iNOS Inhibition Reduces Lung Mechanical Alterations and Remodeling Induced by Particulate Matter in Mice.

IF 2 Q3 RESPIRATORY SYSTEM Pulmonary Medicine Pub Date : 2019-03-11 eCollection Date: 2019-01-01 DOI:10.1155/2019/4781528
Carla Máximo Prado, Renato Fraga Righetti, Fernanda Degobbi Tenorio Quirino Dos Santos Lopes, Edna Aparecida Leick, Fernanda Magalhães Arantes-Costa, Francine Maria de Almeida, Paulo Hilário Nascimento Saldiva, Thais Mauad, Iolanda de Fátima Lopes Calvo Tibério, Mílton de Arruda Martins
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引用次数: 15

Abstract

Background. The epidemiologic association between pulmonary exposure to ambient particulate matter (PM) and acute lung damage is well known. However, the mechanism involved in the effects of repeated exposures of PM in the lung injury is poorly documented. This study tested the hypotheses that chronic nasal instillation of residual oil fly ash (ROFA) induced not only distal lung and airway inflammation but also remodeling. In addition, we evaluated the effects of inducible nitric oxide inhibition in these responses. For this purpose, airway and lung parenchyma were evaluated by quantitative analysis of collagen and elastic fibers, immunohistochemistry for macrophages, neutrophils, inducible nitric oxide synthase (iNOS), neuronal nitric oxide synthase (nNOS), and alveolar septa 8-iso prostaglandin F2α (8-iso-PGF-2α) detection. Anesthetized in vivo (airway resistance, elastance, H, G, and Raw) respiratory mechanics were also analyzed. C57BL6 mice received daily 60ul of ROFA (intranasal) for five (ROFA-5d) or fifteen days (ROFA-15d). Controls have received saline (SAL). Part of the animals has received 1400W (SAL+1400W and ROFA-15d+1400W), an iNOS inhibitor, for four days before the end of the protocol. A marked neutrophil and macrophage infiltration and an increase in the iNOS, nNOS, and 8-iso-PGF2 α expression was observed in peribronchiolar and alveolar wall both in ROFA-5d and in ROFA-15d groups. There was an increment of the collagen and elastic fibers in alveolar and airway walls in ROFA-15d group. The iNOS inhibition reduced all alterations induced by ROFA, except for the 8-iso-PGF2 α expression. In conclusion, repeated particulate matter exposures induce extracellular matrix remodeling of airway and alveolar walls, which could contribute to the pulmonary mechanical changes observed. The mechanism involved is, at least, dependent on the inducible nitric oxide activation.

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iNOS抑制可降低颗粒物质诱导的小鼠肺力学改变和重塑。
背景。肺部暴露于环境颗粒物(PM)与急性肺损伤之间的流行病学关联是众所周知的。然而,反复暴露于PM对肺损伤的影响的机制文献很少。本研究验证了长期鼻腔注入残油粉煤灰(ROFA)不仅会引起远端肺和气道炎症,还会引起重塑的假设。此外,我们评估了诱导型一氧化氮抑制在这些反应中的作用。为此,通过定量分析胶原和弹性纤维、免疫组化检测巨噬细胞、中性粒细胞、诱导型一氧化氮合酶(iNOS)、神经元型一氧化氮合酶(nNOS)和肺泡间隔8-异前列腺素F2α (8-iso- pgf -2α)来评估气道和肺实质。体内麻醉(气道阻力、弹性、H、G和Raw)呼吸力学也进行了分析。C57BL6小鼠每天给予60毫升ROFA(鼻内),连续5天(ROFA-5d)或15天(ROFA-15d)。对照组接受生理盐水(SAL)。部分动物在方案结束前4天接受1400W (SAL+1400W和ROFA-15d+1400W)的iNOS抑制剂。ROFA-5d组和ROFA-15d组细支气管周围和肺泡壁均可见明显的中性粒细胞和巨噬细胞浸润,iNOS、nNOS和8-iso-PGF2 α表达升高。ROFA-15d组肺泡壁和气道壁的胶原蛋白和弹性纤维增加。iNOS抑制降低了ROFA诱导的除8-iso-PGF2 α表达外的所有改变。综上所述,反复暴露颗粒物可诱导气道和肺泡壁细胞外基质重塑,从而导致肺力学变化。所涉及的机制至少依赖于诱导型一氧化氮活化。
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来源期刊
Pulmonary Medicine
Pulmonary Medicine RESPIRATORY SYSTEM-
CiteScore
10.20
自引率
0.00%
发文量
4
审稿时长
14 weeks
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