Sulfur dioxide-induced exacerbation of airway inflammation via reactive oxygen species production and the toll-like receptor 4/nuclear factor-κB pathway in asthmatic mice

Athari, SS, Athari, SM, Beyzay, F, et al. (2017) Critical role of toll-like receptors in pathophysiology of allergic asthma. European Journal of Pharmacology 808: 21–27.
Google Scholar | Crossref | Medline Barboza, R, Câmara, NOS, Gomes, E, et al. (2013) Endotoxin exposure during sensitization to blomia tropicalis allergens shifts TH2 immunity towards a TH17-mediated airway neutrophilic inflammation. Plos One 8(6): e67115.
Google Scholar | Crossref | Medline Barnes, PJ (2008) The cytokine network in asthma and chronic obstructive pulmonary disease. Journal of Clinical Investigation 118(11): 3546–3556.
Google Scholar | Crossref | Medline | ISI Bosnjak, B, Stelzmueller, B, Erb, KJ, et al. (2011) Treatment of allergic asthma: modulation of Th2 cells and their responses. Respiratory Research 12(1): 114.
Google Scholar | Crossref | Medline Busse, WW, Lemanske, RF (2001) Asthma. The New England Journal of Medicine 344(5): 350–362.
Google Scholar | Crossref | Medline Cai, C, Xu, J, Zhang, M, et al. (2008) Prior SO2 exposure promotes airway inflammation and subepithelial fibrosis following repeated ovalbumin challenge. Clinical and Experimental Allergy 38(10): 1680–1687.
Google Scholar | Crossref | Medline Dechene, L (2002) TH1/TH2 immune response. Journal of Allergy and Clinical Immunology 110(3): 539–540.
Google Scholar | Crossref | Medline Deger, L, Plante, C, Jacques, L, et al. (2012) Active and uncontrolled asthma among children exposed to air stack emissions of sulphur dioxide from petroleum refineries in Montreal, Quebec: a cross-sectional study. Canadian Respiratory Journal 19(2): 97–102.
Google Scholar | Crossref | Medline | ISI Finkel, T (2011) Signal transduction by reactive oxygen species. Journal of Cell Biology 194(1): 7–15.
Google Scholar | Crossref | Medline Guarnieri, M, Balmes, JR (2014) Outdoor air pollution and asthma. Lancet 383(9928): 1581–1592.
Google Scholar | Crossref | Medline Haddad, JJE, Land, SC (2000) O2-evoked regulation of HIF-1α and NF-κB in perinatal lung epithelium requires glutathione biosynthesis. American Journal of Physiology. Lung Cellular and Molecular Physiology 278(3): L492–L503.
Google Scholar | Crossref | Medline Han, M, Chung, Y, Young Hong, J, et al. (2016) Toll-like receptor 2-expressing macrophages are required and sufficient for rhinovirus-induced airway inflammation. Journal of Allergy and Clinical Immunology 138(6): 1619–1630.
Google Scholar | Crossref | Medline He, M, Ichinose, T, Yoshida, Y, et al. (2017) Urban PM2.5 exacerbates allergic inflammation in the murine lung via a TLR2/TLR4/MyD88-signaling pathway. Scientific Reports 7(1): 11027.
Google Scholar | Crossref | Medline Hwang, Y-H, Paik, M-J, Yee, S-T (2017) Diisononyl phthalate induces asthma via modulation of Th1/Th2 equilibrium. Toxicology Letters 272: 49–59.
Google Scholar | Crossref | Medline Lambrecht, BN, Hammad, H (2015) The immunology of asthma. Nature Immunology 16(1): 45–56.
Google Scholar | Crossref | Medline Li, L, Xue, M, Yi, H (2016) Uncovering microRNA-mediated response to SO2 stress in Arabidopsis thaliana by deep sequencing. Journal of Hazardous Materials 316: 178–185.
Google Scholar | Crossref | Medline Li, R, Kou, X, Tian, J, et al. (2014) Effect of sulfur dioxide on inflammatory and immune regulation in asthmatic rats. Chemosphere 112: 296–304.
Google Scholar | Crossref | Medline | ISI Li, R, Zhao, L, Tong, J, et al. (2017) Fine particulate matter and sulfur dioxide coexposures induce rat lung pathological injury and inflammatory responses via TLR4/p38/NF-κB pathway. International Journal of Toxicology 36(2): 165–173.
Google Scholar | SAGE Journals | ISI Li, T, Zhang, X, Li, C, et al. (2020) Onset of respiratory symptoms among Chinese students: associations with dampness and redecoration, PM10, NO2, SO2 and inadequate ventilation in the school. Journal of Asthma 57(5): 495–504.
Google Scholar | Crossref | Medline Li, X, Huang, L, Wang, N, et al. (2018) Sulfur dioxide exposure enhances Th2 inflammatory responses via activating STAT6 pathway in asthmatic mice. Toxicology Letters 285: 43–50.
Google Scholar | Crossref | Medline Meng, Z (2003) Oxidative damage of sulfur dioxide on various organs of mice: sulfur dioxide is a systemic oxidative damage agent. Inhalation Toxicology 15(2): 181–195.
Google Scholar | Crossref | Medline | ISI Meng, Z, Qin, G, Zhang, B, et al. (2003) Oxidative damage of sulfur dioxide inhalation on lungs and hearts of mice. Environmental Research 93(3): 285–292.
Google Scholar | Crossref | Medline Meng, Z, Yan, C, Deng, Q, et al. (2015) Curcumin inhibits LPS-induced inflammation in rat vascular smooth muscle cells in vitro via ROS-relative TLR4-MAPK/NF-kB pathways. Acta Pharmacologica Sinica 34(7): 901–911.
Google Scholar | Crossref | ISI Molfino, NA, Gossage, D, Kolbeck, R, et al. (2012) Molecular and clinical rationale for therapeutic targeting of interleukin-5 and its receptor. Clinical and Experimental Allergy 42(5): 712–737.
Google Scholar | Crossref | Medline Orellano, P, Quaranta, N, Reynoso, J, et al. (2017) Effect of outdoor air pollution on asthma exacerbations in children and adults: systematic review and multilevel meta-analysis. Plos One 12(3): e0174050.
Google Scholar | Crossref | Medline Papaioannou, AI, Spathis, A, Kostikas, K, et al. (2017) The role of endosomal toll-like receptors in asthma. European Journal of Pharmacology 808: 14–20.
Google Scholar | Crossref | Medline Paul, WE, Zhu, J (2010) How are TH2-type immune responses initiated and amplified? Nature Reviews Immunology 10(4): 225–235.
Google Scholar | Crossref | Medline Shin, S-W, Bae, D-J, Park, C-S, et al. (2020) Effects of air pollution on moderate and severe asthma exacerbations. Journal of Asthma 57(8): 875–885.
Google Scholar | Crossref | Medline Song, A, Liao, Q, Li, J, et al. (2012) Chronic exposure to sulfur dioxide enhances airway hyperresponsiveness only in ovalbumin-sensitized rats. Toxicology Letters 214(3): 320–327.
Google Scholar | Crossref | Medline Wang, Q, Cui, Y, Wu, X, et al. (2021) Evodiamine protects against airway remodelling and inflammation in asthmatic rats by modulating the HMGB1/NF-κB/TLR-4 signalling pathway. Pharmaceutical Biology 59(1): 192–199.
Google Scholar | Crossref | Medline Wigenstam, E, Elfsmark, L, Bucht, A, et al. (2016) Inhaled sulfur dioxide causes pulmonary and systemic inflammation leading to fibrotic respiratory disease in a rat model of chemical-induced lung injury. Toxicology 368–369: 28–36.
Google Scholar | Crossref | Medline World Health Organization (2020a) Asthma fact sheet. Available at: www.who.int/news-room/fact-sheets/detail/asthma (accessed on 20 May 2020).
Google Scholar World Health Organization (2020b) Ambient air pollution. Available at: www.who.int/teams/environment-climate-change-and-health/air-quality-and-health/ambient-air-pollution (accessed on 4 September 2020).
Google Scholar Yan, S, Wu, G (2017) SO2 emissions in China–their network and hierarchical structures. Scientific Reports 7: 46216.
Google Scholar | Crossref | Medline Yun, Y, Gao, R, Yue, H, et al. (2015) Synergistic effects of particulate matter (PM10) and SO2 on human non-small cell lung cancer A549 via ROS-mediated NF-κB activation. Journal of Environmental Sciences (China) 31: 146–153.
Google Scholar | Crossref | Medline | ISI Yun, Y, Hou, L, Sang, N (2011) SO2 inhalation modulates the expression of pro-inflammatory and pro-apoptotic genes in rat heart and lung. Journal of Hazardous Materials 185(1): 482–488.
Google Scholar | Crossref | Medline | ISI Zakeri, A, Borji, H, Haghparast, A (2016) Interaction between helminths and toll-like receptors: possibilities and potentials for asthma therapy. International Reviews of Immunology 35(3): 219–248.
Google Scholar | Crossref | Medline Zakeri, A, Yazdi, FG (2017) Toll-like receptor-mediated involvement of innate immune cells in asthma disease. Biochimica et Biophysica Acta 1861: 3270–3277.
Google Scholar | Crossref Zhang, Q, He, K, Huo, H (2012) Policy: cleaning China’s air. Nature 484(7393): 161–162.
Google Scholar | Crossref | Medline | ISI Zhu, Z, Zhang, L, Chen, Q, et al. (2020) Macrophage-derived sulfur dioxide is a novel inflammation regulator. Biochemical and Biophysical Research Communications 524(4): 916–922.
Google Scholar | Crossref | Medline

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