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Modular air–liquid interface aerosol exposure system (MALIES) to study toxicity of nanoparticle aerosols in 3D-cultured A549 cells in vitro

M. J. Küstner; D. Eckstein; D. Brauer; P. Mai; J. Hampl; F. Weise; B. Schuhmann; G. Hause; F. Glahn; H. Foth; A. Schober
Archives of Toxicology · Vol. 98, Issue 4 · pp. 1061-1080 · 2024

Abstract

We present a novel lung aerosol exposure system named MALIES (modular air–liquid interface exposure system), which allows three-dimensional cultivation of lung epithelial cells in alveolar-like scaffolds (MatriGrids ® ) and exposure to nanoparticle aerosols. MALIES consists of multiple modular units for aerosol generation, and can be rapidly assembled and commissioned. The MALIES system was proven for its ability to reliably produce a dose-dependent toxicity in A549 cells using CuSO 4 aerosol. Cytotoxic effects of BaSO 4 - and TiO 2 -nanoparticles were investigated using MALIES with the human lung tumor cell line A549 cultured at the air–liquid interface . Experiments with concentrations of up to 5.93 × 10 5 (BaSO 4 ) and 1.49 × 10 6 (TiO 2 ) particles/cm 3 , resulting in deposited masses of up to 26.6 and 74.0 µg/cm 2 were performed using two identical aerosol exposure systems in two different laboratories. LDH, resazurin reduction and total glutathione were measured. A549 cells grown on MatriGrids ® form a ZO-1- and E-Cadherin-positive epithelial barrier and produce mucin and surfactant protein. BaSO 4 -NP in a deposited mass of up to 26.6 µg/cm 2 resulted in mild, reversible damage (~ 10% decrease in viability) to lung epithelium 24 h after exposure. TiO 2 -NP in a deposited mass of up to 74.0 µg/cm 2 did not induce any cytotoxicity in A549 cells 24 h and 72 h after exposure, with the exception of a 1.7 fold increase in the low exposure group in laboratory 1. These results are consistent with previous studies showing no significant damage to lung epithelium by short-term treatment with low concentrations of nanoscale BaSO 4 and TiO 2 in in vitro experiments.

Bibliographic Information

JournalArchives of Toxicology
PublisherSpringer
Publication Date2024-04-01
Publication Year2024
Volume98
Issue4
Pages1061-1080
Document TypeJournal Article
Print ISSN0340-5761
eISSN1432-0738
DOI10.1007/s00204-023-03673-3

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NARA Access Coverage1930-01-01~Current
Journal Homepagehttps://www.springer.com/journal/204
Publisher PageOpen Publisher Page
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