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首页> 外文期刊>Toxicological sciences: An official journal of the Society of Toxicology >Effects of Cigarette Smoke, Cessation, and Switching to Two Heat-Not-Burn Tobacco Products on Lung Lipid Metabolism in C57BL/6 and Apoe(-/-) Mice-An Integrative Systems Toxicology Analysis
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Effects of Cigarette Smoke, Cessation, and Switching to Two Heat-Not-Burn Tobacco Products on Lung Lipid Metabolism in C57BL/6 and Apoe(-/-) Mice-An Integrative Systems Toxicology Analysis

机译:香烟烟雾,戒烟和转换为两种不烧的烟草制品对C57BL / 6和Apoe(-/-)小鼠肺脂质代谢的影响-综合系统毒理学分析

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The impact of cigarette smoke (CS), a major cause of lung diseases, on the composition and metabolism of lung lipids is incompletely understood. Here, we integrated quantitative lipidomics and proteomics to investigate exposure effects on lung lipid metabolismin a C57BL/6 and an Apolipoprotein E-deficient (Apoe(-/-)) mouse study. In these studies, mice were exposed to high concentrations of 3R4F reference CS, aerosol from potential modified risk tobacco products (MRTPs) or filtered air (Sham) for up to 8 months. The 2 assessed MRTPs, the prototypical MRTP for C57BL/6 mice and the Tobacco Heating System 2.2 for Apoe(-/-) mice, utilize "heat-not-burn" technologies and were each matched in nicotine concentrations to the 3R4F CS. After 2 months of CS exposure, some groups were either switched to the MRTP or underwent cessation. In both mouse strains, CS strongly affected several categories of lung lipids and lipid-related proteins. Candidate surfactant lipids, surfactant proteins, and surfactant metabolizing proteins were increased. Inflammatory eicosanoids, their metabolic enzymes, and several ceramide classes were elevated. Overall, CS induced a coordinated lipid response controlled by transcription regulators such as SREBP proteins and supported by other metabolic adaptations. In contrast, most of these changes were absent in the mice exposed to the potential MRTPs, in the cessation group, and the switching group. Our findings demonstrate the complex biological response of the lungs to CS exposure and support the benefits of cessation or switching to a heat-not-burn product using a design such as those employed in this study.
机译:香烟烟雾(CS)是肺部疾病的主要原因,其对肺脂质组成和代谢的影响尚不完全清楚。在这里,我们集成了定量脂质组学和蛋白质组学,以研究C57BL / 6和载脂蛋白E缺乏(Apoe(-/-))小鼠研究对肺脂质代谢的暴露影响。在这些研究中,小鼠暴露于高浓度的3R4F参考CS,来自潜在的改良风险烟草产品(MRTP)的气雾剂或过滤空气(Sham)长达8个月。评估的2种MRTP,C57BL / 6小鼠的原型MRTP和Apoe(-/-)小鼠的烟草加热系统2.2利用“不燃烧”技术,并且各自的尼古丁浓度与3R4F CS相匹配。经过2个月的CS暴露后,有些组要么改用了MRTP,要么接受了戒烟。在这两种小鼠品系中,CS都强烈影响了几类肺脂质和脂质相关蛋白。候选表面活性剂脂质,表面活性剂蛋白和表面活性剂代谢蛋白增加。炎性类花生酸,它们的代谢酶和几种神经酰胺类别升高。总体而言,CS诱导由转录调节剂(如SREBP蛋白)控制的脂质协同反应,并受到其他代谢适应的支持。相反,在暴露于潜在MRTP的小鼠,戒断组和转换组中,大多数这些变化不存在。我们的发现表明,肺部对CS暴露具有复杂的生物学反应,并使用本研究中所采用的设计来支持戒烟或改用不燃热产品的益处。

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