首页> 外文期刊>Atmospheric chemistry and physics >Oxidative potential of ambient water-soluble PM2.5 in the southeastern United States: contrasts in sources and health associations between ascorbic acid (AA) and dithiothreitol (DTT) assays
【24h】

Oxidative potential of ambient water-soluble PM2.5 in the southeastern United States: contrasts in sources and health associations between ascorbic acid (AA) and dithiothreitol (DTT) assays

机译:美国东南部环境水溶性PM2.5的氧化潜力:抗坏血酸(AA)和二硫醇(DTTT)测定的来源和健康联想对比

获取原文
获取原文并翻译 | 示例
           

摘要

The ability of certain components of particulate matter to induce oxidative stress through the generation of reactive oxygen species (ROS) in vivo may be one mechanism accounting for observed linkages between ambient aerosols and adverse health outcomes. A variety of assays have been used to measure this so-called aerosol oxidative potential. We developed a semi-automated system to quantify oxidative potential of filter aqueous extracts utilizing the dithiothreitol (DTT) assay and report here the development of a similar semi-automated system for the ascorbic acid (AA) assay. Approximately 500 PM2.5 filter samples collected in contrasting locations in the southeastern US were analyzed for a host of aerosol species, along with AA and DTT activities. We present a detailed contrast in findings from these two assays. Water-soluble AA activity was higher in summer and fall than in winter, with highest levels near heavily trafficked highways, whereas DTT activity was higher in winter compared to summer and fall and more spatially homogeneous. AA activity was nearly exclusively correlated with water-soluble Cu (raEuro-aEuro parts per thousand= aEuro-0.70-0.94 at most sites), whereas DTT activity was correlated with organic and metal species. Source apportionment models, positive matrix factorization (PMF) and a chemical mass balance method with ensemble-averaged source impact profiles (CMB-E), suggest a strong contribution from traffic emissions and secondary processes (e.g., organic aerosol oxidation or metals mobilization by secondary acids) to both AA and DTT activities in urban Atlanta. In contrast, biomass burning was a large source for DTT activity, but insignificant for AA. AA activity was not correlated with PM2.5 mass, while DTT activity co-varied strongly with mass (raEuro-aEuro parts per thousand= aEuro-0.49-0.86 across sites and seasons). Various linear models were developed to estimate AA and DTT activities for the central Atlanta Jefferson Street site, based on the CMB-E sources. The models were then used to estimate daily oxidative potential at this site over the 1998-2009 period. Time series epidemiological analyses were conducted to assess daily emergency department (ED) visits data for the five-county Atlanta metropolitan area based on the estimated 10-year backcast oxidative potential. Estimated AA activity was not statistically associated with any tested health outcome, while DTT activity was associated with ED visits for both asthma or wheeze and congestive heart failure. The findings point to the importance of both organic components and transition metals from biomass burning and mobile sources to adverse health outcomes in this region.
机译:通过在体内产生反应性氧物质(ROS)的某些组分以诱导氧化应激的能力可以是观察到的环境气溶胶和不良健康结果之间的联系的一种机制。已经使用各种测定来测量该所谓的气溶胶氧化潜力。我们开发了一种半自动系统,用于使用二硫醇(DTT)测定来量化过滤水提取物的氧化潜力,并在此报告用于抗坏血酸(AA)测定的类似半自动系统的开发。分析了大约500 PM2.5过滤器样本,用于东南部的对比地区的滤波器样本进行了一系列气溶胶物种,以及AA和DTT活性。我们在这两个测定中提出了一种详细的对比。水溶性AA活性在夏季和秋季跌幅较高,在贩运的高速公路附近最高水平,而DTT活性较高,而夏季和秋季和更加空间上均匀。 AA活性几乎完全与水溶性Cu(Raeuro-Aeuro零件每千次= Aeuro-0.70-0.94在大多数位点相关),而DTT活性与有机和金属物种相关。源分配模型,正矩阵分解(PMF)和具有集合平均源影响曲线(CMB-E)的化学质量平衡方法,表明了交通排放和二次过程的强烈贡献(例如,有机气溶胶氧化或由次级动员的金属酸还是城市亚特兰大的AA和DTT活动。相比之下,生物量燃烧是DTT活性的大来源,但AA的微不足道。 AA活性与PM2.5质量无关,而DTT活性与质量强烈相同(Raeuro-Aeuro零件跨越位点和季节的Aeuro-0.49-0.86)。基于CMB-E来源,开发了各种线性模型来估算亚特兰大杰斐逊街道站点的AA和DTT活动。然后,该模型在1998 - 2009年期间用于估算本网站的日常氧化潜力。采取时间序列流行病学分析进行评估,评估日常急诊部(ED)基于估计的10年的截至抗氧化潜力,访问五县亚特兰大大都市区数据。估计的AA活性与任何测试的健康结果没有统计相关,而DTT活性与哮喘或喘息和充血性心力衰竭的ED访问相关。该发现指出了来自生物量燃烧和移动来源的有机成分和过渡金属的重要性,在该地区的不利健康结果。

著录项

相似文献

  • 外文文献
  • 中文文献
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