts of Th2 cells based on the cytokines they express. Accumulating evidence has demonstrated that innate immune cells function as homeostatic regulators in the body. ILC2s contribute to the pathology of allergic inflammatory diseases. Here, we review the characteristics of ILC2s and progress of research on the mechanism of AR.

Key words: Allergic rhinitis, Type 2 T helper cells, Group Ⅱ innate lymphoid cells

CLC Number: 

  • R562
1 Brożek JL , Bousquet J , Agache I , et al. Allergic Rhinitis and its Impact on Asthma (ARIA) guidelines-2016 revision[J]. J Allergy Clin Immunol, 2017, 140 (4): 950- 958.
doi: 10.1016/j.jaci.2017.03.050
2 Bernstein DI , Schwartz G , Bernstein JA . Allergic rhinitis: mechanisms and treatment[J]. Immunol Allergy Clin North Am, 2016, 36 (2): 261- 278.
doi: 10.1016/j.iac.2015.12.004
3 Eifan AO , Durham SR . Pathogenesis of rhinitis[J]. Clin Exp Allergy, 2016, 46 (9): 1139- 1151.
doi: 10.1111/cea.12780
4 Thiriou D , Morianos I , Xanthou G , et al. Innate immunity as the orchestrator of allergic airway inflammation and resolution in asthma[J]. Int Immunopharmacol, 2017, 48: 43- 54.
doi: 10.1016/j.intimp.2017.04.027
5 王静, 杨琨. 固有淋巴细胞研究进展[J]. 细胞与分子免疫学杂志, 2015, 31 (11): 1554- 1559.
doi: 10.13423/j.cnki.cjcmi.007566
6 Artis D , Spits H . The biology of innate lymphoid cells[J]. Nature, 2015, 517 (7534): 293- 301.
doi: 10.1038/nature14189
7 Kotas ME , Locksley RM . Why innate lymphoid cells?[J]. Immunity, 2018, 48 (6): 1081- 1090.
doi: 10.1016/j.immuni.2018.06.002
8 Yanagibashi T , Satoh M , Nagai Y , et al. Allergic diseases: From bench to clinic - Contribution of the discovery of interleukin-5[J]. Cytokine, 2017, 98: 59- 70.
doi: 10.1016/j.cyto.2016.11.011
9 Lloyd CM, Snelgrove RJ. Type 2 immunity: Expanding our view[J]. Sci Immunol, 2018, 3(25). pii: eaat1604. doi:10.1126/sciimmunol.aat1604.
10 马若愚, 郭婧, 汪洌. 固有淋巴细胞的发育与功能[J]. 生命科学, 2015, 27 (4): 417- 424.
doi: 10.13376/j.cbls/2015054
MA Ruoyu , GUO Jing , WANG Lie . The development and function of innate lymphoid cells[J]. Chinese Bulletin of Life Sciences, 2015, 27 (4): 417- 424.
doi: 10.13376/j.cbls/2015054
11 Bernink JH , Germar K , Spits H . The role of ILC2 in pathology of type 2 inflammatory diseases[J]. Curr Opin Immunol, 2014, 31: 115- 120.
doi: 10.1016/j.coi.2014.10.007
12 Dahlgren MW , Molofsky AB . All along the watchtower: group 2 innate lymphoid cells in allergic responses[J]. Curr Opin Immunol, 2018, 54: 13- 19.
doi: 10.1016/j.coi.2018.05.008
13 Martinez-Gonzalez I , Ghaedi M , Steer CA , et al. ILC2 memory: Recollection of previous activation[J]. Immunol Rev, 2018, 283 (1): 41- 53.
doi: 10.1111/imr.12643
14 Aron JL , Akbari O . Regulatory T cells and type 2 innate lymphoid cell-dependent asthma[J]. Allergy, 2017, 72 (8): 1148- 1155.
doi: 10.1111/all.13139
15 Shamji MH , Durham SR . Mechanisms of allergen immunotherapy for inhaled allergens and predictive biomarkers[J]. J Allergy Clin Immunol, 2017, 140 (6): 1485- 1498.
doi: 10.1016/j.jaci.2017.10.010
16 Dhariwal J , Edwards MR , Johnston SL , et al. Anti-viral agents: potential utility in exacerbations of asthma[J]. Curr Opin Pharmacol, 2013, 13 (3): 331- 336.
doi: 10.1016/j.coph.2013.04.010
17 Zhong H , Fan XL , Yu QN , et al. Increased innate type 2 immune response in house dust mite-allergic patients with allergic rhinitis[J]. Clin Immunol, 2017, 183: 293- 299.
doi: 10.1016/j.clim.2017.09.008
18 Bartemes KR , Kephart GM , Fox SJ , et al. Enhanced innate type 2 immune response in peripheral blood from patients with asthma[J]. J Allergy Clin Immunol, 2014, 134 (3): 671- 678.e4.
doi: 10.1016/j.jaci.2014.06.024
19 Matsushita K , Kato Y , Akasaki S , et al. Proallergic cytokines and group 2 innate lymphoid cells in allergic nasal diseases[J]. Allergol Int, 2015, 64 (3): 235- 240.
doi: 10.1016/j.alit.2014.12.008
20 Lin L , Dai F , Wei JJ , et al. Allergic inflammation is exacerbated by allergen-induced type 2 innate lymphoid cells in a murine model of allergic rhinitis[J]. Rhinology, 2017, 55 (4): 339- 347.
doi: 10.4193/Rhin17.065
21 Dhariwal J , Cameron A , Trujillo-Torralbo MB , et al. Mucosal type 2 innate lymphoid cells are a key component of the allergic response to aeroallergens[J]. Am J Respir Crit Care Med, 2017, 195 (12): 1586- 1596.
doi: 10.1164/rccm.201609-1846OC
22 Lao-Araya M , Steveling E , Scadding GW , et al. Seasonal increases in peripheral innate lymphoid type 2 cells are inhibited by subcutaneous grass pollen immunotherapy[J]. J Allergy Clin Immunol, 2014, 134 (5): 1193- 1195.e4.
doi: 10.1016/j.jaci.2014.07.029
23 Fan DC , Wang XD , Wang CS , et al. Suppression of immunotherapy on group 2 innate lymphoid cells in allergic rhinitis[J]. Chin Med J, 2016, 129 (23): 2824- 2828.
doi: 10.4103/0366-6999.194642
[1] LYU Qian, TANG Yuan, GU Zijun, SHI Sailei, LIU Ping, WAN Wenjin. Current status of benefit finding among patients with allergic rhinitis and its influence factors [J]. Journal of Otolaryngology and Ophthalmology of Shandong University, 2026, 40(1): 21-28.
[2] GU Min, LU Meiping. Advances in the application of nanomedicine delivery systems in allergen immunotherapy for allergic rhinitis [J]. Journal of Otolaryngology and Ophthalmology of Shandong University, 2026, 40(1): 106-111.
[3] QIN Nana, LI Yufen, SUN Yuhao, WEI Jian, LI Qin. Effect of interleukin-13 receptor-α2 on nasal mucosal remodeling in rats with allergic rhinitis by TGF-β1/Smad signaling pathway [J]. Journal of Otolaryngology and Ophthalmology of Shandong University, 2025, 39(6): 71-77.
[4] DU Kangli, ZHENG Zhenyu, XU Zhanjiang, ZHANG Yu, CHEN Lu, LU Mengyao. Construction and validation of risk prediction model for nasal septal deviation complicated with chronic sinusitis [J]. Journal of Otolaryngology and Ophthalmology of Shandong University, 2025, 39(6): 78-86.
[5] XIONG Qin, ZHANG Yan, WU Rina, LI Feng, TANG Lixing. Application of intranasal corticosteroids in pediatrics [J]. Journal of Otolaryngology and Ophthalmology of Shandong University, 2025, 39(6): 160-167.
[6] XU Xuemeng, FAN Lei, YU Wangbo, JIANG Zhiyue, PAN Chen, HUANG Yongqin. Meta-analysis of the efficacy of omalizumab in combination with specific immunotherapy for allergic rhinitis [J]. Journal of Otolaryngology and Ophthalmology of Shandong University, 2025, 39(5): 26-33.
[7] HUANG Huan, HUA Hongli, DENG Yuqin, JIANG Chengyang, WANG Yuwei, YANG Xinghai. Correlation of allergic rhinitis, tonsil adenoid hypertrophy, and sinusitis in children and analysis of its clinical guiding value [J]. Journal of Otolaryngology and Ophthalmology of Shandong University, 2025, 39(5): 34-41.
[8] LIU Yijun, GU Yue, GUAN Dayu, YANG Yucheng, SHEN Yang. The long-term clinical efficacy and safety of vidian neurectomy in refractory allergic rhinitis [J]. Journal of Otolaryngology and Ophthalmology of Shandong University, 2025, 39(5): 42-48.
[9] ZHANG Ting, WANG Meilan, GAO Yingqin. Research progress of IL-35 in allergic rhinitis [J]. Journal of Otolaryngology and Ophthalmology of Shandong University, 2025, 39(5): 139-147.
[10] ZHANG Zhuping, PENG Zican, XIAO Zhenlong, LI Cheng, YU Di, WANG Xinglong, CHEN Wei, Guo Bei. The value of a novel nasal secretion eosinophil cationic protein-myeloperoxidase test paper assay in allergic rhinitis [J]. Journal of Otolaryngology and Ophthalmology of Shandong University, 2025, 39(3): 129-134.
[11] LIU Chang, YANG Jingpu, GAO Yu, WANG Wenjia. Analysis of allergen detection results in children with allergic rhinitis in the Changchun area [J]. Journal of Otolaryngology and Ophthalmology of Shandong University, 2025, 39(2): 51-58.
[12] ZHOU Heqing, SHEN Qi. Research progress on biomarkers of traditional Chinese medicine in the treatment of allergic rhinitis [J]. Journal of Otolaryngology and Ophthalmology of Shandong University, 2025, 39(2): 168-176.
[13] WANG Manxian, ZHENG Quan, YANG Liang. Research progress in the treatment of allergic rhinitis with bacterial lysates [J]. Journal of Otolaryngology and Ophthalmology of Shandong University, 2025, 39(1): 141-145.
[14] LIU Chang, FANG Hongyan, LIU Xiao, FU Dongna, WANG He, WANG Jing, YANG Jingpu. Analysis of sensitization characteristics of Artemisia pollen in autumn allergic rhinitis in the Changchun area of China [J]. Journal of Otolaryngology and Ophthalmology of Shandong University, 2024, 38(5): 13-19.
[15] ZHANG Jie, CHEN Min, SHEN Zhengzheng, WU Yuhua, LIU Yuanhu, SUN Hao, TAN Xinhua, NI Shuren, YANG Shuxun, SHI Xuezheng, NI Xin. Study on the correlation between allergic rhinitis and coronavirus disease-2019 infection and symptoms in children [J]. Journal of Otolaryngology and Ophthalmology of Shandong University, 2024, 38(4): 36-42.
Viewed
Full text


Abstract

Cited

  Shared   
  Discussed   
No Suggested Reading articles found!