Natural mineral fibers: conducting inhalation toxicology studies - part A: Libby Amphibole aerosol generation and characterization method development.

IF 2 4区 医学 Q4 TOXICOLOGY
Anbo Wang, Amit Gupta, Michael D Grimm, David T Pressburger, Barney R Sparrow, Jamie S Richey, John R Shaw, Karen E Elsass, Georgia K Roberts, Pei-Li Yao, Matthew D Stout, Benjamin J Ellis, Robyn L Ray
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Abstract

Background: Asbestos has been classified as a human carcinogen, and exposure may increase the risk of diseases associated with impaired respiratory function. As the range of health effects and airborne concentrations that result in health effects across asbestos-related natural mineral fiber types are not fully understood, the National Institute of Environmental Health Sciences has established a series of research studies to characterize hazards of natural mineral fibers after inhalation exposure. This paper presents the method development work of this research project.

Results: A prototype nose-only exposure system was fabricated to explore the feasibility of generating natural mineral fiber aerosol for in vivo inhalation toxicity studies. The prototype system consisted of a slide bar aerosol generator, a distribution/delivery system and an exposure carousel. Characterization tests conducted using Libby Amphibole 2007 (LA 2007) demonstrated the prototype system delivered stable and controllable aerosol concentration to the exposure carousel. Transmission electron microscopy (TEM) analysis of aerosol samples collected at the exposure port showed the average fiber length and width were comparable to the bulk LA 2007. TEM coupled with energy dispersive spectrometry (EDS) and selected area electron diffraction (SAED) analysis further confirmed fibers from the aerosol samples were consistent with the bulk LA 2007 chemically and physically.

Conclusions: Characterization of the prototype system demonstrated feasibility of generating LA 2007 fiber aerosols appropriate for in vivo inhalation toxicity studies. The methods developed in this study are suitable to apply to a multiple-carousel exposure system for a rat inhalation toxicity testing using LA 2007.

天然矿物纤维:开展吸入毒理学研究--A 部分:利比闪石气溶胶生成和表征方法开发。
背景:石棉已被列为人类致癌物质,接触石棉可能会增加患与呼吸功能受损有关的疾病的风险。由于对与石棉相关的各类天然矿物纤维的健康影响范围和导致健康影响的空气传播浓度尚不完全了解,美国国家环境健康科学研究所开展了一系列研究,以确定吸入暴露后天然矿物纤维的危害特征。本文介绍了该研究项目的方法开发工作:结果:为了探索在体内吸入毒性研究中产生天然矿物纤维气溶胶的可行性,我们制作了一个原型纯鼻暴露系统。原型系统包括一个滑杆气溶胶发生器、一个分配/输送系统和一个暴露转盘。使用 Libby Amphibole 2007(LA 2007)进行的特性测试表明,原型系统可向暴露转盘输送稳定、可控的气溶胶浓度。对曝光口收集的气溶胶样本进行的透射电子显微镜(TEM)分析表明,平均纤维长度和宽度与批量 LA 2007 相当。透射电子显微镜与能量色散光谱法(EDS)和选区电子衍射法(SAED)分析相结合,进一步证实了气溶胶样品中的纤维在化学和物理方面与块状 LA 2007 一致:原型系统的表征证明了生成适合体内吸入毒性研究的 LA 2007 纤维气溶胶的可行性。本研究中开发的方法适用于使用 LA 2007 进行大鼠吸入毒性测试的多转盘暴露系统。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Inhalation Toxicology
Inhalation Toxicology 医学-毒理学
CiteScore
4.10
自引率
4.80%
发文量
38
审稿时长
6-12 weeks
期刊介绍: Inhalation Toxicology is a peer-reviewed publication providing a key forum for the latest accomplishments and advancements in concepts, approaches, and procedures presently being used to evaluate the health risk associated with airborne chemicals. The journal publishes original research, reviews, symposia, and workshop topics involving the respiratory system’s functions in health and disease, the pathogenesis and mechanism of injury, the extrapolation of animal data to humans, the effects of inhaled substances on extra-pulmonary systems, as well as reliable and innovative models for predicting human disease.
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