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Acute Cobalt-Induced Lung Injury and the Role of Hypoxia-Inducible Factor 1α in Modulating Inflammation

机译:急性钴诱发的肺损伤和缺氧诱导因子1α在调节炎症中的作用

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摘要

Air pollution is a critical factor in the development and exacerbation of pulmonary diseases. Ozone, automobile exhaust, cigarette smoke, and metallic dust are among the potentially harmful pollution components that are linked to disease progression. Transition metals, such as cobalt, have been identified at significant levels in air pollution. Cobalt exerts numerous biological effects, including mimicking hypoxia. Similar to hypoxia, cobalt exposure results in the stabilization of hypoxia-inducible factors (HIFs), a family of proteins that regulate the cellular response to oxygen deficit. HIFs also play an important role in innate immunity and inflammatory processes. To characterize the role of HIF1α, the most ubiquitously expressed HIF, in the early events during cobalt-induced lung inflammation, an inducible lung-specific HIF1α deletion model was employed. Control mice showed classical signs of metal-induced injury following cobalt exposure, including neutrophilic infiltration and induction of Th1 cytokines. In contrast, HIF1α-deficient mice exhibited pronounced eosinophil counts in bronchoalveolar lavage fluid and lung tissue complemented with Th2 cytokine induction. The timing of these results suggests that the loss of epithelial-derived HIF1α alters the lung's innate immune response and biases the tissue toward a Th2-mediated inflammation.
机译:空气污染是导致肺部疾病发展和恶化的关键因素。臭氧,汽车尾气,香烟烟雾和金属粉尘是与疾病发展相关的潜在有害污染成分。已发现过渡金属(例如钴)的空气污染水平很高。钴具有许多生物学效应,包括模仿缺氧。与缺氧相似,暴露于钴会导致缺氧诱导因子(HIF)的稳定化,该因子是调节细胞对缺氧反应的蛋白质家族。 HIF在先天免疫和炎症过程中也起着重要作用。为了表征最普遍表达的HIFHIF1α在钴诱导的肺部炎症的早期事件中的作用,采用了可诱导的肺特异性HIF1α缺失模型。对照小鼠在钴暴露后表现出金属诱导的损伤的经典体征,包括嗜中性浸润和诱导Th1细胞因子。相比之下,HIF1α缺陷型小鼠在支气管肺泡灌洗液和肺组织中的嗜酸性粒细胞计数明显升高,并辅以Th2细胞因子诱导。这些结果的时机表明,上皮来源的HIF1α的丧失改变了肺的先天免疫反应,并使组织偏向Th2介导的炎症。

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