Lipids potentially contribute to exacerbated inflammatory markers in Metabolic Syndrome mice acutely following pulmonary nanoparticle exposure.

IF 2.3 4区 医学 Q3 ENVIRONMENTAL SCIENCES
Akshada Shinde, Li Xia, Arjun Pitchai, Jenna N Swihart, Christina Ferreira, Jonathan Shannahan
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Abstract

Metabolic Syndrome (MetS) is a combination of disturbances including dyslipidemia. Epidemiological assessments demonstrated that individuals with MetS exhibit exacerbated inflammation following particulate inhalation. The mechanisms underlying these inflammatory responses remain to be elucidated, preventing the development of strategies to protect vulnerable and prevalent populations. Lipids dysregulated in MetS are intricately involved in inflammatory regulation. Particulate exposure-induced modifications in bioactive lipids were suggested to mediate inflammation in MetS susceptible mice. To assess this hypothesis, mice were fed a control diet or a high-fat western diet for 14-weeks to generate healthy or MetS models. Mice were exposed to silver nanoparticles (AgNPs) via oropharyngeal aspiration and acute toxicity endpoints determined 4-h post-exposure. Analysis of bronchoalveolar lavage fluid demonstrated that the AgNP exposure produced neutrophilia in both healthy and MetS mouse models, which was exacerbated in MetS mice. Gene expression of chemokine ligand-1 and macrophage inflammatory protein-2 were upregulated equally in both healthy and MetS mice. Pulmonary lipids were measured utilizing an MRM profiling approach, which noted induction of pro-inflammatory lipids in MetS following AgNP exposure compared to healthy mice. Specifically, arachidonic acid, prostaglandin-E2, prostaglandin-D2, 12-hydroxyeicosatetraenoic acid, and leukotriene-B4 were elevated in MetS mice following exposure, supporting the contribution of lipids to exacerbated inflammation. Further, pulmonary gene expression demonstrated upregulation of lipid metabolism enzymes arachidonate 15-lipoxygenase and prostaglandin-endoperoxide synthase 2 in MetS mice following AgNP exposure. Overall, data suggest dysregulation of pro-inflammatory lipid mediators contributes to early exacerbations in inflammatory responses observed in MetS animals following particulate exposures that might be targeted for therapeutic interventions.

在肺部纳米颗粒暴露后,脂质可能会加剧代谢综合征小鼠的炎症标志物。
代谢综合征(MetS)是包括血脂异常在内的一系列紊乱的组合。流行病学评估表明,MetS患者在吸入颗粒物后表现出加重的炎症。这些炎症反应背后的机制仍有待阐明,这阻碍了保护脆弱和流行人群的策略的发展。代谢障碍性脂质失调复杂地参与炎症调节。颗粒暴露诱导的生物活性脂质的改变被认为介导了MetS易感小鼠的炎症。为了验证这一假设,研究人员给小鼠喂食控制饮食或高脂肪西方饮食14周,以产生健康或MetS模型。小鼠通过口咽吸入暴露于银纳米粒子(AgNPs),并在暴露后4小时测定急性毒性终点。对支气管肺泡灌洗液的分析表明,AgNP暴露在健康和MetS小鼠模型中均产生中性粒细胞,在MetS小鼠模型中加剧。趋化因子配体-1和巨噬细胞炎症蛋白-2的基因表达在健康和MetS小鼠中均上调。利用MRM分析方法测量肺脂质,与健康小鼠相比,该方法注意到AgNP暴露后met中促炎脂质的诱导。具体来说,花生四烯酸、前列腺素e2、前列腺素d2、12-羟基二碳四烯酸和白三烯b4在met小鼠暴露后升高,支持脂质对炎症加剧的贡献。此外,在AgNP暴露后,MetS小鼠的肺基因表达显示脂质代谢酶花生四烯酸15-脂氧合酶和前列腺素内过氧化物合酶2上调。总的来说,数据表明,促炎脂质介质的失调有助于在MetS动物中观察到的炎症反应的早期恶化,这些炎症反应可能是治疗干预的目标。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
5.20
自引率
19.20%
发文量
46
审稿时长
8-16 weeks
期刊介绍: The Journal of Toxicology and Environmental Health, Part A , Current Issues is an authoritative journal that features strictly refereed original research in the field of environmental sciences, public and occupational health, and toxicology.
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