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The effects of particulate matter on atopic dermatitis symptoms are influenced by weather type: Application of spatial synoptic classification (SSC)

机译:颗粒物对特应性皮炎症状的影响受天气类型的影响:空间天气分类法(SSC)的应用

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The effects of weather and air pollution on atopic dermatitis (AD) flares have not been well investigated. To investigate the effects of particulate matter (PM) on AD symptoms by weather type, a total of 125 young children (76 boys and 49 girls) under 6 years of age with AD living in Seoul, Korea, were enrolled as a panel and followed for 17 months between August 2013 and December 2014. AD symptoms were recorded on a daily basis, including itching, sleep disturbance, erythema, dry skin, oozing, and edema. Daily weather was classified into 7 categories according to spatial synoptic classification (SSC). Personal exposure to PM with an aerodynamic diameter less than 2.5 and 10 pm (PM2.5 and PM10, respectively) in each individual was estimated with time weighted average concentrations considering outdoor and indoor levels of PMs and time to spend outdoors or indoors in a day. Generalized linear mixed models were used to analyze the effects of PM2.5 and PMio on AD symptoms, controlling for ambient temperature, humidity, age, sex, SCORAD (SCORing of AD) at enrollment, fever, day of week, and topical corticosteroid use. A total of 20,168 person-days of symptom records were collected. The presence of AD symptoms was higher on dry polar (DP) days (45.4%, P .0001) than on moist tropical (MT) days (37.7%, P .0001). Overall, the risk of AD symptoms significantly increased with increased exposure to PM2.5 and PM10. Among the 7 weather types, the risks of AD symptoms caused by PM2.5 and PMio exposure were significantly increased on dry moderate (DM) days, while not significant on the other weather types. In addition, lagged effect of PM2.5 up to 4 days was found on DM days. In conclusion, dry moderate weather type, particulate matters, and their modifying effects should be simultaneously considered for proper management of AD.
机译:天气和空气污染对特应性皮炎(AD)耀斑的影响尚未得到很好的研究。为了研究颗粒物(PM)对天气状况造成的AD症状的影响,共有125名6岁以下的AD儿童(居住在韩国首尔)(年龄分别为76名男孩和49名女孩)作为小组成员,并进行了随访。在2013年8月至2014年12月之间的17个月内,每天记录AD症状,包括瘙痒,睡眠障碍,红斑,皮肤干燥,渗血和浮肿。根据空间天气分类(SSC),每日天气分为7类。考虑到室外和室内的PM水平以及一天在户外或室内度过的时间,使用时间加权平均浓度估算每个人的空气动力学直径分别小于2.5和10 pm(分别为PM2.5和PM10)的PM暴露量。使用广义线性混合模型分析PM2.5和PMio对AD症状的影响,控制环境温度,湿度,年龄,性别,入学时的SCORAD(AD的SCORing),发烧,一周中的一天以及局部使用皮质类固醇。总共收集了20,168人日的症状记录。干旱极地(DP)天(45.4%,P <.0001)的AD症状比湿热带(MT)天(37.7%,P <.0001)高。总体而言,随着PM2.5和PM10暴露量的增加,AD症状的风险显着增加。在这7种天气类型中,由PM2.5和PMio暴露引起的AD症状的风险在中度(DM)天明显增加,而在其他天气类型上则不明显。另外,在DM日发现长达4天的PM2.5的滞后作用。总之,为了适当地控制AD,应同时考虑干燥的中等天气类型,颗粒物及其变质作用。

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