Real-time characterization of chemical threat agent aerosols for improvement of inhalation studies.

IF 2 4区 医学 Q4 TOXICOLOGY Inhalation Toxicology Pub Date : 2023-01-01 Epub Date: 2023-09-20 DOI:10.1080/08958378.2023.2254323
Mirjam de Bruin-Hoegée, Duurt P W Alkema, Ruud W Busker, Marloes J A Joosen, Arjan L van Wuijckhuijse
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Abstract

Objectives: Deliberate or accidental release of chemical treat agents in the aerosol form can cause an inhalation hazard. Since the relationship between aerosol properties and health hazards is poorly understood, research into the toxicological consequences of exposure to aerosols is needed. The aim of the present study was to improve the characterization of particles for inhalation studies.

Methods: Several aerosol measurement technologies were compared for their potential to physically and chemically characterize particles in the inhalation size range in real-time. For that purpose, we compared the performance of an aerodynamic particle sizer (APS), a scanning mobility particle sizer (SMPS) and an electrical low-pressure impactor (ELPI) in an experimental set-up in which particles were generated by a Collison nebulizer and subsequently delivered into a nose-only inhalation exposure system.

Results: We found that more than 95% of the number of particles, equating to more than 83% of the mass generated by the 6-jet Collison nebulizer, were below 0.5 µm. To characterize the entire size range, the APS as single detector has only limited value, therefore the addition of supplementary instrumentation such as the SMPS or the ELPI is required. After real-time measurements in the size range of 30 nm to 10 µm, ex-situ chromatographic chemical analysis is essential for quantification of the delivered mass concentration.

Conclusions: In summary, the present work demonstrates the utility of the ELPI technology, in combination with off-line analysis, for characterizing aerosols with various size, shape, charge, and composition. This makes the aerosol generation and analysis suite described a promising tool for quantitative inhalation exposure studies.

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用于改进吸入研究的化学威胁剂气溶胶的实时表征。
目的:故意或意外释放气溶胶形式的化学治疗剂可能导致吸入危险。由于人们对气溶胶特性与健康危害之间的关系知之甚少,因此需要对暴露于气溶胶的毒理学后果进行研究。本研究的目的是改善吸入研究中颗粒物的特性。方法:比较几种气溶胶测量技术在实时物理和化学表征吸入尺寸范围内颗粒的潜力。为此,我们在一个实验装置中比较了空气动力学粒度仪(APS)、扫描迁移率粒度仪(SMPS)和电动低压冲击器(ELPI)的性能,在该装置中,颗粒由Collison喷雾器产生,随后输送到仅鼻吸入暴露系统中。结果:我们发现,超过95%的颗粒数量,相当于超过83%的6喷嘴Collison喷雾器产生的质量,低于0.5 µm。为了表征整个尺寸范围,APS作为单个探测器的值有限,因此需要添加补充仪器,如SMPS或ELPI。在尺寸范围为30的实时测量后 nm至10 µm,非原位色谱化学分析对于定量输送的质量浓度至关重要。结论:总之,本工作证明了ELPI技术与离线分析相结合,用于表征各种尺寸、形状、电荷和成分的气溶胶的实用性。这使得气溶胶生成和分析套件被描述为定量吸入暴露研究的一个有前途的工具。
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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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