[1] Ober C, Yao T C. The genetics of asthma and allergic disease:A 21st century perspective[J]. Immunol Rev, 2011, 242:10-30. [2] Settipane R A, Charnock D R. Epidemiology of rhinitis:allergic and nonallergic[J]. Clin Allergy Immunol, 2007, 19:23-34. [3] Shiina T, Inoko H, Kulski J K. An update of the hla genomic region, locus information and disease associations:2004[J]. Tissue Antigens, 2004, 64(6):631-649. [4] Gannage M, da Silva R B, Munz C. Antigen processing for mhc presentation via macroautophagy[J]. Methods Mol Biol, 2013, 960:473-488. [5] Murray J S, Madri J, Tite J, et al. Mhc control of CD4+ t cell subset activation[J]. J Exp Med, 1989, 170(6):2135-2140. [6] Cardaba B, Cortegano I, Florido F, et al. Genetic restrictions in olive pollen allergy[J]. J Allergy Clin Immunol, 2000, 105(2 Pt1):292-298. [7] D'Amato M, Picardi A, Menna T, et al. Hla-drb1* and allergy to parietaria:linkage and association analyses[J]. Hum Immunol, 1999, 60(12):1250-1258. [8] Senechal H, Geny S, Desvaux F X, et al. Genetics and specific immune response in allergy to birch pollen and food:evidence of a strong, positive association between atopy and the hla class ii allele hla-dr7[J]. J Allergy Clin Immunol, 1999, 104(2 Pt 1):395-401. [9] Stephan V, Kuehr J, Seibt A, et al. Genetic linkage of hla-class ii locus to mite-specific IgE immune responsiveness[J]. Clin Exp Allergy, 1999, 29(8):1049-1054. [10] Blumenthal M N. Positive association between hla-drb1*07 and specific ige responses to purified major allergens of D. pteronyssinus (Der p 1 and Der p 2)[J]. Ann Allergy Asthma Immunol, 2002, 88(2):147-149. [11] Zhang Y, Zhang L. Prevalence of allergic rhinitis in China[J]. Allergy Asthma Immunol Res, 2014, 6(2):105-113. [12] Pichavant M, Charbonnier A S, Taront S, et al. Asthmatic bronchial epithelium activated by the proteolytic allergen der p 1 increases selective dendritic cell recruitment[J]. J Allergy Clin Immunol, 2005, 115(4):771-778. [13] Potaczek D P, Kabesch M. Current concepts of IgE regulation and impact of genetic determinants[J]. Clin Exp Allergy, 2012, 42(6):852-871. [14] Movahedi M, Moin M, Gharagozlou M, et al. Association of hla class ii alleles with childhood asthma and total ige levels[J]. Iran J Allergy Asthma Immunol, 2008, 7(4):215-220. [15] Tokunaga K. Lessons from genome-wide search for disease-related genes with special reference to hla-disease associations[J]. Genes (Basel), 2014, 5(1):84-96. [16] Munthe-Kaas M C, Carlsen K L, Carlsen K H, et al. Hla dr-dq haplotypes and the tnfa-308 polymorphism:associations with asthma and allergy[J]. Allergy, 2007, 62(9):991-998. [17] Hu C, Hsu P N, Lin R H, et al. Hla dpb1*0201 allele is negatively associated with immunoglobulin e responsiveness specific for house dust mite allergens in taiwan[J]. Clin Exp Allergy, 2000, 30(4):538-545. [18] Kim Y K, Oh S Y, Oh H B, et al. Positive association between hla-drb1*07 and specific ige responses to purified major allergens of d. Pteronyssinus (der p 1 and der p 2)[J]. Ann Allergy Asthma Immunol, 2002, 88(2):170-174. [19] Wang M, Xing Z M, Yu D L, et al. Association between hla class Ⅱ locus and the susceptibility to artemisia pollen-induced allergic rhinitis in chinese population[J]. Otolaryngol Head Neck Surg, 2004, 130(2):192-196. [20] 中华耳鼻咽喉头颈外科杂志编辑委员会鼻科组,中华医学会耳鼻咽喉头颈外科学分会鼻科学组. 变应性鼻炎诊断和治疗指南(2015年,天津)[J]. 中华耳鼻咽喉头颈外科杂志, 2016, 51(1):6-24. [21] Lipponen K, Gombos Z, Kiviniemi M, et al. Effect of hla class i and class ii alleles on progression from autoantibody positivity to overt type 1 diabetes in children with risk-associated class Ⅱ genotypes[J]. Diabetes, 2010, 59(12):3253-3256. [22] de la Concha E G, Cavanillas M L, Cenit M C, et al. Drb1*03:01 haplotypes:differential contribution to multiple sclerosis risk and specific association with the presence of intrathecal IgM bands[J]. PLoS One, 2012, 7(2):e31018. [23] MacKay K, Eyre S, Myerscough A, et al. Whole-genome linkage analysis of rheumatoid arthritis susceptibility loci in 252 affected sibling pairs in the united kingdom[J]. Arthritis Rheum, 2002, 46(3):632-639. [24] Park H, Ahn K, Park M H, et al. The hla-drb1 polymorphism is associated with atopic dermatitis, but not egg allergy in korean children[J]. Allergy Asthma Immunol Res, 2012, 4(3):143-149. [25] Ober C, Hoffjan S. Asthma genetics 2006:the long and winding road to gene discovery[J]. Genes Immun, 2006, 7(2):95-100. [26] Bonnelykke K, Matheson M C, Pers T H, et al. Meta-analysis of genome-wide association studies identifies ten loci influencing allergic sensitization[J]. Nat Genet, 2013, 45(8):902-906. [27] Andiappan A K, Wang de Y, Anantharaman R, et al. Genome-wide association study for atopy and allergic rhinitis in a singapore chinese population[J]. PLoS One, 2011, 6(5):e19719. [28] Kim Y K, Oh H B, Oh S Y, et al. Hla-drb1*07 may have a susceptibility and drb1*04 a protective effect upon the development of a sensitization to house dust mite dermatophagoides pteronyssinus[J]. Clin Exp Allergy, 2001, 31(1):110-115. [29] Schmidt A H, Solloch U V, Pingel J, et al. High-resolution human leukocyte antigen allele and haplotype frequencies of the polish population based on 20,653 stem cell donors[J]. Hum Immunol, 2011, 72(7):558-565. [30] Verhoef A, Higgins J A, Thorpe C J, et al. Clonal analysis of the atopic immune response to the group 2 allergen of dermatophagoides spp.:identification of HLA-DR and-DQ restricted t cell epitopes[J]. Int Immunol, 1993, 5(12):1589-1597. [31] Higgins J A, Thorpe C J, Hayball J D, et al. Overlapping T-cell epitopes in the group I allergen of dermatophagoides species restricted by hla-dp and hla-dr class ii molecules[J]. J Allergy Clin Immunol, 1994, 93(5):891-899. |