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Size and site dependent biological hazard potential of particulate matters collected from different heights at the vicinity of a building construction

机译:从建筑物建筑附近不同高度收集的颗粒物的大小和位置相关的生物危害潜力

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摘要

Although building constructions are a recurring part of urbanization, the health risk of particulate matters (PM) originating from such activities have seldom been subjected to detailed studies. We sought to characterize the relative risk of air borne PM collected from different heights (ground and top floor) of a building adjacent to a building under early phase of construction. We determined the physico-chemical properties such as size and shape, elemental composition and surface charge of the PM. The oxidative stress dependent cytotoxic and pro-inflammatory responses were assessed in BEAS-2B and RAW 264.7 cell lines using high-content-screening platforms. In comparison to top floor, the total mass of PM collected from ground floor was two-three folds higher and the mass fraction was dominated by PM20-35. Elemental analysis showed abundance of Si, Al, K, Ca and Fe in bigger PM while for PM0.25-0.5 it was mostly constituted by C and crystals rich in S and K. PM caused NF kappa B activation, secretion of pro-inflammatory cytokines and cytotoxicity wherein PM0.25-0.5 was the most potent among the tested PM. Estimated exposure level and lung burden together with the data on hazard potential were used for
机译:尽管房屋建筑是城市化的重现部分,但很少对源自此类活动的颗粒物(PM)的健康风险进行详细研究。我们试图表征从处于建筑早期阶段的建筑物附近的建筑物的不同高度(地面和顶层)收集的空气传播PM的相对风险。我们确定了物理化学性质,例如颗粒的大小和形状,元素组成和表面电荷。使用高含量筛选平台在BEAS-2B和RAW 264.7细胞系中评估了氧化应激依赖性细胞毒性和促炎反应。与顶层相比,从底层收集的PM的总质量高出三倍,且质量分数主要由PM20-35决定。元素分析表明,较大的PM中含有大量的Si,Al,K,Ca和Fe,而PM0.25-0.5中则主要由C和富含S和K的晶体构成。PM引起NFκB活化,促炎性分泌物细胞因子和细胞毒性,其中PM0.25-0.5在测试的PM中最有效。估计的暴露水平和肺部负担以及潜在危害数据用于

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