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Development of risk-based nanomaterial groups for occupational exposure control

机译:职业暴露控制的风险基纳米材料的发展

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摘要

Given the almost limitless variety of nanomaterials, it will be virtually impossible to assess the possible occupational health hazard of each nanomaterial individually. The development of science-based hazard and risk categories for nanomaterials is needed for decision-making about exposure control practices in the workplace. A possible strategy would be to select representative (benchmark) materials from various mode of action (MOA) classes, evaluate the hazard and develop risk estimates, and then apply a systematic comparison of new nanomaterials with the benchmark materials in the same MOA class. Poorly soluble particles are used here as an example to illustrate quantitative risk assessment methods for possible benchmark particles and occupational exposure control groups, given mode of action and relative toxicity. Linking such benchmark particles to specific exposure control bands would facilitate the translation of health hazard and quantitative risk information to the development of effective exposure control practices in the workplace. A key challenge is obtaining sufficient dose–response data, based on standard testing, to systematically evaluate the nanomaterials’ physical–chemical factors influencing their biological activity. Categorization processes involve both science-based analyses and default assumptions in the absence of substance-specific information. Utilizing data and information from related materials may facilitate initial determinations of exposure control systems for nanomaterials.
机译:鉴于纳米材料的种类几乎无限,因此几乎不可能单独评估每种纳米材料的职业健康危害。需要制定基于科学的纳米材料危害和风险类别,以便做出有关工作场所接触控制实践的决策。一种可能的策略是从各种作用方式(MOA)类中选择代表性(基准)材料,评估危害并制定风险估算,然后对新的纳米材料与同一MOA类中的基准材料进行系统比较。此处以难溶性颗粒为例,说明给定的作用方式和相对毒性,对可能的基准颗粒和职业接触对照组的定量风险评估方法。将此类基准粒子与特定的接触控制带关联起来,将有助于将健康危害和定量风险信息转化为工作场所有效接触控制实践的发展。一个关键的挑战是在标准测试的基础上获得足够的剂量反应数据,以系统地评估影响纳米材料生物活性的物理化学因素。分类过程涉及基于科学的分析和缺乏特定物质信息的默认假设。利用来自相关材料的数据和信息可以促进对纳米材料的曝光控制系统的初步确定。

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