Automated crude oil vapor inhalation exposure system.

IF 2 4区 医学 Q4 TOXICOLOGY
Walter McKinney, Mark C Jackson, Brandon Law, Jeffrey S Fedan
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引用次数: 2

Abstract

Objective: Inhalation exposure systems are tools for delivering compounds (particles, vapors, and gases) under well-controlled conditions for toxicological testing. The objective of this project was to develop an automated computer-controlled system to expose small laboratory animals to precise concentrations of crude oil vapor (COV).Materials and Methods: Vapor from heated Deepwater Horizon surrogate oil was atomized into a fine mist then diluted with filtered air, then the air/droplet mixture was routed into an evaporation column with an high efficiency particulate air (HEPA) filter on its exit port. The HEPA filter was used to remove oil particles, thus ensuring only vapor would pass. The vapor was then introduced into a custom-built exposure chamber housing rats. A calibrated flame ionization detector was used to read the total volatile organic compounds (TVOC) in real time, and custom software was developed to automatically adjust the amount of oil entering the atomizer with a syringe pump. The software also controlled relative humidity and pressure inside the exposure chamber. Other exposure chamber environmental parameters, e.g. temperature and CO2 levels, were monitored. Four specific components within the COV were monitored during each exposure: benzene, toluene, ethylbenzene, and xylenes.Results: The TVOC vapor concentration control algorithm maintained median concentrations to within ±2 ppm of the target concentration (300 ppm) of TVOC during exposures lasting 6 h. The system could reach 90% of the desired target in less than 15 min, and repeat exposures were consistent and reproducible.Conclusion: This exposure system provided a highly automated tool for conducting COV inhalation toxicology studies.

Abstract Image

自动原油蒸汽吸入暴露系统。
目的:吸入暴露系统是在良好控制条件下为毒理学测试提供化合物(颗粒、蒸汽和气体)的工具。该项目的目的是开发一种自动化的计算机控制系统,使小型实验动物暴露于精确浓度的原油蒸汽(COV)中。材料和方法:从加热的深水地平线替代油中产生的蒸汽被雾化成细雾,然后用过滤后的空气稀释,然后将空气/液滴混合物送入蒸发柱,蒸发柱的出口装有高效微粒空气(HEPA)过滤器。HEPA过滤器用于去除油颗粒,从而确保只有蒸汽通过。然后将蒸汽引入一个专门为老鼠建造的暴露室。使用校准的火焰电离检测器实时读取总挥发性有机化合物(TVOC),并开发定制软件,通过注射泵自动调节进入雾化器的油量。该软件还控制了暴露室内的相对湿度和压力。其他暴露室环境参数,如温度和二氧化碳水平,都进行了监测。在每次暴露期间监测冠状病毒内的四种特定成分:苯、甲苯、乙苯和二甲苯。结果:TVOC蒸汽浓度控制算法在持续暴露6 h期间将TVOC的中位数浓度维持在目标浓度(300 ppm)的±2 ppm以内。该系统可在15 min内达到90%的目标,重复曝光一致性好,可重复性好。结论:该暴露系统为开展冠状病毒吸入毒理学研究提供了高度自动化的工具。
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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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