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Linking Oxidative Events to Inflammatory and Adaptive Gene Expression Induced by Exposure to an Organic Particulate Matter Component

机译:将氧化事件与通过接触有机颗粒物成分诱导的炎症和适应性基因表达联系起来

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摘要

Background: Toxicological studies have correlated inflammatory effects of diesel exhaust particles (DEP) with its organic constituents, such as the organic electrophile 1,2-naphthoquinone (1,2-NQ).Objective: To elucidate the mechanisms involved in 1,2-NQ–induced inflammatory responses, we examined the role of oxidant stress in 1,2-NQ–induced expression of inflammatory and adaptive genes in a human airway epithelial cell line.Methods: We measured cytosolic redox status and hydrogen peroxide (H2O2) in living cells using the genetically encoded green fluorescent protein (GFP)-based fluorescent indicators roGFP2 and HyPer, respectively. Expression of interleukin-8 (IL-8), cyclooxygenase-2 (COX-2), and heme oxygenase-1 (HO-1) mRNA was measured in BEAS-2B cells exposed to 1,2-NQ for 1–4 hr. Catalase overexpression and metabolic inhibitors were used to determine the role of redox changes and H2O2 in 1,2-NQ–induced gene expression.Results: Cells expressing roGFP2 and HyPer showed a rapid loss of redox potential and an increase in H2O2 of mitochondrial origin following exposure to 1,2-NQ. Overexpression of catalase diminished the H2O2-dependent signal but not the 1,2-NQ–induced loss of reducing potential. Catalase overexpression and inhibitors of mitochondrial respiration diminished elevations in IL-8 and COX-2 induced by exposure to 1,2-NQ, but potentiated HO-1 mRNA levels in BEAS cells.Conclusion: These data show that 1,2-NQ exposure induces mitochondrial production of H2O2 that mediates the expression of inflammatory genes, but not the concurrent loss of reducing redox potential in BEAS cells. 1,2-NQ exposure also causes marked expression of HO-1 that appears to be enhanced by suppression of H2O2. These findings shed light into the oxidant-dependent events that underlie cellular responses to environmental electrophiles.
机译:背景:毒理学研究已将柴油机排气颗粒(DEP)的发炎作用与其有机成分(如有机亲电子1,2-萘醌(1,2-NQ))相关联。目的:阐明1,2-涉及的机制NQ诱导的炎症反应,我们研究了氧化应激在人类气道上皮细胞系中1,2-NQ诱导的炎症和适应性基因表达中的作用。方法:我们测量了生活中细胞质的氧化还原状态和过氧化氢(H2O2)细胞分别使用基于基因编码的绿色荧光蛋白(GFP)的荧光指示剂roGFP2和HyPer。在暴露于1,2-NQ 1-4小时的BEAS-2B细胞中,测量了白介素8(IL-8),环氧合酶2(COX-2)和血红素加氧酶1(HO-1)mRNA的表达。 。过氧化氢酶的过表达和代谢抑制剂被用于确定氧化还原变化和过氧化氢在1,2-NQ诱导的基因表达中的作用。结果:表达roGFP2和HyPer的细胞显示出氧化还原电位的快速丧失和线粒体起源的过氧化氢的增加暴露于1,2-NQ。过氧化氢酶的过表达减少了H2O2依赖性信号,但没有减少1,2-NQ引起的还原电位损失。过氧化氢酶的过表达和线粒体呼吸抑制物减少了暴露于1,2-NQ诱导的IL-8和COX-2的升高,但增强了BEAS细胞中HO-1 mRNA的水平。结论:这些数据表明1,2-NQ暴露诱导线粒体H2O2的产生,介导炎症基因的表达,但不会同时导致BEAS细胞氧化还原电位降低。 1,2-NQ暴露还导致HO-1的明显表达,似乎通过抑制H2O2得以增强。这些发现为细胞对环境亲电试剂反应的基础上的依赖氧化剂的事件提供了线索。

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