In vitro assessment of acute airway effects from real-life mixtures of ozone-initiated oxidation products of limonene and printer exhaust.

IF 1.9 4区 环境科学与生态学 Q4 ENGINEERING, ENVIRONMENTAL Journal of Environmental Science and Health Part A-toxic\/hazardous Substances & Environmental Engineering Pub Date : 2024-01-01 Epub Date: 2024-09-26 DOI:10.1080/10934529.2024.2406113
Sandra Verstraelen, Frederick Maes, An Jacobs, Sylvie Remy, Evelien Frijns, Eddy Goelen, Inge Nelissen
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Abstract

In indoor air the reaction of ozone (O3) with terpenes may lead to the formation of irritating gas-phase products which may induce acute airway effects (i.e. sudden, short-term changes or symptoms related to the respiratory system). We aimed to perform an in vitro study on possible health effects of products from the O3-initiated reaction of limonene with printer exhaust, representing real-life mixtures in offices. Human bronchial epithelial cells were exposed for 1 hour (h) to limonene and O3, combined with printer exhaust. The resulting concentrations represented 34% and 6% of the generated initial concentrations of limonene (400 µg/m³) and O3 (417 µg/cm³), respectively, which were in range of high end realistic indoor concentrations. We observed that the reaction of limonene with O3 generated an increase of ultrafine particles within 1 h, with a significant increase of secondary reaction products 4-oxopentanal and 3-isopropenyl-6-oxo-heptanal at high end indoor air levels. Simultaneous printing activity caused the additional release of micron-sized particles and a further increase in reaction products. Relevant cellular endpoints to evaluate the possible induction of acute airway effects were measured. However, none of the test atmospheres representing office air was observed to induce these effects.

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体外评估现实生活中臭氧引发的柠檬烯氧化产物和打印机废气混合物对气道的急性影响。
在室内空气中,臭氧(O3)与萜烯反应可能会形成刺激性气相产物,这些产物可能会诱发急性气道效应(即与呼吸系统有关的突然、短期变化或症状)。我们的目的是对 O3 引发的柠檬烯与打印机废气反应产生的产物可能对健康造成的影响进行体外研究,这些产物代表了办公室中的真实混合物。人类支气管上皮细胞与柠檬烯和 O3 以及打印机废气接触 1 小时。所产生的浓度分别是所产生的柠檬烯(400 微克/立方米)和臭氧(417 微克/立方厘米)初始浓度的 34% 和 6%,处于现实室内浓度的高端范围。我们观察到,在 1 小时内,柠檬烯与 O3 反应产生的超细粒子增加,在室内空气的高端水平,次级反应产物 4-氧代戊醛和 3-异丙烯基-6-氧代庚醛显著增加。同时进行的印刷活动会释放出更多微米大小的颗粒,并进一步增加反应产物。测量了相关的细胞终点,以评估可能诱发的急性气道效应。不过,在代表办公室空气的测试气氛中,没有观察到任何一种气体会诱发这些效应。
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来源期刊
CiteScore
4.10
自引率
4.80%
发文量
93
审稿时长
3.0 months
期刊介绍: 14 issues per year Abstracted/indexed in: BioSciences Information Service of Biological Abstracts (BIOSIS), CAB ABSTRACTS, CEABA, Chemical Abstracts & Chemical Safety NewsBase, Current Contents/Agriculture, Biology, and Environmental Sciences, Elsevier BIOBASE/Current Awareness in Biological Sciences, EMBASE/Excerpta Medica, Engineering Index/COMPENDEX PLUS, Environment Abstracts, Environmental Periodicals Bibliography & INIST-Pascal/CNRS, National Agriculture Library-AGRICOLA, NIOSHTIC & Pollution Abstracts, PubSCIENCE, Reference Update, Research Alert & Science Citation Index Expanded (SCIE), Water Resources Abstracts and Index Medicus/MEDLINE.
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