Toxicological Assessment of ITER-Like Tungsten Nanoparticles Using an In Vitro 3D Human Airway Epithelium Model
Creators
- 1. Univ Paris Saclay, CEA, SCBM, F-91191 Gif Sur Yvette (France)
- 2. Avignon Univ, Aix Marseille Univ, CNRS, IRD, IMBE, F-13005 Marseille (France)
- 3. CEA, IRFM, F-13108 St Paul Les Durance (France)
- 4. Aix Marseille Univ, CNRS, IRD, INRA, Coll France, CEREGE, F-13545 Aix En Provence (France)
- 5. Univ Paris 13, Lab Sci Proc et Mat, Sorbonne Paris Cite, UPR 3407, CNRS, 99 Ave JB Clement, F-93430 Villetaneuse (France)
- 6. Univ Claude Bernard Lyon I, Univ Lyon, CNRS, Inst Analyt Sci ISA,UMR 5280, 5 Rue Doua, F-69100 Villeurbanne (France)
- 7. Univ Paris Saclay, IRAMIS, NIMBE, F-91191 Gif Sur Yvette (France)
- 8. Aix Marseille Univ, CEA, CNRS, BIAM,UMR7265,EIPM, F-13108 St Paul Les Durance (France)
Description
The International Thermonuclear Experimental Reactor (ITER) is an international project aimed at the production of carbon-free energy through the use of thermonuclear fusion. During ITER operation, in case of a loss-of-vacuum-accident, tungsten nanoparticles (W-NPs) could potentially be released into the environment and induce occupational exposure via inhalation. W-NPs toxicity was evaluated on MucilAirTM, a 3D in vitro cell model of the human airway epithelium. MucilAirTM was exposed for 24 h to metallic ITER-like milled W-NPs, tungstate (WO42-) and tungsten carbide cobalt particles alloy (WC-Co). Cytotoxicity and its reversibility were assessed using a kinetic mode up to 28 days after exposure. Epithelial tightness, metabolic activity and interleukin-8 release were also evaluated. Electron microscopy was performed to determine any morphological modification, while mass spectrometry allowed the quantification of W-NPs internalization and of W transfer through the MucilAirTM. Our results underlined a decrease in barrier integrity, no effect on metabolic activity or cell viability and a transient increase in IL-8 secretion after exposure to ITER-like milled W-NPs. These effects were associated with W-transfer through the epithelium, but not with intracellular accumulation. We have shown that, under our experimental conditions, ITER-like milled W-NPs have a minor impact on the MucilAirTM in vitro model. (authors)
Availability note (English)
Available from doi: http://dx.doi.org/10.3390/nano9101374Additional details
Identifiers
- DOI
- 10.3390/nano9101374;
Publishing Information
- Journal Title
- Nanomaterials
- Journal Volume
- 9
- Journal Issue
- no.10
- Journal Page Range
- p. 1-17
- ISSN
- 2079-4991
INIS
- Country of Publication
- Switzerland
- Country of Input or Organization
- France
- INIS RN
- 52086531
- Subject category
- S63: RADIATION, THERMAL, AND OTHER ENVIRONMENTAL POLLUTANT EFFECTS ON LIVING ORGANISMS AND BIOLOGICAL MATERIALS;
- Descriptors DEI
- ALLOYS; BIOLOGICAL RADIATION EFFECTS; EPITHELIUM; EXPERIMENTAL REACTORS; IN VITRO; INHALATION; ITER TOKAMAK; LYMPHOKINES; MASS SPECTROSCOPY; NANOPARTICLES; OCCUPATIONAL EXPOSURE; TOXICITY; TUNGSTATES; TUNGSTEN; TUNGSTEN CARBIDES
- Descriptors DEC
- ANIMAL TISSUES; BIOLOGICAL EFFECTS; BODY; CARBIDES; CARBON COMPOUNDS; CLOSED PLASMA DEVICES; ELEMENTS; GROWTH FACTORS; INTAKE; METALS; MITOGENS; ORGANIC COMPOUNDS; OXYGEN COMPOUNDS; PARTICLES; PROTEINS; RADIATION EFFECTS; REACTORS; REFRACTORY METAL COMPOUNDS; REFRACTORY METALS; RESEARCH AND TEST REACTORS; SPECTROSCOPY; THERMONUCLEAR DEVICES; THERMONUCLEAR REACTORS; TOKAMAK DEVICES; TOKAMAK TYPE REACTORS; TRANSITION ELEMENT COMPOUNDS; TRANSITION ELEMENTS; TUNGSTEN COMPOUNDS