Oxidative Stress Attenuates TLR3 Responsiveness and Impairs Anti-viral Mechanisms in Bronchial Epithelial Cells From COPD and Asthma Patients

被引:34
作者
Menzel, Mandy [1 ]
Ramu, Sangeetha [1 ]
Calven, Jenny [1 ,2 ]
Olejnicka, Beata [3 ,4 ]
Sverrild, Asger [5 ]
Porsbjerg, Celeste [5 ]
Tufvesson, Ellen [6 ]
Bjermer, Leif [6 ]
Akbarshahi, Hamid [1 ,6 ]
Uller, Lena [1 ]
机构
[1] Lund Univ, Unit Resp Immunopharmacol, Dept Expt Med Sci, Lund, Sweden
[2] Univ Gothenburg, Dept Internal Med, Gothenburg, Sweden
[3] Lund Univ, Dept Expt Med Sci, Airway Inflammat Unit, Lund, Sweden
[4] Trelleborg Hosp, Dept Internal Med, Trelleborg, Sweden
[5] Bispebjerg & Frederiksberg Hosp, Dept Resp Med, Copenhagen, Denmark
[6] Lund Univ, Dept Clin Sci Lund, Unit Resp Med & Allergol, Lund, Sweden
来源
FRONTIERS IN IMMUNOLOGY | 2019年 / 10卷
基金
瑞典研究理事会;
关键词
asthma; COPD; bronchial epithelium; oxidative stress; rhinovirus; interferon; pattern recognition receptors; OBSTRUCTIVE PULMONARY-DISEASE; THYMIC STROMAL LYMPHOPOIETIN; INDUCED BARRIER DYSFUNCTION; TOLL-LIKE RECEPTOR-3; DOUBLE-STRANDED-RNA; SUPEROXIDE-DISMUTASE; RESPIRATORY VIRUSES; ACUTE EXACERBATIONS; EXPRESSION; DEFICIENT;
D O I
10.3389/fimmu.2019.02765
中图分类号
R392 [医学免疫学]; Q939.91 [免疫学];
学科分类号
100102 ;
摘要
COPD and asthma exacerbations are commonly triggered by rhinovirus infection. Potentially promoting exacerbations, impaired anti-viral signaling and attenuated viral clearance have been observed in diseased bronchial epithelium. Oxidative stress is a feature of inflammation in asthma and COPD and is prominent during exacerbations. It is not known whether oxidative stress affects the anti-viral signaling capacity. Bronchial epithelial cells from asthmatic and COPD donors were infected with rhinovirus or treated with the oxidative stressor H2O2 followed by exposure to the synthetic viral replication intermediate poly(I:C). Poly(I:C) was used to ascertain a constant infection-like burden. Gene and protein levels of antioxidants as well as anti-viral responses were measured 3 and 24 h post poly(I:C) exposure. Rhinovirus infection and poly(I:C) stimulation induced protein levels of the antioxidants SOD1 and SOD2. In asthmatic bronchial epithelial cells pre-treatment with H2O2 dose-dependently decreased the antioxidant response to poly(I:C), suggesting exaggerated oxidative stress. Further, poly(I:C)-induced IFN beta gene expression was reduced after pre-treatment with H2O2. This epithelial effect was associated with a reduced expression of the pattern recognition receptors RIG-I, MDA5 and TLR3 both on gene and protein level. Pre-treatment with H2O2 did not alter antioxidant responses in COPD bronchial epithelial cells and, more modestly than in asthma, reduced poly(I:C)-induced IFN beta gene expression. Knockdown of TLR3 but not RIG-I/MDA5 abrogated impairment of poly(I:C)-induced IFN beta gene expression by H2O2. We developed a method by which we could demonstrate that oxidative stress impairs anti-viral signaling in bronchial epithelial cells from asthmatic and COPD patients, most pronounced in asthma. The impairment apparently reflects reduced responsiveness of TLR3. These present findings shed light on molecular mechanisms potentially causing reduced interferon responses to rhinovirus infection at exacerbations in asthma and COPD. Together, our findings suggest a possible self-perpetuating vicious cycle underlying recurrent exacerbations, leading to an impaired anti-viral response, which in turn leads to viral-induced exacerbations, causing more airway inflammation.
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页数:11
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