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The Relationship Between Inadvertent Ingestion and Dermal Exposure Pathways: A New Integrated Conceptual Model and a Database of Dermal and Oral Transfer Efficiencies

机译:误食与皮肤接触途径之间的关系:一种新的综合概念模型和一个皮肤和口腔转移效率数据库

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Occupational inadvertent ingestion exposure is ingestion exposure due to contact between the mouth and contaminated hands or objects. Although individuals are typically oblivious to their exposure by this route, it is a potentially significant source of occupational exposure for some substances. Due to the continual flux of saliva through the oral cavity and the non-specificity of biological monitoring to routes of exposure, direct measurement of exposure by the inadvertent ingestion route is challenging; predictive models may be required to assess exposure. The work described in this manuscript has been carried out as part of a project to develop a predictive model for estimating inadvertent ingestion exposure in the workplace. As inadvertent ingestion exposure mainly arises from hand-to-mouth contact, it is closely linked to dermal exposure. We present a new integrated conceptual model for dermal and inadvertent ingestion exposure that should help to increase our understanding of ingestion exposure and our ability to simultaneously estimate exposure by the dermal and ingestion routes. The conceptual model consists of eight compartments (source, air, surface contaminant layer, outer clothing contaminant layer, inner clothing contaminant layer, hands and arms layer, perioral layer, and oral cavity) and nine mass transport processes (emission, deposition, resuspension or evaporation, transfer, removal, redistribution, decontamination, penetration and/or permeation, and swallowing) that describe event-based movement of substances between compartments (e.g. emission, deposition, etc.). This conceptual model is intended to guide the development of predictive exposure models that estimate exposure from both the dermal and the inadvertent ingestion pathways. For exposure by these pathways the efficiency of transfer of materials between compartments (for example from surfaces to hands, or from hands to the mouth) are important determinants of exposure. A database of transfer efficiency data relevant for dermal and inadvertent ingestion exposure was developed, containing 534 empirically measured transfer efficiencies measured between 1980 and 2010 and reported in the peer-reviewed and grey literature. The majority of the reported transfer efficiencies (84%) relate to transfer between surfaces and hands, but the database also includes efficiencies for other transfer scenarios, including surface-to-glove, hand-to-mouth, and skin-to-skin. While the conceptual model can provide a framework for a predictive exposure assessment model, the database provides detailed information on transfer efficiencies between the various compartments. Together, the conceptual model and the database provide a basis for the development of a quantitative tool to estimate inadvertent ingestion exposure in the workplace.
机译:职业疏忽性摄入暴露是由于嘴与受污染的手或物体之间的接触而引起的摄入暴露。尽管个人通常不会通过这种途径暴露,但对于某些物质来说,它是潜在的重要职业暴露源。由于唾液不断地流过口腔,并且对暴露途径的生物学监测没有特异性,因此通过无意的摄入途径直接测量暴露是一项挑战。可能需要使用预测模型来评估暴露程度。本手稿中描述的工作已作为开发预测模型的项目的一部分,该模型用于估计工作场所的无意摄入量。由于无意的摄入暴露主要来自手与口的接触,因此它与皮肤接触密切相关。我们为皮肤和意外摄入暴露提出了一个新的综合概念模型,该模型应有助于增进我们对摄入暴露的理解以及我们通过皮肤和摄入途径同时估算暴露的能力。概念模型由八个隔室(源,空气,表面污染物层,外衣污染物层,内衣污染物层,手和手臂层,口周层和口腔)和九个质量传输过程(排放,沉积,重悬或蒸发,转移,去除,重新分布,去污,渗透和/或渗透和吞咽,描述了物质在隔室之间基于事件的运动(例如,排放,沉积等)。该概念模型旨在指导预测性暴露模型的开发,该模型可估计来自皮肤和意外摄入途径的暴露。对于通过这些途径进行的暴露,物质在隔室之间转移的效率(例如,从表面到手,或从手到嘴)是决定暴露的重要因素。建立了与皮肤和无意摄入接触有关的转移效率数据的数据库,该数据库包含534个根据经验测得的1980年至2010年之间测得的转移效率,并在同行评审和灰色文献中进行了报道。报告的大多数转移效率(84%)与表面和手之间的转移有关,但是数据库还包括其他转移方案的效率,包括从表面到手套,从手到嘴和从皮肤到皮肤。虽然概念模型可以为预测性暴露评估模型提供框架,但数据库提供了有关各个隔间之间转移效率的详细信息。概念模型和数据库一起为开发定量工具以估算工作场所的无意摄入量提供了基础。

著录项

  • 来源
    《Annals of Occupational Hygiene》 |2012年第9期|p.1000-1012|共13页
  • 作者单位

    1 Institute of Occupational Medicine Research Avenue North Edinburgh EH14 4AP, UK;

    2 Environmental &

    Occupational Medicine, University of Aberdeen, Aberdeen AB25 2ZP, UK;

    3 Institute for Risk Assessment Sciences, Universiteit Utrecht PO Box 80.178 NL-3508 TD, Utrecht, The Netherlands;

    4 Chemicals Regulation Directorate, Health and Safety Executive Redgrave Court Bootle L20 7HS, UK;

    5 TNO Quality of Life PO Box 360 3700 AJ, Zeist, The Netherlands;

    6 Eurometaux Avenue de Broqueville 12 1150 Brussels, Belgium;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-18 01:11:10

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