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多壁碳纳米管通过促进半胱氨酰白三烯的产生加剧变应性气道嗜酸性粒细胞炎症。

Multi-Walled Carbon Nanotubes Augment Allergic Airway Eosinophilic Inflammation by Promoting Cysteinyl Leukotriene Production.

作者信息

Carvalho Sophia, Ferrini Maria, Herritt Lou, Holian Andrij, Jaffar Zeina, Roberts Kevan

机构信息

Center for Environmental Health Sciences, Department of Biomedical and Pharmaceutical Sciences, University of Montana, Missoula, MT, United States.

出版信息

Front Pharmacol. 2018 Jun 5;9:585. doi: 10.3389/fphar.2018.00585. eCollection 2018.

Abstract

Multi-walled carbon nanotubes (MWCNT) have been reported to promote lung inflammation and fibrosis. The commercial demand for nanoparticle-based materials has expanded rapidly and as demand for nanomaterials grows, so does the urgency of establishing an appreciation of the degree of health risk associated with their increased production and exposure. In this study, we examined whether MWCNT inhalation elicited pulmonary eosinophilic inflammation and influenced the development of allergic airway inflammatory responses. Our data revealed that instillation of FA21 MWCNT into the airways of mice resulted in a rapid increase, within 24 h, in the number of eosinophils present in the lungs. The inflammatory response elicited was also associated with an increase in the level of cysteinyl leukotrienes (cysLTs) present in the bronchoalveolar lavage fluid. CysLTs were implicated in the airway inflammatory response since pharmacological inhibition of their biosynthesis using the 5-lipoxygenase inhibitor Zileuton resulted in a marked reduction in the severity of inflammation observed. Moreover, FA21 MWCNT entering the airways of mice suffering from house dust mite (HDM)-elicited allergic lung inflammation markedly exacerbated the intensity of the airway inflammation. This response was characterized by a pulmonary eosinophilia, lymphocyte infiltration, and raised cysLT levels. The severity of pulmonary inflammation caused by either inhalation of MWCNT alone or in conjunction with HDM allergen correlated with the level of nickel present in the material, since preparations that contained higher levels of nickel (FA21, 5.54% Ni by weight) were extremely effective at eliciting or exacerbating inflammatory or allergic responses while preparations containing lower amounts of nickel (FA04, 2.54% Ni by weight) failed to initiate or exacerbate pulmonary inflammation. In summary, instillation of high nickel MWCNT into the lungs promoted eosinophilic inflammation and caused an intense exacerbation of pre-existing allergic airway inflammation by facilitating cysLT biosynthesis. These findings suggest that exposure to airborne MWCNT is likely to have adverse inflammatory effects in individuals suffering from atopic asthma and, in this context, further investigation of the therapeutic effects of pharmacological agents that block leukotriene synthesis is warranted.

摘要

据报道,多壁碳纳米管(MWCNT)会引发肺部炎症和纤维化。基于纳米颗粒材料的商业需求迅速扩大,随着对纳米材料需求的增长,认识到与其产量增加和暴露相关的健康风险程度的紧迫性也与日俱增。在本研究中,我们研究了吸入MWCNT是否会引发肺部嗜酸性粒细胞炎症并影响过敏性气道炎症反应的发展。我们的数据显示,将FA21 MWCNT滴入小鼠气道后,肺部嗜酸性粒细胞数量在24小时内迅速增加。引发的炎症反应还与支气管肺泡灌洗液中半胱氨酰白三烯(cysLTs)水平的升高有关。CysLTs与气道炎症反应有关,因为使用5-脂氧合酶抑制剂齐留通对其生物合成进行药理抑制后,观察到的炎症严重程度显著降低。此外,FA21 MWCNT进入患有屋尘螨(HDM)引发的过敏性肺部炎症的小鼠气道后,明显加剧了气道炎症的强度。这种反应的特征是肺部嗜酸性粒细胞增多、淋巴细胞浸润和cysLT水平升高。单独吸入MWCNT或与HDM变应原一起吸入所引起的肺部炎症严重程度与材料中镍的含量相关,因为含镍量较高(FA21,重量比为5.54%镍)的制剂在引发或加剧炎症或过敏反应方面极其有效,而含镍量较低(FA04,重量比为2.54%镍)的制剂则无法引发或加剧肺部炎症。总之,将高镍MWCNT滴入肺部会促进嗜酸性粒细胞炎症,并通过促进cysLT生物合成导致已有的过敏性气道炎症强烈加剧。这些发现表明,暴露于空气中的MWCNT可能会对患有特应性哮喘的个体产生不良炎症影响,在这种情况下,有必要进一步研究阻断白三烯合成的药物制剂的治疗效果。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8463/5996183/b19f33868a8c/fphar-09-00585-g001.jpg

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