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Estimated time-varying exposures to air emissions from animal feeding operations and childhood asthma

机译:估计动物饲养和儿童哮喘所致的空气排放随时间变化

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Background/aim: Industrial-scale animal feeding operations (AFOs) have adverse impacts on regional air quality. Air emissions include endotoxins and other pro-inflammatory components, and exposure may cause airway inflammation and respiratory effects in susceptible individuals residing nearby. We aimed to develop and validate metrics for estimating time-varying exposure to AFO air pollution in surrounding communities and, secondly, to determine whether exposure is associated with health effects in children with asthma.Methods: We conducted a longitudinal panel study of N = 58 children with asthma in an agricultural region of Washington State with a high density of dairy AFOs. Children were followed for up to 26 months with repeated measures of respiratory health (N = 2023 interviews; N = 3853 lung function measurements); urine was collected in a subcohort (N = 16) at six-day intervals over three months and analyzed for leukotriene E4 (LTE4), a biomarker of systemic inflammation (N = 138 measurements). We developed an approach to estimate daily exposure to AFO airborne emissions based on distance to AFOs, AFO size, and daily wind speed and direction, and validated the estimates against direct measurements of ammonia, a chemical marker of AFO emissions, measured biweekly at 18 sites across the region for 14 months. Short-term relationships between AFO pollutant exposure and outcomes were assessed using regression models accounting for within-participant correlation and several potential confounders.Results: Estimates of daily AFO air pollution correlated moderately well with outdoor ammonia measurements (N = 842; r = 0.62). Forced expiratory volume in 1 s (FEV1) as percent of predicted was 2.0% (95% CI: 0.5, 3.5) lower with each interquartile increase in previous day exposure, but no associations with asthma symptoms were observed. There was suggestive evidence that LTE4 concentrations were higher following days of elevated exposure to AFO emissions (p = 0.06).Conclusions: A simple metric of time-varying exposure to AFO emissions was correlated with daily outdoor ammonia levels. Children with asthma may be adversely affected by exposure to AFO emissions.
机译:背景/目标:工业规模的动物饲养业务(AFO)对区域空气质量产生不利影响。空气中的排放物包括内毒素和其他促炎成分,暴露于空气中可能导致附近易感人群的气道发炎和呼吸作用。我们旨在开发和验证度量标准,以估计周围社区AFO空气污染随时间的变化,其次,确定暴露是否与哮喘儿童的健康影响有关。方法:我们进行了N = 58的纵向面板研究华盛顿州某农业地区患有哮喘的儿童,其乳制品AFO密度很高。对儿童进行长达26个月的随访,并重复测量其呼吸健康状况(N = 2023访谈; N = 3853肺功能测量);在三个月中以六天的间隔在亚人群(N = 16)中收集尿液,并分析白三烯E4(LTE4),这是全身性炎症的生物标志物(N = 138个测量值)。我们开发了一种方法,可根据距AFO的距离,AFO大小以及每日风速和风向来估算AFO空气中的日暴露量,并对照氨气(AFO排放的化学标记)的直接测量值进行了验证,该值每两周在18个站点进行测量在整个地区持续14个月。使用考虑了参与者内部相关性和若干潜在混杂因素的回归模型,评估了AFO污染物暴露与结果之间的短期关系。结果:每日AFO空气污染的估计值与室外氨气测量值的相关性中等(N = 842; r = 0.62) 。随着前一天暴露的每四分位数的增加,强制呼气量在1 s(FEV1)中的预测百分比降低了2.0%(95%CI:0.5,3.5),但未观察到与哮喘症状的关联。有暗示性的证据表明,随着AFO排放暴露的增加,LTE4浓度会升高(p = 0.06)。结论:一个简单的随时间变化的AFO排放暴露量与每日室外氨水平相关。患有哮喘的儿童可能会受到暴露于AFO排放物的不利影响。

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