首页> 外文期刊>The Journal of Allergy and Clinical Immunology >Chemical constituents of diesel exhaust particles induce IL-4 production and histamine release by human basophils.
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Chemical constituents of diesel exhaust particles induce IL-4 production and histamine release by human basophils.

机译:柴油机尾气颗粒的化学成分可诱导人嗜碱细胞产生IL-4并释放组胺。

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BACKGROUND: An epidemiologic relationship between airway allergic diseases and exposure to atmospheric pollutants has been demonstrated and suggested to be one factor in the increasing prevalence of asthma. Diesel exhaust particles (DEPs) have been shown to participate in the development of allergic airway inflammation, in which the targets include macrophages, B and T cells, epithelial cells, and mast cells. In addition to the adjuvant effect of DEPs on total and allergen-specific IgE production, DEPs also act to induce chemokines and cytokines and may play a key role in primary sensitization. OBJECTIVE: DEPs have been shown to increase local IL-4-containing Kit(+) cells soon after in vivo nasal challenge. The aim of this study was to examine the effects of DEPs on human basophils, a key source of IL-4. METHODS: Peripheral blood leukocytes from allergic and control subjects were cultured in the presence of organic extracts of DEP (DEPex) with or without allergen. The cultures were analyzed for IL-4-containing cells by using multiparameter flow cytometry, IL-4 secretion with ELISA, and histamine release. RESULTS: Basophils, when exposed in vitro to DEPex, expressed IL-4 and released histamine significantly (P <.01) more than with antigen activation. DEPex did not synergize with allergen in cytokine production and histamine release. DEPex-induced basophil IL-4 expression peaked at 2 hours and persisted through 20 hours, in contrast to allergen-induced IL-4, which was transient. The effect of DEPex on basophil cytokine expression and histamine release was dose dependent and occurred with cells from both allergic and nonallergic subjects. DEPex induced IL-4 expression and histamine release in highly enriched basophil populations, suggesting it acts directly on basophils. Other peripheral blood leukocytes, including T cells, did not contribute to this cytokine expression. Preincubation with N-acetylcysteine completely abrogated DEPex-driven basophil IL-4 expression. CONCLUSIONS: Basophils are a direct target for DEPex, inducing IL-4 expression and histamine release in an IgE-allergen independent fashion. N-acetylcysteine inhibition of DEPex-driven IL-4 expression provides evidence that generation of reactive oxygen species is required for the effects observed. The capability of DEPex to activate basophils in both allergic and nonallergic subjects suggests a potential role of this pollutant in the increasing prevalence of allergic diseases.
机译:背景:已证明气道过敏性疾病与暴露于大气污染物之间的流行病学关系,并认为这是哮喘患病率上升的因素之一。柴油机排气颗粒(DEP)已显示参与过敏性气道炎症的发展,其中的靶标包括巨噬细胞,B和T细胞,上皮细胞和肥大细胞。除了DEP对总的和过敏原特异性IgE产生的辅助作用外,DEP还可以诱导趋化因子和细胞因子,并且可能在原发性致敏中起关键作用。目的:已证明DEPs在体内鼻腔攻击后不久会增加局部含IL-4的Kit(+)细胞。这项研究的目的是检查DEPs对人类嗜碱性粒细胞(IL-4的关键来源)的影响。方法:在有或没有变应原的DEP有机提取物(DEPex)的存在下,培养来自过敏和对照组的外周血白细胞。通过使用多参数流式细胞术,ELISA法检测IL-4分泌和组胺释放来分析培养物中的含IL-4的细胞。结果:嗜碱性粒细胞在体外暴露于DEPex时,表达IL-4并显着释放组胺(P <.01),高于抗原激活。 DEPex在细胞因子产生和组胺释放中与变应原没有协同作用。与变应原诱导的IL-4相比,DEPex诱导的嗜碱性粒细胞IL-4表达在2小时达到峰值,并持续20小时。 DEPex对嗜碱性粒细胞细胞因子表达和组胺释放的影响是剂量依赖性的,并且发生在过敏和非过敏受试者的细胞中。 DEPex在高度富集的嗜碱性粒细胞群体中诱导IL-4表达和组胺释放,表明它直接作用于嗜碱性粒细胞。其他外周血白细胞,包括T细胞,均不参与这种细胞因子的表达。用N-乙酰半胱氨酸预孵育完全废除了DEPex驱动的嗜碱性粒细胞IL-4表达。结论:嗜碱性粒细胞是DEPex的直接靶标,以IgE变应原独立的方式诱导IL-4表达和组胺释放。 N-乙酰半胱氨酸对DEPex驱动的IL-4表达的抑制作用提供了证据,表明所观察到的作用需要产生活性氧。 DEPex激活过敏性和非过敏性受试者中嗜碱性粒细胞的能力表明,这种污染物在过敏性疾病患病率上升中具有潜在作用。

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