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Dermal Uptake of Benzophenone-3 from Clothing

机译:服装中苯甲酮3的皮肤吸收

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摘要

Benzophenone-3 (also known as BP-3 or oxybenzone) is added to sunscreens, plastics, and some coatings to filter UV radiation. The suspected endocrine disruptor BP-3 has been detected in the air and settled dust of homes and is expected to redistribute from its original sources to other indoor compartments, including clothing. Given its physical and chemical properties, we hypothesized that dermal uptake from clothing could contribute to the body burden of this compound. First, cotton shirts were exposed to air at an elevated concentration of BP-3 for 32 days; the final air concentration was 4.4 μg/m~3. Next, three participants wore the exposed shirts for 3 h. After 3 h of exposure, participants wore their usual clothing during the collection of urine samples for the next 48 h. Urine was analyzed for BP-3, a metabolite (BP-1), and six other UV filters. The rate of urinary excretion of the sum of BP-1 and BP-3 increased for all participants during and following the 3 h of exposure. The summed mass of BP-1 and BP-3 excreted during the first 24 h attributable to wearing exposed t-shirts were 12, 9.9, and 82 μg for participants 1, 2, and 3, respectively. Analysis of these results, coupled with predictions of steady-state models, suggest that dermal uptake of BP-3 from clothing could meaningfully contribute to overall body burden.
机译:将苯甲酮3(也称为BP-3或氧苯甲酮)添加到防晒霜,塑料和某些涂料中以过滤UV辐射。怀疑的内分泌干扰物BP-3已在空气中和房屋尘埃中被发现,并有望从其原始来源重新分布到其他室内隔间,包括衣物。考虑到其理化性质,我们假设从衣服中摄取皮肤会加重该化合物的身体负担。首先,将棉质衬衫在BP-3浓度较高的空气中暴露32天;最终空气浓度为4.4μg/ m〜3。接下来,三名参与者穿着裸露的衬衫3小时。暴露3小时后,参与者在接下来的48小时收集尿液样本时穿了通常的衣服。分析了尿液中的BP-3,代谢物(BP-1)和其他六种紫外线过滤剂。在暴露的3小时内及之后,所有参与者的尿中BP-1和BP-3总和的排泄率增加。参与者1、2和3的最初24小时内,由于穿着裸露的T恤而排泄的BP-1和BP-3的总质量分别为12、9.9和82μg。对这些结果的分析以及对稳态模型的预测表明,皮肤从衣服中摄取BP-3可能对整体身体负担产生有意义的影响。

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  • 来源
    《Environmental Science & Technology》 |2017年第19期|11371-11379|共9页
  • 作者单位

    Civil, Architectural and Environmental Engineering, Missouri University of Science and Technology, Rolla, Missouri 65409, United States;

    International Centre for Indoor Environment and Energy, Department of Civil Engineering, Technical University of Denmark, Lyngby, 2800 Denmark;

    International Centre for Indoor Environment and Energy, Department of Civil Engineering, Technical University of Denmark, Lyngby, 2800 Denmark,Environmental and Occupational Health Sciences Institute, Rutgers University, Piscataway, New Jersey 08901, United States;

    Department of Material Analysis and Indoor Chemistry, Fraunhofer WKI, Braunschweig 38108, Germany,Institute of Combustion Technology, German Aerospace Center, Stuttgart, 70569, Germany;

    Department of Material Analysis and Indoor Chemistry, Fraunhofer WKI, Braunschweig 38108, Germany;

    Civil, Architectural and Environmental Engineering, Missouri University of Science and Technology, Rolla, Missouri 65409, United States;

    Department of Growth and Reproduction, University of Copenhagen, Copenhagen 2100, Denmark,International Center for Research and Research Training in Endocrine Disruption of Male Reproduction and Child Health (EDMaRC), Rigshospitalet, University of Copenhagen, Copenhagen 2100, Denmark;

    International Centre for Indoor Environment and Energy, Department of Civil Engineering, Technical University of Denmark, Lyngby, 2800 Denmark;

    International Centre for Indoor Environment and Energy, Department of Civil Engineering, Technical University of Denmark, Lyngby, 2800 Denmark;

    Department of Growth and Reproduction, University of Copenhagen, Copenhagen 2100, Denmark,International Center for Research and Research Training in Endocrine Disruption of Male Reproduction and Child Health (EDMaRC), Rigshospitalet, University of Copenhagen, Copenhagen 2100, Denmark;

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