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首页> 外文期刊>Clinical and experimental allergy : >Traffic‐related air pollution induces non‐allergic eosinophilic airway inflammation and cough hypersensitivity in guinea‐pigs
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Traffic‐related air pollution induces non‐allergic eosinophilic airway inflammation and cough hypersensitivity in guinea‐pigs

机译:流量相关的空气污染诱导豚鼠的非过敏性嗜酸性气动通风炎症和咳嗽超敏反应

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摘要

Abstract Background The pathogenesis and pathophysiology of eosinophilia‐related chronic cough such as non‐asthmatic eosinophilic bronchitis and cough variant asthma are still not clear. Objective This study is to examine the potential role of traffic‐related air pollution (TRAP) in eosinophilic inflammation and cough responses. Methods Non‐sensitized guinea‐pigs were exposed to TRAP in an urban traffic tunnel or kept in a filtered air environment for 7 or 14?days. Reflexive cough was measured using citric acid and allyl isothiocyanate (AITC) challenges, respectively. Spontaneous cough counting was determined using audio recording and a waveform analysis. Airway inflammation was evaluated using differential cells in bronchoalveolar lavage fluid (BALF) and lung histopathology. To further elucidate the relationship between airway inflammation and cough hypersensitivity, a subgroup of those exposed for 14?days received a dexamethasone treatment. Results Compared to reflexive cough count (mean (95% confidence interval) in 10?minutes) provoked by the AITC challenge for the unexposed animals (3.1 (1.7‐4.5)), those were increased significantly following both the 7‐day (12.0 (6.8‐17.2), P? ? 0.01) and the 14‐day (12.0 (6.4‐17.6), P? ? 0.01) TRAP exposure. The effect provoked by the citric acid challenge was more profound following the 14‐day exposure (26.0 (19.5‐32.5) vs 3.8 (1.5‐6.0) for the control, P? ? 0.001). TRAP exposures enhanced spontaneous cough events, caused a significant increase of eosinophils and neutrophils in BALF and resulted in a dramatic eosinophilic infiltration in submucosal layer of trachea and bronchus, which can be inhibited significantly by dexamethasone treatment. Conclusions & Clinical Relevance TRAP exposures induced cough hypersensitivity and non‐allergic eosinophilic inflammation of airways in guinea‐pigs. This study highlights the potential mechanisms of eosinophilia‐related chronic cough that can be induced by traffic‐related air pollution.
机译:摘要背景嗜酸性粒细胞相关慢性咳嗽如非哮喘嗜酸性支气管炎和咳嗽变异哮喘的发病机制和病理生理学仍未清楚。目的本研究是探讨交通相关的空气污染(疏水阀)在嗜酸性炎症和咳嗽反应中的潜在作用。方法将非敏化的豚鼠暴露在城市交通隧道中的陷阱,或者在过滤的空气环境中保持7或14天。使用柠檬酸和烯丙基异硫氰酸酯(AITC)挑战来测量反身咳嗽。使用音频记录和波形分析确定自发咳嗽计数。使用支气管肺泡灌洗液(BALF)和肺组织病理学中的差异细胞评估气道炎症。为了进一步阐明气道炎症与咳嗽超敏之间的关系,暴露于14天的那些亚组的亚组接受了地塞米松治疗。结果与未曝光动物的AITC挑战(3.1(1.7-4.5))引发的反身咳嗽计数(均值(95%置信区间))(3.1(1.7-4.5)),这两天后显着增加(12.0( 6.8-17.2),p?0.01)和14天(12.0(6.4-17.6),p≤≤0.01)捕获暴露。柠檬酸攻击引起的效果在14天暴露后更加深刻(26.0(19.5-32.5)对照,对照,p≤1.001)。陷阱曝光增强了自发咳嗽事件,在BALF中引起了嗜酸性粒细胞和中性粒细胞的显着增加,导致气管和支气管粘附层中的剧烈嗜酸性渗透,这可以通过地塞米松治疗显着抑制。结论&临床关联陷阱暴露诱导豚鼠气道的咳嗽超敏反应和非过敏性嗜酸性炎症。本研究突出了与交通相关的空气污染可以引起的嗜酸性粒细胞相关慢性咳嗽的潜在机制。

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  • 作者单位

    State Key Laboratory of Respiratory Diseasethe First Affiliated Hospital of Guangzhou Medical;

    State Key Laboratory of Respiratory Diseasethe First Affiliated Hospital of Guangzhou Medical;

    State Key Laboratory of Respiratory Diseasethe First Affiliated Hospital of Guangzhou Medical;

    State Key Laboratory of Respiratory Diseasethe First Affiliated Hospital of Guangzhou Medical;

    Equipment Public Service CenterChinese Academy of SciencesGuangzhou China;

    State Key Laboratory of Respiratory Diseasethe First Affiliated Hospital of Guangzhou Medical;

    State Key Laboratory of Respiratory Diseasethe First Affiliated Hospital of Guangzhou Medical;

    State Key Laboratory of Respiratory Diseasethe First Affiliated Hospital of Guangzhou Medical;

    Department of PathologyGuangzhou Medical UniversityGuangzhou China;

    State Key Laboratory of Organic GeochemistryChinese Academy of SciencesGuangzhou China;

    Institute for Environmental and Climate ResearchJinan UniversityGuangzhou China;

    State Key Laboratory of Respiratory Diseasethe First Affiliated Hospital of Guangzhou Medical;

    State Key Laboratory of Respiratory Diseasethe First Affiliated Hospital of Guangzhou Medical;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 医学免疫学;
  • 关键词

    airway inflammation; cough hypersensitivity; eosinophil; traffic‐related air pollution;

    机译:气道炎症;咳嗽过敏;嗜酸性粒细胞;交通相关的空气污染;

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