交通相关空气污染与变应性鼻炎

刘果, 刘世喜. 交通相关空气污染与变应性鼻炎[J]. 临床耳鼻咽喉头颈外科杂志, 2018, 32(2): 153-156. doi: 10.13201/j.issn.1001-1781.2018.02.018
引用本文: 刘果, 刘世喜. 交通相关空气污染与变应性鼻炎[J]. 临床耳鼻咽喉头颈外科杂志, 2018, 32(2): 153-156. doi: 10.13201/j.issn.1001-1781.2018.02.018
LIU Guo, LIU Shixi. Traffic-related air pollution and allergic rhinitis[J]. J Clin Otorhinolaryngol Head Neck Surg, 2018, 32(2): 153-156. doi: 10.13201/j.issn.1001-1781.2018.02.018
Citation: LIU Guo, LIU Shixi. Traffic-related air pollution and allergic rhinitis[J]. J Clin Otorhinolaryngol Head Neck Surg, 2018, 32(2): 153-156. doi: 10.13201/j.issn.1001-1781.2018.02.018

交通相关空气污染与变应性鼻炎

  • 基金项目:

    四川省卫生和计划生育委员会科研课题(No:17PJ530)

详细信息
    通讯作者: 刘世喜,E-mail:liushixi1312@163.com
  • 中图分类号: R765.21

Traffic-related air pollution and allergic rhinitis

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  • [1]

    CARLSTEN C, RIDER C F.Traffic-related air pollution and allergic disease:an update in the context of global urbanization[J].Curr Opin Allergy Clin Immunol, 2017, 17:85-89.

    [2]

    BRANDT E B, MYERS J M, RYAN P H, et al.Air pollution and allergic diseases[J].Curr Opin Pediatr, 2015, 27:724-735.

    [3]

    JUNG D Y, LEEM J H, KIM H C, et al.Effect of traffic-related air pollution on allergic disease:results of the children's health and environmental research[J].Allergy Asthma Immunol Res, 2015, 7:359-366.

    [4]

    POREBSKI G, WOZNIAK M, CZARNOBILSKA E.Residential proximity to major roadways is associated with increased prevalence of allergic respiratory symptoms in children[J].Ann Agric Environ Med, 2014, 21:760-766.

    [5]

    SHIRINDE J, WICHMANN J, VOYI K.Allergic rhinitis, rhinoconjunctivitis and hayfever symptoms among children are associated with frequency of truck traffic near residences:a cross sectional study[J].Environ Health, 2015, 14:84.

    [6]

    CODISPOTI C D, LEMASTERS G K, LEVIN L, et al.Traffic pollution is associated with early childhood aeroallergen sensitization[J].Ann Allergy Asthma Immunol, 2015, 114:126-133.

    [7]

    DENG Q, LU C, YU Y, et al.Early life exposure to traffic-related air pollution and allergic rhinitis in preschool children[J].Respir Med, 2016, 121:67-73.

    [8]

    DENG Q, LU C, LI Y, et al.Exposure to outdoor air pollution during trimesters of pregnancy and childhood asthma, allergic rhinitis, and eczema[J].Environ Res, 2016, 150:119-127.

    [9]

    TENG B, ZHANG X, YI C, et al.The association between ambient air pollution and allergic rhinitis:further epidemiological evidence from Changchun, Northeastern China[J].Int J Environ Res Public Health, 2017, 14.

    [10]

    WANG I J, TUNG T H, TANG C S, et al.Allergens, air pollutants, and childhood allergic diseases[J].Int J Hyg Environ Health, 2016, 219:66-71.

    [11]

    ACCIANI T H, BRANDT E B, KHURANA H G, et al.Diesel exhaust particle exposure increases severity of allergic asthma in young mice[J].Clin Exp Allergy, 2013, 43:1406-1418.

    [12]

    CHUNG H Y, HSIEH C J, TSENG C C, et al.Association between the first occurrence of allergic rhinitis in preschool children and air pollution in Taiwan[J].Int J Environ Res Public Health, 2016, 13.

    [13]

    PEDEN D B.The role of oxidative stress and innate immunity in O (3) and endotoxin-induced human allergic airway disease[J].Immunol Rev, 2011, 242:91-105.

    [14]

    ALTUG H, GAGA E O, DOGEROGLU T, et al.Effects of air pollution on lung function and symptoms of asthma, rhinitis and eczema in primary school children[J].Environ Sci Pollut Res Int, 2013, 20:6455-6467.

    [15]

    ALEXIS N E, CARLSTEN C.Interplay of air pollution and asthma immunopathogenesis:a focused review of diesel exhaust and ozone[J].Int Immunopharmacol, 2014, 23:347-355.

    [16]

    DIAZ-SANCHEZ D, GARCIA M P, WANG M, et al.Nasal challenge with diesel exhaust particles can induce sensitization to a neoallergen in the human mucosa[J].JAllergy Clin Immunol, 1999, 104:1183-1188.

    [17]

    GILLILAND F D, LI Y F, SAXON A, et al.Effect of glutathione-S-transferase M1and P1genotypes on xenobiotic enhancement of allergic responses:randomised, placebo-controlled crossover study[J].Lancet, 2004, 363:119-125.

    [18]

    LI N, BUGLAK N.Convergence of air pollutant-induced redox-sensitive signals in the dendritic cells contributes to asthma pathogenesis[J].Toxicol Lett, 2015, 237:55-60.

    [19]

    JENG H A.Chemical composition of ambient particulate matter and redox activity[J].Environ Monit Assess, 2010, 169:597-606.

    [20]

    DENG X, RUI W, ZHANG F, et al.PM2.5induces Nrf2-mediated defense mechanisms against oxidative stress by activating PIK3/AKT signaling pathway in human lung alveolar epithelial A549cells[J].Cell Biol Toxicol, 2013, 29:143-157.

    [21]

    SHINKAI Y, NAKAJIMA S, EIGUREN-FERNANDEZA, et al.Ambient vapor samples activate the Nrf2-AREpathway in human bronchial epithelial BEAS-2B cells[J].Environ Toxicol, 2014, 29:1292-1300.

    [22]

    LI Y J, KAWADA T, AZUMA A.Nrf2 is a protective factor against oxidative stresses induced by diesel exhaust particle in allergic asthma[J].Oxid Med Cell Longev, 2013, 2013:323607.

    [23]

    BLECK B, TSE D B, CUROTTO DE LAFAILLE MA, et al.Diesel exhaust particle-exposed human bronchial epithelial cells induce dendritic cell maturation and polarization via thymic stromal lymphopoietin[J].J Clin Immunol, 2008, 28:147-156.

    [24]

    BLECK B, TSE D B, GORDON T, et al.Diesel exhaust particle-treated human bronchial epithelial cells upregulate Jagged-1and OX40 ligand in myeloid dendritic cells via thymic stromal lymphopoietin[J].J Immunol, 2010, 185:6636-6645.

    [25]

    LAMBRECHT B N, HAMMAD H.The airway epithelium in asthma[J].Nat Med, 2012, 18:684-692.

    [26]

    LI N, WANG M, BARAJAS B, et al.Nrf2deficiency in dendritic cells enhances the adjuvant effect of ambient ultrafine particles on allergic sensitization[J].J Innate Immun, 2013, 5:543-554.

    [27]

    WILLIAMS M A, RANGASAMY T, BAUER S M, et al.Disruption of the transcription factor Nrf2 promotes pro-oxidative dendritic cells that stimulate Th2-like immunoresponsiveness upon activation by ambient particulate matter[J].J Immunol, 2008, 181:4545-4559.

    [28]

    XIA M, VIERA-HUTCHINS L, GARCIA-LLORETM, et al.Vehicular exhaust particles promote allergic airway inflammation through an aryl hydrocarbon receptor-notch signaling cascade[J].J Allergy Clin Immunol, 2015, 136:441-453.

    [29]

    LIU J, BALLANEY M, AL-ALEM U, et al.Combined inhaled diesel exhaust particles and allergen exposure alter methylation of T helper genes and IgEproduction in vivo[J].Toxicol Sci, 2008, 102:76-81.

    [30]

    HEW K M, WALKER A I, KOHLI A, et al.Childhood exposure to ambient polycyclic aromatic hydrocarbons is linked to epigenetic modifications and impaired systemic immunity in T cells[J].Clin Exp Allergy, 2015, 45:238-248.

    [31]

    JARDIM M J, FRY R C, JASPERS I, et al.Disruption of microRNA expression in human airway cells by diesel exhaust particles is linked to tumorigenesisassociated pathways[J].Environ Health Perspect, 2009, 117:1745-1751.

    [32]

    BLECK B, GRUNIG G, CHIU A, et al.MicroRNA-375regulation of thymic stromal lymphopoietin by diesel exhaust particles and ambient particulate matter in human bronchial epithelial cells[J].J Immunol, 2013, 190:3757-3763.

    [33]

    RADMAN M, GOLSHIRI A, SHAMSIZADEH A, et al.Toll-like receptor 4plays significant roles during allergic rhinitis[J].Allergol Immunopathol (Madr), 2015, 43:416-420.

    [34]

    JEONG E, LEE J Y.Intrinsic and extrinsic regulation of innate immune receptors[J].Yonsei Med J, 2011, 52:379-392.

    [35]

    MU H H, HASEBE A, VAN SCHELT A, et al.Novel interactions of a microbial superantigen with TLR2 and TLR4 differentially regulate IL-17 and Th17-associated cytokines[J].Cell Microbiol, 2011, 13:374-387.

    [36]

    OAKES J L, O'CONNOR B P, WARG L A, et al.O-zone enhances pulmonary innate immune response to a Toll-like receptor-2agonist[J].Am J Respir Cell Mol Biol, 2013, 48:27-34.

    [37]

    CONNOR A J, LASKIN J D, LASKIN D L.Ozoneinduced lung injury and sterile inflammation.Role of toll-like receptor 4[J].Exp Mol Pathol, 2012, 92:229-235.

    [38]

    MIYATA R, VAN EEDEN S F.The innate and adaptive immune response induced by alveolar macrophages exposed to ambient particulate matter[J].Toxicol Appl Pharmacol, 2011, 257:209-226.

    [39]

    OHTANI T, NAKAGAWA S, KUROSAWA M, et al.Cellular basis of the role of diesel exhaust particles in inducing Th2-dominant response[J].J Immunol, 2005, 174:2412-2419.

    [40]

    DE GROVE K C, PROVOOST S, HENDRIKS RW, et al.Dysregulation of type 2innate lymphoid cells and TH2 cells impairs pollutant-induced allergic airway responses[J].J Allergy Clin Immunol, 2017, 139:246-257.

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收稿日期:  2017-09-12

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