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职业接触工程纳米材料:工作场所暴露评估方法综述。

Occupational Exposures to Engineered Nanomaterials: a Review of Workplace Exposure Assessment Methods.

机构信息

Division of Field Studies and Engineering, National Institute for Occupational Safety and Health, 1090 Tusculum Ave, Cincinnati, OH, 45226, USA.

Professional Staffing Partners, 1008 Water Oak Dr SW, Aiken, SC, 29803, USA.

出版信息

Curr Environ Health Rep. 2021 Sep;8(3):223-234. doi: 10.1007/s40572-021-00316-6. Epub 2021 Jun 8.

Abstract

PURPOSE OF REVIEW

The purpose of this review is to consolidate exposure assessment methods for occupational research on engineered nanomaterials (ENMs) published within the past 5 years (2015-2020).

RECENT FINDINGS

The three ENMs that generated the highest volume of new research include titanium dioxide, graphene, and aluminum oxide. A multi-metric approach, using both online and offline instruments and analyses, has been found to be a useful method to characterize ENM workplace exposures and was commonly used in the recently published literature. Particle number concentration was the most common online exposure metric used, followed by the metrics of mass and surface area. There are currently no consensus methods for offline analyses of most ENMs. Researchers generally used gravimetric or elemental analyses for carbonaceous nanomaterials, titanium dioxide, and other nanometals, but there was little overlap between other ENM materials reviewed. Using biological markers of exposure, such as urinary oxidative stress biomarkers, as an indication of chronic exposure may also be useful for some ENMs and should be further researched. Generally, similar online instrumentation and offline electron microscopy methods were used for all ENMs. However, this consistency was not observed for offline mass analysis methods within specific ENMs. Consolidation of the most recent methods and results of exposure assessments within this broad material category can guide researchers toward future areas of study. Establishing consensus methods of exposure assessment for each individual ENM is crucial to characterizing workplace exposures, pooling data to fully understand their associated risks, and developing useful occupational exposure limits.

摘要

目的:本综述的目的是整合过去 5 年(2015-2020 年)发表的关于工程纳米材料(ENMs)职业研究的暴露评估方法。

最新发现:在新研究中,三种产生最高数量的纳米材料分别为二氧化钛、石墨烯和氧化铝。使用在线和离线仪器和分析的多指标方法已被证明是一种有用的方法,可以对 ENM 工作场所暴露进行特征描述,并且在最近发表的文献中经常使用。粒子数浓度是最常用的在线暴露指标,其次是质量和表面积指标。目前,对于大多数 ENM 的离线分析还没有共识方法。研究人员通常使用重量或元素分析来分析碳纳米材料、二氧化钛和其他纳米金属,但其他审查的 ENM 材料之间几乎没有重叠。使用生物标志物(如尿液氧化应激生物标志物)作为慢性暴露的指示,对于某些 ENM 也可能有用,应进一步研究。通常,所有 ENM 都使用类似的在线仪器和电子显微镜离线方法。然而,在特定的 ENM 中,离线质量分析方法并没有表现出这种一致性。在这一广泛的材料类别中,对最近的暴露评估方法和结果进行整合,可以为研究人员提供未来的研究方向。为每个单独的 ENM 建立暴露评估的共识方法对于描述工作场所暴露、汇总数据以充分了解相关风险以及制定有用的职业暴露限值至关重要。

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