Allergic Rhinitis Clinical Trial
— SLITOfficial title:
Observation on the Efficacy of Sublingual Immunotherapy With Dust Mite Allergen for Perennial Allergic Rhinitis and the Mechanism of Action on ILCs With ILC1s and ILC2s and ILC3s
Allergic rhinitis is a common and recurrent ear, nose and throat (ENT) disease. It is a chronic or seasonal condition affecting 10% to 20% of the world's population. It is considered one of the most difficult diseases to treat globally and has become a major global health problem. SUblingual immunotherapy (SIT) is currently considered to be an effective pairings therapy that can alter the natural progression of allergic rhinitis through immunomodulatory mechanisms. Immunotherapy is more suitable for patients with moderate to severe intermittent or persistent allergic rhinitis, especially for those with poor drug treatment. This treatment can significantly reduce the severity of allergic rhinitis, reduce the use of allergy medications, and improve the quality of life for many patients. In the development of allergic rhinitis, the regulation of immune balance in Th1 / Th2 / Th17 cells is currently considered to be an important approach in the treatment of allergic rhinitis. But a growing body of evidence suggests that an intrinsic immune response is also the pathogenesis of allergic rhinitis. Innate lymphocytes are involved in mucosal immune formation, lymphocyte development, tissue damage repair and epithelial barrier protection, and play an important role in fighting infection, regulating inflammation and maintaining immune homeostasis. Three subsets of intrinsic lymphocytes (ILC1s, ILC2s, ILC3s) have been proposed to functionally approximate Th1, Th2, and Th17 in helper T lymphocytes (Th), but the results are inconclusive and the mechanism of ILCs role in AR progression is not fully elucidated. Therefore, the purpose of this study was to investigate the efficacy and mechanism of subglossal immunotherapy for perennial allergic rhinitis, and to reveal the correlation between ILCs (ILC1s, ILC2s, ILC3s) and Th1 / Th2 / Th17 cell immunity, and to provide a basis for clinical studies of allergic rhinitis.
Status | Not yet recruiting |
Enrollment | 60 |
Est. completion date | December 30, 2024 |
Est. primary completion date | December 31, 2023 |
Accepts healthy volunteers | No |
Gender | All |
Age group | 18 Years to 65 Years |
Eligibility | Inclusion Criteria: 1. Those who meet the above diagnostic criteria; 2. The course of disease is at least one year; 3. Over 18 years old to under 65 years old, both sexes; 4. Did not receive specific immunotherapy in the past 1 month or did not use any drugs for AR in the past 1 week; 5. Those with normal cognitive function agree to participate in this study and sign the informed consent form. Exclusion Criteria: 1. Those who do not meet the above diagnostic and inclusion criteria; 2. Patients with severe nasal septum deviation, chronic rhinosinusitis, bronchial asthma, nasal polyps, upper respiratory tract infection, lung infection and other diseases; 3. Patients with severe dysfunction of heart, liver, kidney or autoimmune diseases; 4. pregnant or lactating women; 5. Allergic constitution and allergic to the experimental drugs and ingredients; 6. Patients with drug addiction history; 7. Patients with major neuropsychiatric diseases who cannot take medication regularly; 8. Patients who are participating in other clinical trials. Patients who met any of the above criteria were excluded. |
Country | Name | City | State |
---|---|---|---|
China | Guangjun Tang | Anshan | Guizhou |
Lead Sponsor | Collaborator |
---|---|
People's Hospital of Anshun City of Guizhou Province |
China,
Alvarez-Cuesta E, Bousquet J, Canonica GW, Durham SR, Malling HJ, Valovirta E; EAACI, Immunotherapy Task Force. Standards for practical allergen-specific immunotherapy. Allergy. 2006;61 Suppl 82:1-20. — View Citation
Asaka D, Yoshikawa M, Nakayama T, Yoshimura T, Moriyama H, Otori N. Elevated levels of interleukin-33 in the nasal secretions of patients with allergic rhinitis. Int Arch Allergy Immunol. 2012;158 Suppl 1:47-50. doi: 10.1159/000337764. Epub 2012 May 15. — View Citation
Bartemes KR, Kephart GM, Fox SJ, Kita H. Enhanced innate type 2 immune response in peripheral blood from patients with asthma. J Allergy Clin Immunol. 2014 Sep;134(3):671-678.e4. doi: 10.1016/j.jaci.2014.06.024. — View Citation
Bauchau V, Durham SR. Prevalence and rate of diagnosis of allergic rhinitis in Europe. Eur Respir J. 2004 Nov;24(5):758-64. — View Citation
Bousquet J, Anto JM, Bachert C, Baiardini I, Bosnic-Anticevich S, Walter Canonica G, Melén E, Palomares O, Scadding GK, Togias A, Toppila-Salmi S. Allergic rhinitis. Nat Rev Dis Primers. 2020 Dec 3;6(1):95. doi: 10.1038/s41572-020-00227-0. Review. — View Citation
Bousquet J, Khaltaev N, Cruz AA, Denburg J, Fokkens WJ, Togias A, Zuberbier T, Baena-Cagnani CE, Canonica GW, van Weel C, Agache I, Aït-Khaled N, Bachert C, Blaiss MS, Bonini S, Boulet LP, Bousquet PJ, Camargos P, Carlsen KH, Chen Y, Custovic A, Dahl R, D — View Citation
Bozek A, Kolodziejczyk K, Kozlowska R, Canonica GW. Evidence of the efficacy and safety of house dust mite subcutaneous immunotherapy in elderly allergic rhinitis patients: a randomized, double-blind placebo-controlled trial. Clin Transl Allergy. 2017 Dec — View Citation
Brown V, Warke TJ, Shields MD, Ennis M. T cell cytokine profiles in childhood asthma. Thorax. 2003 Apr;58(4):311-6. — View Citation
Brozek JL, Bousquet J, Agache I, Agarwal A, Bachert C, Bosnic-Anticevich S, Brignardello-Petersen R, Canonica GW, Casale T, Chavannes NH, Correia de Sousa J, Cruz AA, Cuello-Garcia CA, Demoly P, Dykewicz M, Etxeandia-Ikobaltzeta I, Florez ID, Fokkens W, F — View Citation
Brozek JL, Bousquet J, Baena-Cagnani CE, Bonini S, Canonica GW, Casale TB, van Wijk RG, Ohta K, Zuberbier T, Schünemann HJ; Global Allergy and Asthma European Network; Grading of Recommendations Assessment, Development and Evaluation Working Group. Allerg — View Citation
Canonica GW, Cox L, Pawankar R, Baena-Cagnani CE, Blaiss M, Bonini S, Bousquet J, Calderón M, Compalati E, Durham SR, van Wijk RG, Larenas-Linnemann D, Nelson H, Passalacqua G, Pfaar O, Rosário N, Ryan D, Rosenwasser L, Schmid-Grendelmeier P, Senna G, Val — View Citation
Ciprandi G, Filaci G, Battaglia F, Fenoglio D. Peripheral Th-17 cells in allergic rhinitis: New evidence. Int Immunopharmacol. 2010 Feb;10(2):226-9. doi: 10.1016/j.intimp.2009.11.004. Epub 2009 Nov 16. — View Citation
Cox L, Nelson H, Lockey R, Calabria C, Chacko T, Finegold I, Nelson M, Weber R, Bernstein DI, Blessing-Moore J, Khan DA, Lang DM, Nicklas RA, Oppenheimer J, Portnoy JM, Randolph C, Schuller DE, Spector SL, Tilles S, Wallace D. Allergen immunotherapy: a pr — View Citation
Fan D, Wang X, Wang M, Wang Y, Zhang L, Li Y, Fan E, Cao F, Van Crombruggen K, Zhang L. Allergen-Dependent Differences in ILC2s Frequencies in Patients With Allergic Rhinitis. Allergy Asthma Immunol Res. 2016 May;8(3):216-22. doi: 10.4168/aair.2016.8.3.21 — View Citation
Gidaro GB, Marcucci F, Sensi L, Incorvaia C, Frati F, Ciprandi G. The safety of sublingual-swallow immunotherapy: an analysis of published studies. Clin Exp Allergy. 2005 May;35(5):565-71. Review. — View Citation
Glück J, Rogala B, Mazur B. Intracellular production of IL-2, IL-4 and IFN-gamma by peripheral blood CD3+ cells in intermittent allergic rhinitis. Inflamm Res. 2005 Feb;54(2):91-5. — View Citation
Greiner AN, Hellings PW, Rotiroti G, Scadding GK. Allergic rhinitis. Lancet. 2011 Dec 17;378(9809):2112-22. doi: 10.1016/S0140-6736(11)60130-X. Epub 2011 Jul 23. Review. — View Citation
Grossman J. One airway, one disease. Chest. 1997 Feb;111(2 Suppl):11S-16S. Review. — View Citation
Hirahara K, Nakayama T. CD4+ T-cell subsets in inflammatory diseases: beyond the Th1/Th2 paradigm. Int Immunol. 2016 Apr;28(4):163-71. doi: 10.1093/intimm/dxw006. Epub 2016 Feb 12. Review. — View Citation
Jerzynska J, Stelmach W, Rychlik B, Lechanska J, Podlecka D, Stelmach I. The clinical effect of vitamin D supplementation combined with grass-specific sublingual immunotherapy in children with allergic rhinitis. Allergy Asthma Proc. 2016 Mar-Apr;37(2):105 — View Citation
Ke X, Shen Y, Hu X, Yuan XD, Kang HY, Wang XQ, Hong SL. [Association between IL-27 gene polymorphisms and susceptibility to allergic rhinitis]. Lin Chung Er Bi Yan Hou Tou Jing Wai Ke Za Zhi. 2016 May 5;30(9):684-688. doi: 10.13201/j.issn.1001-1781.2016.0 — View Citation
Kenney P, Hilberg O, Laursen AC, Peel RG, Sigsgaard T. Preventive effect of nasal filters on allergic rhinitis: A randomized, double-blind, placebo-controlled crossover park study. J Allergy Clin Immunol. 2015 Dec;136(6):1566-1572.e5. doi: 10.1016/j.jaci. — View Citation
Khinchi MS, Poulsen LK, Carat F, André C, Hansen AB, Malling HJ. Clinical efficacy of sublingual and subcutaneous birch pollen allergen-specific immunotherapy: a randomized, placebo-controlled, double-blind, double-dummy study. Allergy. 2004 Jan;59(1):45- — View Citation
Lombardi V, Beuraud C, Neukirch C, Moussu H, Morizur L, Horiot S, Luce S, Wambre E, Linsley P, Chollet-Martin S, Baron-Bodo V, Aubier M, Moingeon P. Circulating innate lymphoid cells are differentially regulated in allergic and nonallergic subjects. J All — View Citation
Marogna M, Spadolini I, Massolo A, Canonica GW, Passalacqua G. Randomized controlled open study of sublingual immunotherapy for respiratory allergy in real-life: clinical efficacy and more. Allergy. 2004 Nov;59(11):1205-10. — View Citation
Marshall JS, Warrington R, Watson W, Kim HL. An introduction to immunology and immunopathology. Allergy Asthma Clin Immunol. 2018 Sep 12;14(Suppl 2):49. doi: 10.1186/s13223-018-0278-1. eCollection 2018. Review. — View Citation
Ren M, Tang Q, Chen F, Xing X, Huang Y, Tan X. Mahuang Fuzi Xixin Decoction Attenuates Th1 and Th2 Responses in the Treatment of Ovalbumin-Induced Allergic Inflammation in a Rat Model of Allergic Rhinitis. J Immunol Res. 2017;2017:8254324. doi: 10.1155/20 — View Citation
Schwetz S, Olze H, Melchisedech S, Grigorov A, Latza R. Efficacy of pollen blocker cream in the treatment of allergic rhinitis. Arch Otolaryngol Head Neck Surg. 2004 Aug;130(8):979-84. — View Citation
Seidman MD, Gurgel RK, Lin SY, Schwartz SR, Baroody FM, Bonner JR, Dawson DE, Dykewicz MS, Hackell JM, Han JK, Ishman SL, Krouse HJ, Malekzadeh S, Mims JW, Omole FS, Reddy WD, Wallace DV, Walsh SA, Warren BE, Wilson MN, Nnacheta LC; Guideline Otolaryngolo — View Citation
Spits H, Artis D, Colonna M, Diefenbach A, Di Santo JP, Eberl G, Koyasu S, Locksley RM, McKenzie AN, Mebius RE, Powrie F, Vivier E. Innate lymphoid cells--a proposal for uniform nomenclature. Nat Rev Immunol. 2013 Feb;13(2):145-9. doi: 10.1038/nri3365. Re — View Citation
Spits H, Cupedo T. Innate lymphoid cells: emerging insights in development, lineage relationships, and function. Annu Rev Immunol. 2012;30:647-75. doi: 10.1146/annurev-immunol-020711-075053. Epub 2012 Jan 6. Review. — View Citation
Vivier E, Artis D, Colonna M, Diefenbach A, Di Santo JP, Eberl G, Koyasu S, Locksley RM, McKenzie ANJ, Mebius RE, Powrie F, Spits H. Innate Lymphoid Cells: 10 Years On. Cell. 2018 Aug 23;174(5):1054-1066. doi: 10.1016/j.cell.2018.07.017. Review. — View Citation
Wang H, Mobini R, Fang Y, Barrenäs F, Zhang H, Xiang Z, Benson M. Allergen challenge of peripheral blood mononuclear cells from patients with seasonal allergic rhinitis increases IL-17RB, which regulates basophil apoptosis and degranulation. Clin Exp Alle — View Citation
Xu G, Zhang L, Wang DY, Xu R, Liu Z, Han DM, Wang XD, Zuo KJ, Li HB. Opposing roles of IL-17A and IL-25 in the regulation of TSLP production in human nasal epithelial cells. Allergy. 2010 May;65(5):581-9. doi: 10.1111/j.1398-9995.2009.02252.x. Epub 2009 N — View Citation
Yagi R, Zhong C, Northrup DL, Yu F, Bouladoux N, Spencer S, Hu G, Barron L, Sharma S, Nakayama T, Belkaid Y, Zhao K, Zhu J. The transcription factor GATA3 is critical for the development of all IL-7Ra-expressing innate lymphoid cells. Immunity. 2014 Mar 2 — View Citation
Zhang HL, Zheng XY, Zhu J. Th1/Th2/Th17/Treg cytokines in Guillain-Barré syndrome and experimental autoimmune neuritis. Cytokine Growth Factor Rev. 2013 Oct;24(5):443-53. doi: 10.1016/j.cytogfr.2013.05.005. Epub 2013 Jun 21. Review. — View Citation
Zhang YT, Zhang X, Li PZ. [Comparison of PedsQL™4.0 and RQLQ scales in the assessment of the quality of life in children with allergic rhinitis]. Lin Chung Er Bi Yan Hou Tou Jing Wai Ke Za Zhi. 2017 Jan;31(1):27-29. doi: 10.13201/j.issn.1001-1781.2017.01. — View Citation
Zhong H, Fan XL, Yu QN, Qin ZL, Chen D, Xu R, Chen DH, Lin ZB, Wen W, Fu QL. Increased innate type 2 immune response in house dust mite-allergic patients with allergic rhinitis. Clin Immunol. 2017 Oct;183:293-299. doi: 10.1016/j.clim.2017.09.008. Epub 201 — View Citation
Zou XL, Chen ZG, Zhang TT, Feng DY, Li HT, Yang HL. Th17/Treg homeostasis, but not Th1/Th2 homeostasis, is implicated in exacerbation of human bronchial asthma. Ther Clin Risk Manag. 2018 Sep 6;14:1627-1636. doi: 10.2147/TCRM.S172262. eCollection 2018. — View Citation
* Note: There are 39 references in all — Click here to view all references
Type | Measure | Description | Time frame | Safety issue |
---|---|---|---|---|
Primary | Change in total nasal symptom score scale | The total nasal symptom score scale will be collected. | Baseline, 1 month, 3 months | |
Primary | Change in Visual analogue scale | Visual analogue scale will be collected. | Baseline, 1 month, 3 months | |
Primary | Change in the quality by life questionnaire of rhinoconjunctivitis | Quality of life questionnaire of rhinoconjunctivitis will be collected. | Baseline, 1 month, 3 months | |
Primary | Change in the Serum levels of IgE | Serum samples will be collected the levels of IgE | Baseline, 1 month, 3 months | |
Primary | Change in the Serum levels of IFN-? | Serum samples will be collected the levels of IFN-?. | Baseline, 1 month, 3 months | |
Primary | Change in the Serum levels of IL-4 | Serum samples will be collected the levels of IL-4. | Baseline, 1 month, 3 months | |
Primary | Change in the Serum levels of IL-17 | Serum samples will be collected the levels of IL-17. | Baseline, 1 month, 3 months | |
Primary | Change in the Serum levels of TNF-a | Serum samples will be collected the levels of TNF-a. | Baseline, 1 month, 3 months | |
Primary | Change in the Serum levels of IL-5 | Serum samples will be collected the levels of IL-5. | Baseline, 1 month, 3 months | |
Primary | Change in the Serum levels of IL-9 | Serum samples will be collected the levels of IL-9. | Baseline, 1 month, 3 months | |
Primary | Change in the Serum levels of IL-13 | Serum samples will be collected the levels of IL-13. | Baseline, 1 month, 3 months | |
Primary | Change in the Serum levels of IL-25 | Serum samples will be collected the levels of IL-25. | Baseline, 1 month, 3 months | |
Primary | Change in the Serum levels of IL-33 | Serum samples will be collected the levels of IL-33. | Baseline, 1 month, 3 months | |
Primary | Change in the Serum levels of VEGF | Serum samples will be collected the levels of VEGF. | Baseline, 1 month, 3 months | |
Primary | Change in the Serum levels of TSLP | Serum samples will be collected the levels of TSLP. | Baseline, 1 month, 3 months | |
Primary | Change in the Serum levels of IL-22 | Serum samples will be collected the levels of IL-22. | Baseline, 1 month, 3 months | |
Secondary | To reveal the correlation between ILCs (ILC1s, ILC2s, ILC3s) and Th1 / Th2 / Th17 cell immunity | To reveal the correlation between ILCs (ILC1s, ILC2s, ILC3s) and Th1 / Th2 / Th17 cell immunity
To explore the efficacy and mechanism of sublingual desensitization in the treatment of perennial allergic rhinitis, and to reveal the correlation between ILCs(ILC1s, ILC2s, ILC3s) and Th1 / Th2 / Th17 cell immunity |
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