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用于体外毒性(NACIVT)研究的纳米气溶胶室

Nano aerosol chamber for in-vitro toxicity (NACIVT) studies.

作者信息

Jeannet Natalie, Fierz Martin, Kalberer Markus, Burtscher Heinz, Geiser Marianne

机构信息

Institute of Anatomy, University of Bern , Bern , Switzerland .

出版信息

Nanotoxicology. 2015 Feb;9(1):34-42. doi: 10.3109/17435390.2014.886739. Epub 2014 Feb 20.

Abstract

Inhalation of ambient air particles or engineered nanoparticles (NP) handled as powders, dispersions or sprays in industrial processes and contained in consumer products pose a potential and largely unknown risk for incidental exposure. For efficient, economical and ethically sound evaluation of health hazards by inhaled nanomaterials, animal-free and realistic in vitro test systems are desirable. The new Nano Aerosol Chamber for in-vitro Toxicity studies (NACIVT) has been developed and fully characterized regarding its performance. NACIVT features a computer-controlled temperature and humidity conditioning, preventing cellular stress during exposure and allowing long-term exposures. Airborne NP are deposited out of a continuous air stream simultaneously on up to 24 cell cultures on Transwell® inserts, allowing high-throughput screening. In NACIVT, polystyrene as well as silver particles were deposited uniformly and efficiently on all 24 Transwell® inserts. Particle-cell interaction studies confirmed that deposited particles reach the cell surface and can be taken up by cells. As demonstrated in control experiments, there was no evidence for any adverse effects on human bronchial epithelial cells (BEAS-2B) due to the exposure treatment in NACIVT. The new, fully integrated and transportable deposition chamber NACIVT provides a promising tool for reliable, acute and sub-acute dose-response studies of (nano)particles in air-exposed tissues cultured at the air-liquid interface.

摘要

在工业生产过程中以粉末、分散体或喷雾形式处理并包含在消费品中的环境空气颗粒物或工程纳米颗粒(NP),可能会因意外接触而带来潜在且很大程度上未知的风险。为了通过吸入纳米材料对健康危害进行高效、经济且符合伦理的评估,无动物且逼真的体外测试系统是很有必要的。用于体外毒性研究的新型纳米气溶胶腔室(NACIVT)已被开发出来,并对其性能进行了全面表征。NACIVT具有计算机控制的温度和湿度调节功能,可防止暴露过程中的细胞应激,并允许进行长期暴露。空气中的NP从连续气流中同时沉积到多达24个Transwell® 小室插入物上的细胞培养物中,从而实现高通量筛选。在NACIVT中,聚苯乙烯以及银颗粒均能均匀且高效地沉积在所有24个Transwell® 小室插入物上。颗粒与细胞相互作用研究证实,沉积的颗粒能够到达细胞表面并可被细胞摄取。如对照实验所示,没有证据表明NACIVT中的暴露处理会对人支气管上皮细胞(BEAS - 2B)产生任何不利影响。新型的、完全集成且可运输的沉积腔室NACIVT为在气液界面培养的暴露于空气中的组织中对(纳米)颗粒进行可靠的急性和亚急性剂量反应研究提供了一个有前景的工具。

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