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首页> 外文期刊>Particle Fibre Toxicology >Nitric oxide and superoxide mediate diesel particle effects in cytokine-treated mice and murine lung epithelial cells — implications for susceptibility to traffic-related air pollution
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Nitric oxide and superoxide mediate diesel particle effects in cytokine-treated mice and murine lung epithelial cells — implications for susceptibility to traffic-related air pollution

机译:一氧化氮和超氧化物介导细胞因子处理的小鼠和鼠肺上皮细胞中的柴油颗粒效应-对交通相关空气污染敏感性的影响

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Background Epidemiologic studies associate childhood exposure to traffic-related air pollution with increased respiratory infections and asthmatic and allergic symptoms. The strongest associations between traffic exposure and negative health impacts are observed in individuals with respiratory inflammation. We hypothesized that interactions between nitric oxide (NO), increased during lung inflammatory responses, and reactive oxygen species (ROS), increased as a consequence of traffic exposure ─ played a key role in the increased susceptibility of these at-risk populations to traffic emissions. Methods Diesel exhaust particles (DEP) were used as surrogates for traffic particles. Murine lung epithelial (LA-4) cells and BALB/c mice were treated with a cytokine mixture (cytomix: TNFα, IL-1β, and IFNγ) to induce a generic inflammatory state. Cells were exposed to saline or DEP (25 μg/cm2) and examined for differential effects on redox balance and cytotoxicity. Likewise, mice undergoing nose-only inhalation exposure to air or DEP (2 mg/m3?×?4 h/d?×?2 d) were assessed for differential effects on lung inflammation, injury, antioxidant levels, and phagocyte ROS production. Results Cytomix treatment significantly increased LA-4 cell NO production though iNOS activation. Cytomix?+ DEP-exposed cells incurred the greatest intracellular ROS production, with commensurate cytotoxicity, as these cells were unable to maintain redox balance. By contrast, saline?+?DEP-exposed cells were able to mount effective antioxidant responses. DEP effects were mediated by: (1) increased ROS including superoxide anion (O2˙-), related to increased xanthine dehydrogenase expression and reduced cytosolic superoxide dismutase activity; and (2) increased peroxynitrite generation related to interaction of O2˙- with cytokine-induced NO. Effects were partially reduced by superoxide dismutase (SOD) supplementation or by blocking iNOS induction. In mice, cytomix?+ DEP-exposure resulted in greater ROS production in lung phagocytes. Phagocyte and epithelial effects were, by and large, prevented by treatment with FeTMPyP, which accelerates peroxynitrite catalysis. Conclusions During inflammation, due to interactions of NO and O2˙-, DEP-exposure was associated with nitrosative stress in surface epithelial cells and resident lung phagocytes. As these cell types work in concert to provide protection against inhaled pathogens and allergens, dysfunction would predispose to development of respiratory infection and allergy. Results provide a mechanism by which individuals with pre-existing respiratory inflammation are at increased risk for exposure to traffic-dominated urban air pollution.
机译:背景流行病学研究将儿童时期与交通相关的空气污染与呼吸道感染增加以及哮喘和过敏性症状联系起来。在患有呼吸道炎症的个体中,观察到交通暴露与负面健康影响之间的最强关联。我们假设,由于交通暴露而导致的一氧化氮(NO)与肺炎反应过程中增加的一氧化氮(ROS)之间的相互作用增加–在这些高危人群对交通排放的敏感性增加中起关键作用。方法以柴油机尾气颗粒(DEP)作为交通颗粒物的替代物。用细胞因子混合物(细胞混合物:TNFα,IL-1β和IFNγ)处理鼠肺上皮(LA-4)细胞和BALB / c小鼠,以诱导一般的炎症状态。将细胞暴露于生理盐水或DEP(25μg/ cm 2 )中,并检查其对氧化还原平衡和细胞毒性的不同影响。同样,评估了只接受鼻子吸入空气或DEP(2 mg / m 3 ?×?4 h / d?×?2 d)的小鼠。对肺部炎症,损伤,抗氧化剂水平和吞噬细胞ROS产生有不同的影响。结果Cytomix处理通过iNOS激活显着增加了LA-4细胞NO的产生。暴露于Cytomix®+ DEP的细胞产生最大的细胞内ROS产生,并具有相应的细胞毒性,因为这些细胞无法维持氧化还原平衡。相反,暴露于盐水中的α+βDEP的细胞能够引起有效的抗氧化反应。 DEP的影响是由以下因素介导的:(1)ROS含量增加,包括超氧阴离子(O 2 ˙-),与黄嘌呤脱氢酶表达增加和胞质超氧化物歧化酶活性降低有关; (2)与O 2 ˙-与细胞因子-的相互作用相关的过氧亚硝酸盐生成增加诱导NO补充超氧化物歧化酶(SOD)或阻断iNOS诱导可部分减轻作用。在小鼠中,细胞混合物+ DEP暴露导致肺吞噬细胞中产生更大的ROS。 FeTMPyP处理可基本上防止吞噬细胞和上皮细胞的作用,FeTMPyP可加速过氧亚硝酸盐催化。结论在炎症过程中,由于NO和O 2 ˙-的相互作用,DEP暴露与表面上皮细胞和驻留肺吞噬细胞的亚硝化应激有关。由于这些细胞类型协同工作以提供针对吸入的病原体和过敏原的保护,功能障碍会诱发呼吸道感染和过敏。结果提供了一种机制,使患有既往呼吸道炎的人暴露于交通主导的城市空气污染的风险增加。

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