首页> 外文期刊>Environmental research >Application of high-resolution metabolomics to identify biological pathways perturbed by traffic-related air pollution
【24h】

Application of high-resolution metabolomics to identify biological pathways perturbed by traffic-related air pollution

机译:高分辨率代谢学的应用鉴定交通相关空气污染扰动的生物途径

获取原文
获取原文并翻译 | 示例
           

摘要

Background Substantial research has investigated the adverse effects of traffic-related air pollutants (TRAP) on human health. Convincing associations between TRAP and respiratory and cardiovascular diseases are known, but the underlying biological mechanisms are not well established. High-resolution metabolomics (HRM) is a promising platform for untargeted characterization of molecular mechanisms between TRAP and health indexes. Objectives: We examined metabolic perturbations associated with short-term exposures to TRAP, including carbon monoxide (CO), nitrogen dioxide (NO_2), ozone (O_3), fine particulate matter (PM_(2.5)), organic carbon (OC), and elemental carbon (EC) among 180 participants of the Center for Health Discovery and Well-Being (CHDWB), a cohort of Emory University-affiliated employees. Methods: A cross-sectional study was conducted on baseline visits of 180 CHDWB participants enrolled during 2008-2012, in whom HRM profiling was determined in plasma samples using liquid chromatography-high-resolution mass spectrometry with positive and negative electrospray ionization (ESI) modes. Ambient pollution concentrations were measured at an ambient monitor near downtown Atlanta. Metabolic perturbations associated with TRAP exposures were assessed following an untargeted metabolome-wide association study (MWAS) framework using feature-specific Tobit regression models, followed by enriched pathway analysis and chemical annotation. Results: Subjects were predominantly white (76.1%) and non-smokers (95.6%), and all had at least a high school education. In total, 7821 and 4123 metabolic features were extracted from the plasma samples by the negative and positive ESI runs, respectively. There are 3421 features significantly associated with at least one air pollutant by negative ion mode, and 1691 features by positive ion mode. Biological pathways enriched by features associated with the pollutants are primarily involved in nucleic acids damage/repair (e.g., pyrimidine metabolism), nutrient metabolism (e.g., fatty acid metabolism), and acute inflammation (e.g., histidine metabolism and tyrosine metabolism). NO_2 and EC were associated most consistently with these pathways. We confirmed the chemical identity of 8 metabolic features in negative ESI and 2 features in positive ESI, including metabolites closely linked to oxidative stress and inflammation, such as histamine, tyrosine, tryptophan, and proline. Conclusions: We identified a range of ambient pollutants, including components of TRAP, associated with differences in the metabolic phenotype among the cohort of 180 subjects. We found Tobit models to be a robust approach to handle missing data among the metabolic features. The results were encouraging of further use of HRM and MWAS approaches for characterizing molecular mechanisms underlying exposure to TRAP.
机译:背景技术实质性研究已经研究了与交通相关的空气污染物(陷阱)对人体健康的不利影响。令人信服的陷阱与呼吸和心血管疾病之间的协会是已知的,但潜在的生物机制并不明确。高分辨率代谢组(HRM)是一个有前途的平台,用于陷阱与健康指标之间的分子机制的未确定表征。目的:我们检查了与短期曝光相关的代谢扰动,包括捕获,包括一氧化碳(CO),二氧化氮(NO_2),臭氧(O_3),细颗粒物(PM_(2.5)),有机碳(OC)和元素碳(EC)180名卫生发现和福祉(CHDWB)的参与者中,是埃默里大学附属员工的队列。方法:在2008 - 2012年注册的180个CHDWB参与者的基线访问中进行了横截面研究,其中使用液相色谱 - 高分辨率质谱法测定了血浆样品中的HRM分析,具有正极和负电喷雾电离(ESI)模式。在亚特兰大市区附近的环境监测器中测量环境污染浓度。在使用特定特征的Tobit回归模型的未标准组合 - 宽的协会研究(MWAS)框架之后,评估与捕集曝光相关的代谢扰动,然后进行富集的途径分析和化学注释。结果:受试者主要是白色(76.1%)和非吸烟者(95.6%),所有人都至少是一所高中教育。总共通过负极和正ESI从血浆样品中提取7821和4123代谢特征。有3421个功能与负离子模式至少一个空气污染物显着相关,并且通过正离子模式具有1691个特征。由与污染物相关的特征富集的生物途径主要涉及核酸损伤/修复(例如,嘧啶代谢),营养代谢(例如,脂肪酸代谢)和急性炎症(例如,组氨酸代谢和酪氨酸代谢)。 NO_2和EC与这些途径最常相关。我们确认了8个代谢特征的化学特征在阴性ESI中的8个代谢特征,并且在阳性ESI中的2个特征,包括与氧化应激和炎症密切相关的代谢物,例如组胺,酪氨酸,色氨酸和脯氨酸。结论:我们确定了一系列环境污染物,包括捕集组分,与180个受试者队列中的代谢表型的差异相关。我们发现Tobit模型是一种强大的方法来处理代谢功能中缺失数据。结果令人抱歉,进一步使用HRM和MWA方法,用于表征陷阱的分子机制。

著录项

  • 来源
    《Environmental research》 |2021年第2期|110506.1-110506.10|共10页
  • 作者单位

    Gangarosa Department of Environmental Health Rollins School of Public Health Emory University Atlanta USA;

    Gangarosa Department of Environmental Health Rollins School of Public Health Emory University Atlanta USA;

    Gangarosa Department of Environmental Health Rollins School of Public Health Emory University Atlanta USA;

    Department of Biostatistics and Bioinformatics Rollins School of Public Health Emory University Atlanta USA;

    Division of Medicine Emory University School of Medicine Atlanta GA USA;

    Division of Pulmonary Allergy and Critical Care Medicine School of Medicine Emory University Atlanta United States;

    Gangarosa Department of Environmental Health Rollins School of Public Health Emory University Atlanta USA;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Traffic-related air pollution; High-resolution metabolomics; Metabolomics-wide association study; Pathway analysis;

    机译:与交通相关的空气污染;高分辨率代谢组学;代谢组科 - 宽协会研究;途径分析;

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号