首页> 美国卫生研究院文献>Toxicological Sciences >Loss of Hypoxia-Inducible Factor 2 Alpha in the Lung Alveolar Epithelium of Mice Leads to Enhanced Eosinophilic Inflammation in Cobalt-Induced Lung Injury
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Loss of Hypoxia-Inducible Factor 2 Alpha in the Lung Alveolar Epithelium of Mice Leads to Enhanced Eosinophilic Inflammation in Cobalt-Induced Lung Injury

机译:小鼠肺泡上皮中缺氧诱导因子2α的丢失导致钴诱导的肺损伤中嗜酸性粒细胞炎症增强。

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摘要

Hard metal lung disease (HMLD) is an occupational lung disease specific to inhalation of cobalt-containing particles whose mechanism is largely unknown. Cobalt is a known hypoxia mimic and stabilizer of the alpha subunits of hypoxia-inducible factors (HIFs). Previous work revealed that though HIF1α contrib utes to cobalt toxicity in vitro, loss of HIF1α in the alveolar epithelial cells does not provide in vivo protection from cobalt-induced lung inflammation. HIF1α and HIF2α show unique tissue expression profiles, and HIF2α is known to be the predominant HIF mRNA isoform in the adult lung. Thus, if HIF2α activation by cobalt contributes to pathophysiology of HMLD, we hypothesized that loss of HIF2α in lung epithelium would provide protection from cobalt-induced inflammation. Mice with HIF2α-deficiency in Club and alveolar type II epithelial cells (ATIIs) (HIF2αΔ/Δ) were exposed to cobalt (60 µg/day) or saline using a subacute occupational exposure model. Bronchoalveolar lavage cellularity, cytokines, qRT-PCR, and histopathology were analyzed. Results show that loss of HIF2α leads to enhanced eosinophilic inflammation and increased goblet cell metaplasia. Additionally, control mice demonstrated a mild recovery from cobalt-induced lung injury compared with HIF2αΔ/Δ mice, suggesting a role for epithelial HIF2α in repair mechanisms. The expression of important cytokines, such as interleukin (IL)-5 and IL-10, displayed significant differences following cobalt exposure when HIF2αΔ/Δ and control mice were compared. In summary, our data suggest that although loss of HIF2α does not afford protection from cobalt-induced lung inflammation, epithelial HIF2α signaling does play an important role in modulating the inflammatory and repair response in the lung.
机译:硬金属肺部疾病(HMLD)是一种职业性肺部疾病,特定于吸入含钴颗粒,其机理尚不清楚。钴是低氧诱导因子(HIF)的α亚基的已知低氧模拟物和稳定剂。先前的工作表明,尽管HIF1α在体外对钴的毒性有贡献,但肺泡上皮细胞中HIF1α的丢失并不能提供体内保护,防止钴诱导的肺部炎症。 HIF1α和HIF2α显示独特的组织表达谱,并且已知HIF2α是成年肺中主要的HIF mRNA亚型。因此,如果钴激活HIF2α有助于HMLD的病理生理,我们假设肺上皮中HIF2α的丢失将提供针对钴诱导的炎症的保护作用。使用亚急性职业暴露模型,将Club和II型肺泡上皮细胞(ATIIs)中HIF2α缺陷的小鼠(HIF2αΔ/Δ)暴露于钴(60 µg /天)或生理盐水中。分析了支气管肺泡灌洗液的细胞性,细胞因子,qRT-PCR和组织病理学。结果表明,HIF2α的丧失导致嗜酸性粒细胞炎症增强和杯状细胞化生增加。此外,与HIF2αΔ/Δ小鼠相比,对照小鼠表现出钴诱导的肺损伤轻度恢复,提示上皮HIF2α在修复机制中具有作用。比较HIF2αΔ/Δ和对照小鼠后,钴暴​​露后重要的细胞因子,如白介素(IL)-5和IL-10的表达显示出显着差异。总而言之,我们的数据表明,尽管HIF2α的丧失无法提供针对钴诱导的肺部炎症的保护,但上皮HIF2α信号传导确实在调节肺部的炎症和修复反应中起着重要作用。

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