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Exposure to nickel oxide nanoparticles induces pulmonary inflammation through NLRP3 inflammasome activation in rats

机译:暴露于氧化镍纳米颗粒通过大鼠NLRP3炎症组激活诱导肺炎症

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With recent advances in the manufacture and application of nickel oxide nanoparticles (NiONPs), concerns about their adverse effects on the respiratory system are increasing. However, the underlying cellular and molecular mechanisms of NiONP-induced pulmonary toxicity remain unclear. In this study, we focused on the impacts of NiONPs on pulmonary inflammation and investigated whether the NLRP3 inflammasome is involved in NiONP-induced pulmonary inflammation and injury. NiONP suspensions were administered by single intratracheal instillation to rats, and inflammatory responses were evaluated at 3?days, 7?days, or 28?days after treatment. NiONP exposure resulted in sustained pulmonary inflammation accompanied by inflammatory cell infiltration, alveolar proteinosis, and cytokine secretion. Expression of Nlrp3 was markedly upregulated by the NiONPs, which was accompanied by overexpression of the active form of caspase-1 (p20) and interleukin (IL)-1β secretion in vivo. NiONP-induced IL-1β secretion was partially prevented by co-treatment with a caspase-1 inhibitor in macrophages. Moreover, siRNA-mediated Nlrp3 knockdown completely attenuated NiONP-induced cytokine release and caspase-1 activity in macrophages in vitro. In addition, NiONP-induced NLRP3 inflammasome activation requires particle uptake and reactive oxygen species production. Collectively, our findings suggest that the NLRP3 inflammasome participates in NiONP-induced pulmonary inflammation and offer new strategies to combat the pulmonary toxicity induced by NiONPs.
机译:随着近期氧化镍纳米颗粒(NIONPS)的制造和应用的进展,对其对呼吸系统的不利影响的担忧正在增加。然而,NIONP诱导的肺毒性的潜在细胞和分子机制仍然不清楚。在这项研究中,我们专注于NIONP对肺炎症的影响,并研究了NLRP3炎症组是否参与NIONP诱导的肺部炎症和损伤。 NIONP悬浮液通过单一的腹腔内滴注到大鼠,并在3℃,7天或28天内评估炎症反应。治疗后的天数。 NionP暴露导致伴随患有炎症细胞浸润,肺泡蛋白病和细胞因子分泌的持续肺炎症。 NLRP3的表达明显上调,核特斯伴随着在体内中的Caspase-1(P20)和白细胞介素(IL)-1β分泌的活性形式的过表达。通过用巨噬细胞中的Caspase-1抑制剂共同处理,部分地防止了NionP诱导的IL-1β分泌。此外,SiRNA介导的NLRP3在体外完全衰减NIONP诱导的细胞因子释放和巨噬细胞的Caspase-1活性。此外,NIONP诱导的NLRP3炎症组活化需要颗粒摄取和反应性氧物种生产。统称,我们的研究结果表明,NLRP3炎症组参与NIONP诱导的肺部炎症,并提供对抗NIONPS诱导的肺部毒性的新策略。

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