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Occupational dermal exposure to nanoparticles and nano-enabled products: Part I-Factors affecting skin absorption

机译:接触纳米颗粒和纳米产品的职业性皮肤接触:第一部分影响皮肤吸收的因素

摘要

The paper reviews and critically assesses the evidence on the relevance of various skin uptake pathways for engineered nanoparticles, nano-objects, their agglomerates and aggregates (NOAA). It focuses especially in occupational settings, in the context of nanotoxicology, risk assessment, occupational medicine, medical/epidemiological surveillance efforts, and the development of relevant exposure assessment strategies. Skin uptake of nanoparticles is presented in the context of local and systemic health effects, especially contact dermatitis, skin barrier integrity, physico-chemical properties of NOAA, and predisposing risk factors, such as stratum corneum disruption due to occupational co-exposure to chemicals, and the presence of occupational skin diseases. Attention should be given to: (1) Metal NOAA, since the potential release of ions may induce local skin effects (e.g. irritation and contact dermatitis) and absorption of toxic or sensitizing metals; (2) NOAA with metal catalytic residue, since potential release of ions may also induce local skin effects and absorption of toxic metals; (3) rigid NOAA smaller than 45nm that can penetrate and permeate the skin; (4) non rigid or flexible NOAA, where due to their flexibility liposomes and micelles can penetrate and permeate the intact skin; (5) impaired skin condition of exposed workers. Furthermore, we outline possible situations where health surveillance could be appropriate where there is NOAA occupational skin exposures, e.g. when working with nanoparticles made of sensitizer metals, NOAA containing sensitizer impurities, and/or in occupations with a high prevalence of disrupted skin barrier integrity. The paper furthermore recommends a stepwise approach to evaluate risk related to NOAA to be applied in occupational exposure and risk assessment, and discusses implications related to health surveillance, labelling, and risk communication.
机译:该论文审查并严格评估了与工程化的纳米颗粒,纳米物体,它们的团聚体和聚集体(NOAA)的各种皮肤吸收途径相关的证据。它特别关注职业环境中的纳米毒理学,风险评估,职业医学,医学/流行病学监测工作以及制定相关的暴露评估策略。在局部和全身健康影响的情况下,特别是接触性皮炎,皮肤屏障完整性,NOAA的理化特性以及诱发因素,例如由于职业性共同接触化学物质而导致角质层破坏,和职业性皮肤病的存在。应注意:(1)金属NOAA,因为离子的潜在释放可能会引起局部皮肤效应(例如刺激和接触性皮炎)和有毒金属或敏化金属的吸收; (2)具有金属催化残留物的NOAA,因为离子的潜在释放也可能引起局部皮肤效应和有毒金属的吸收; (3)小于45nm的坚硬NOAA,可以穿透并渗透皮肤; (4)非刚性或柔性的NOAA,由于它们的柔性,脂质体和胶束可以渗透并渗透完整的皮肤; (5)裸露工人的皮肤状况受损。此外,我们概述了在NOAA职业性皮肤暴露(例如当使用由敏化金属制成的纳米颗粒,含有敏化杂质的NOAA和/或从事破坏皮肤屏障完整性的普遍工作时。本文还建议采用逐步方法来评估与NOAA有关的风险,以将其应用于职业暴露和风险评估中,并讨论与健康监测,标签和风险沟通有关的含义。

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