[1] |
BLUESTONE J A. Mechanisms of tolerance[J]. Immunological Reviews, 2011, 241(1):5-19.
doi: 10.1111/j.1600-065X.2011.01019.x
pmid: 21488886
|
[2] |
GIARDINO G, GALLO V, PRENCIPE R, et al. Unbalanced immune system:Immunodeficiencies and autoimmunity[J]. Frontiers in Pediatrics, 2016, 4:107.
|
[3] |
COX L. The role of allergen immunotherapy in the management of allergic rhinitis[J]. American Journal of Rhinology and Allergy, 2016, 30(1):48-53.
doi: 10.2500/ajra.2016.30.4253
pmid: 26867530
|
[4] |
WARREN C M, JIANG J L, GUPTA R S. Epidemiology and burden of food allergy[J]. Current Allergy and Asthma Reports, 2020, 20(2):6.
doi: 10.1007/s11882-020-0898-7
pmid: 32067114
|
[5] |
BRUNELLO L. Atopic dermatitis[J]. Nature Reviews Disease Primers, 2018, 4(1):2.
doi: 10.1038/s41572-018-0004-9
pmid: 29930279
|
[6] |
CHONG K W, RUIZ-GARCIA M, PATEL N, et al. Reaction phenotypes in IgE-mediated food allergy and anaphylaxis[J]. Annals of Allergy Asthma and Immunology, 2020, 124(5):473-478.
doi: S1081-1206(19)31530-3
pmid: 31923546
|
[7] |
FLEMING L, HEANEY L. Severe asthma-perspectives from adult and pediatric pulmonology[J]. Frontiers in Pediatrics, 2019, 7:389.
doi: 10.3389/fped.2019.00389
pmid: 31649906
|
[8] |
KOUZAKI H, ARIKATA M, KOJI M, et al. Dynamic change of anti-inflammatory cytokine IL-35 in allergen immune therapy for Japanese cedar pollinosis[J]. Allergy, 2019, 75(4):981-983.
doi: 10.1111/all.v75.4
|
[9] |
HARJUNPAA H, GUILLEREY C. TIGIT as an emerging immune checkpoint[J]. Clinical and Experimental Immunology, 2019, 200(2):108-119.
doi: 10.1111/cei.13407
|
[10] |
BABA Y, SASITO Y, KOTETSU Y. Heterogeneous subsets of B-lineage regulatory cells (Breg cells)[J]. International Immunology, 2020, 32(3):155-162.
doi: 10.1093/intimm/dxz068
pmid: 31630184
|
[11] |
BOONPIYATHAD T, VAN De VEEN W, WIRZ O, et al. Role of Der p 1-specific B cells in immune tolerance during 2 years of house dust mite-specific immunotherapy[J]. Journal of Allergy and Clinical Immunology, 2019, 143(3):1077-1086.
doi: 10.1016/j.jaci.2018.10.061
|
[12] |
ORENGO J M, RADIN A R, KAMAT V, et al. Treating cat allergy with monoclonal IgG antibodies that bind allergen and prevent IgE engagement[J]. Nature Communications, 2018, 9(1):1421.
doi: 10.1038/s41467-018-03636-8
pmid: 29650949
|
[13] |
SIRVENT S, SORIA I, CIRAUQUI C, et al. Novel vaccines targeting dendritic cells by coupling allergoids to nonoxidized mannan enhance allergen uptake and induce functional regulatory T cells through programmed death ligand 1[J]. Journal of Allergy and Clinical Immunology, 2016, 138(2):121-129.
|
[14] |
LI T T, WU J, ZHU S, et al. A novel C type CpG oligodeoxynucleotide exhibits immunostimulatory activity in vitro and enhances antitumor effect in vivo[J]. Frontiers in Pharmacology, 2020, 11:8.
doi: 10.3389/fphar.2020.00008
|
[15] |
ZHOU Y F, FANG L, PENG L S. TLR9 and its signaling pathway in multiple sclerosis[J]. Journal of the Neurological Sciences, 2017, 373:95-99.
doi: S0022-510X(16)30821-8
pmid: 28131238
|
[16] |
HU W, JAIN A, GAO Y J, et al. Differential outcome of TRIF-mediated signaling in TLR4 and TLR3 induced DC maturation[J]. Proceedings of the National Academy of Sciences of the United States of America, 2015, 112(45):13994-13999.
doi: 10.1073/pnas.1510760112
pmid: 26508631
|
[17] |
HUHTA H, HELMINEN O, KAUPPILA J H, et al. The expression of toll-like receptors in normal human and murine gastrointestinal organs and the effect of microbiome and cancer[J]. Journal of Histochemistry and Cytochemistry, 2016, 64(8):470-482.
doi: 10.1369/0022155416656154
pmid: 27370795
|
[18] |
MANANGEESWARAN M, LEWKOWICZ A P, ISRAELY T, et al. CpG oligonucleotides protect mice from alphavirus encephalitis:Role of NK cells,interferons,and TNF[J]. Frontiers in Immunology, 2020, 11:237.
doi: 10.3389/fimmu.2020.00237
|
[19] |
GUDJONSON H, PRITYKIN Y, DEEP D, et al. Transcriptional basis of mouse and human dendritic cell heterogeneity[J]. Cell, 2019, 179(4):846-863.
doi: S0092-8674(19)31116-X
pmid: 31668803
|
[20] |
FUCIKOVA J, PALOVA-JELINKOVA L, BARTUNKOVA J. Induction of tolerance and immunity by dendritic cells:Mechanisms and clinical applications[J]. Frontiers in Immunology, 2019, 10:2393.
doi: 10.3389/fimmu.2019.02393
|
[21] |
AUDIGER C, RAHMAN M J, YUN T J, et al. The importance of dendritic cells in maintaining immune tolerance[J]. The Journal of Immunology, 2017, 198(6):2223-2231.
|
[22] |
MIROTTI L, ALBERCA C R W, GOMES E, et al. CpG-ODN shapes Alum adjuvant activity signaling via MyD88 and IL-10[J]. Frontiers in Immunology, 2017, 8:47.
|
[23] |
KONKEL J E, ZHANG D, ZANVIT P, et al. Transforming growth factor-beta signaling in regulatory T Cells controls T helper-17 cells and tissue-specific immune responses[J]. Immunity, 2017, 46(4):660-674.
doi: 10.1016/j.immuni.2017.03.015
|
[24] |
DUPAGE M, BLUESTONE J A. Harnessing the plasticity of CD4+ T cells to treat immune-mediated disease[J]. Nature Reviews Immunology, 2016, 16(3):149-163.
doi: 10.1038/nri.2015.18
|
[25] |
WANG M, TAN G, ELJASZEWICZ A, et al. Laundry detergents and detergent residue after rinsing directly disrupt tight junction barrier integrity in human bronchial epithelial cells[J]. Journal of Allergy and Clinical Immunology, 2019, 143(5):1892-1903.
doi: 10.1016/j.jaci.2018.11.016
|
[26] |
SCHLEIMER R P, BERDNIKOVS S. Etiology of epithelial barrier dysfunction in patients with type 2 inflammatory diseases[J]. Journal of Allergy and Clinical Immunology, 2017, 139(6):1752-1761.
doi: 10.1016/j.jaci.2017.04.010
|
[27] |
KUBO T, WAWRZYNIAK P, MORITA H, et al. CpG DNA enhances the tight junction integrity of the bronchial epithelial cell barrier[J]. Journal of Allergy and Clinical Immunology, 2015, 136(5):1413-1416.
doi: 10.1016/j.jaci.2015.05.006
|