Aerosol exposure at air-liquid-interface (AE-ALI) in vitro toxicity system characterisation: Particle deposition and the importance of air control responses

IF 2.6 3区 医学 Q3 TOXICOLOGY Toxicology in Vitro Pub Date : 2024-07-05 DOI:10.1016/j.tiv.2024.105889
Alison Buckley , Chang Guo , Adam Laycock , Xianjin Cui , Marie-France Belinga-Desaunay-Nault , Eugenia Valsami-Jones , Martin Leonard , Rachel Smith
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Abstract

Experimental systems allowing aerosol exposure (AE) of cell cultures at the air-liquid-interface (ALI) are increasingly being used to assess the toxicity of inhaled contaminants as they are more biomimetic than standard methods using submerged cultures, however, they require detailed characterisation before use. An AE-ALI system combining aerosol generation with a CULTEX® exposure chamber was characterised with respect to particle deposition and the cellular effects of filtered air (typical control) exposures. The effect of system parameters (electrostatic precipitator voltage, air flowrate to cells and insert size) on deposition efficiency and spatial distribution were investigated using ICP-MS and laser ablation ICP-MS, for an aerosol of CeO2 nanoparticles. Deposition varied with conditions, but appropriate choice of operating parameters produced broadly uniform deposition at suitable levels. The impact of air exposure duration on alveolar cells (A549) and primary small airway epithelial cells (SAECs) was explored with respect to LDH release and expression of selected genes. Results indicated that air exposures could have a significant impact on cells (e.g., cytotoxicity and expression of genes, including CXCL1, HMOX1, and SPP1) at relatively short durations (from 10 mins) and that SAECs were more sensitive. These findings indicate that detailed system characterisation is essential to ensure meaningful results.

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空气-液体-界面气溶胶暴露(AE-ALI)体外毒性系统特征:粒子沉积和空气控制反应的重要性。
允许细胞培养物在空气-液体-界面(ALI)上进行气溶胶暴露(AE)的实验系统越来越多地被用于评估吸入污染物的毒性,因为它们比使用浸没培养物的标准方法更具生物仿真性。结合气溶胶生成和 CULTEX® 暴露室的 AE-ALI 系统对颗粒沉积和过滤空气(典型对照)暴露的细胞效应进行了表征。使用 ICP-MS 和激光烧蚀 ICP-MS 研究了系统参数(静电除尘器电压、进入细胞的空气流量和插入物尺寸)对 CeO2 纳米粒子气溶胶的沉积效率和空间分布的影响。沉积随条件的变化而变化,但适当选择操作参数可在合适的水平上产生大致均匀的沉积。在 LDH 释放和选定基因表达方面,研究了空气暴露持续时间对肺泡细胞(A549)和原发性小气道上皮细胞(SAECs)的影响。结果表明,在相对较短的持续时间内(10 分钟起),空气暴露会对细胞产生显著影响(如细胞毒性和基因表达,包括 CXCL1、HMOX1 和 SPP1),而且 SAECs 更为敏感。这些发现表明,详细的系统特征描述对于确保获得有意义的结果至关重要。
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来源期刊
Toxicology in Vitro
Toxicology in Vitro 医学-毒理学
CiteScore
6.50
自引率
3.10%
发文量
181
审稿时长
65 days
期刊介绍: Toxicology in Vitro publishes original research papers and reviews on the application and use of in vitro systems for assessing or predicting the toxic effects of chemicals and elucidating their mechanisms of action. These in vitro techniques include utilizing cell or tissue cultures, isolated cells, tissue slices, subcellular fractions, transgenic cell cultures, and cells from transgenic organisms, as well as in silico modelling. The Journal will focus on investigations that involve the development and validation of new in vitro methods, e.g. for prediction of toxic effects based on traditional and in silico modelling; on the use of methods in high-throughput toxicology and pharmacology; elucidation of mechanisms of toxic action; the application of genomics, transcriptomics and proteomics in toxicology, as well as on comparative studies that characterise the relationship between in vitro and in vivo findings. The Journal strongly encourages the submission of manuscripts that focus on the development of in vitro methods, their practical applications and regulatory use (e.g. in the areas of food components cosmetics, pharmaceuticals, pesticides, and industrial chemicals). Toxicology in Vitro discourages papers that record reporting on toxicological effects from materials, such as plant extracts or herbal medicines, that have not been chemically characterized.
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