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石墨烯纳米材料气溶胶在人体上呼吸道中的沉积

Deposition of graphene nanomaterial aerosols in human upper airways.

作者信息

Su Wei-Chung, Ku Bon Ki, Kulkarni Pramod, Cheng Yung Sung

机构信息

a Lovelace Respiratory Research Institute , Albuquerque , New Mexico.

b National Institute for Occupational Safety and Health , Cincinnati , Ohio.

出版信息

J Occup Environ Hyg. 2016;13(1):48-59. doi: 10.1080/15459624.2015.1076162.

Abstract

Graphene nanomaterials have attracted wide attention in recent years on their application to state-of-the-art technology due to their outstanding physical properties. On the other hand, the nanotoxicity of graphene materials also has rapidly become a serious concern especially in occupational health. Graphene naomaterials inevitably could become airborne in the workplace during manufacturing processes. The inhalation and subsequent deposition of graphene nanomaterial aerosols in the human respiratory tract could potentially result in adverse health effects to exposed workers. Therefore, investigating the deposition of graphene nanomaterial aerosols in the human airways is an indispensable component of an integral approach to graphene occupational health. For this reason, this study carried out a series of airway replica deposition experiments to obtain original experimental data for graphene aerosol airway deposition. In this study, graphene aerosols were generated, size classified, and delivered into human airway replicas (nasal and oral-to-lung airways). The deposition fraction and deposition efficiency of graphene aerosol in the airway replicas were obtained by a novel experimental approach. The experimental results acquired showed that the fractional deposition of graphene aerosols in airway sections studied were all less than 4%, and the deposition efficiency in each airway section was generally lower than 0.03. These results indicate that the majority of the graphene nanomaterial aerosols inhaled into the human respiratory tract could easily penetrate through the head airways as well as the upper part of the tracheobronchial airways and then transit down to the lower lung airways, where undesired biological responses might be induced.

摘要

近年来,石墨烯纳米材料因其优异的物理性能在先进技术应用方面受到广泛关注。另一方面,石墨烯材料的纳米毒性也迅速成为一个严重问题,尤其是在职业健康领域。在制造过程中,石墨烯纳米材料不可避免地会在工作场所空气中传播。吸入石墨烯纳米材料气溶胶并随后沉积在人体呼吸道中,可能会对接触的工人造成不良健康影响。因此,研究石墨烯纳米材料气溶胶在人体气道中的沉积是石墨烯职业健康综合方法中不可或缺的一部分。基于此,本研究进行了一系列气道复制品沉积实验,以获取石墨烯气溶胶气道沉积的原始实验数据。在本研究中,生成了石墨烯气溶胶,进行了尺寸分级,并将其输送到人体气道复制品(鼻腔和口腔至肺部气道)中。通过一种新颖的实验方法获得了石墨烯气溶胶在气道复制品中的沉积分数和沉积效率。获得的实验结果表明,在所研究的气道段中,石墨烯气溶胶的分数沉积均小于4%,且每个气道段的沉积效率普遍低于0.03。这些结果表明,吸入人体呼吸道的大多数石墨烯纳米材料气溶胶能够轻易穿透头部气道以及气管支气管气道的上部,然后向下传输至下肺部气道,在那里可能会引发不良的生物反应。

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