Increased surface area of halloysite nanotubes due to surface modification predicts lung inflammation and acute phase response after pulmonary exposure in mice.


Journal

Environmental toxicology and pharmacology
ISSN: 1872-7077
Titre abrégé: Environ Toxicol Pharmacol
Pays: Netherlands
ID NLM: 9612020

Informations de publication

Date de publication:
Jan 2020
Historique:
received: 25 07 2019
revised: 14 09 2019
accepted: 17 09 2019
pubmed: 11 11 2019
medline: 15 4 2020
entrez: 11 11 2019
Statut: ppublish

Résumé

The toxicological potential of halloysite nanotubes (HNTs) and variants after functional alterations to surface area are not clear. We assessed the toxicological response to HNTs (NaturalNano (NN)) before and after surface etching (NN-etched). Potential cytotoxicity of the two HNTs was screened in vitro in MutaTMMouse lung epithelial cells. Lung inflammation, acute phase response and genotoxicity were assessed 1, 3, and 28 days after a single intratracheal instillation of adult female C57BL/6 J BomTac mice. The doses were 6, 18 or 54 μg of HNTs, compared to vehicle controls and the Carbon black NP (Printex 90) of 162 μg/mouse. The cellular composition of bronchoalveolar lavage (BAL) fluid was determined as a measure of lung inflammation. The pulmonary and hepatic acute phase responses were assessed by Serumamyloida mRNA levels in lung and liver tissue by real-time quantitative PCR. Pulmonary and systemic genotoxicity were analyzed by the alkaline comet assay as DNA strand breaks in BAL cells, lung and liver tissue. The etched HNT (NN-etched) had 4-5 times larger BET surface area than the unmodified HNT (NN). Instillation of NN-etched at the highest dose induced influx of neutrophils into the lungs at all time points and increased Saa3 mRNA levels in lung tissue on day 1 and 3 after exposure. No genotoxicity was observed at any time point. In conclusion, functionalization by etching increased BET surface area of the studied NN and enhanced pulmonary inflammatory toxicity in mice.

Identifiants

pubmed: 31707308
pii: S1382-6689(19)30140-1
doi: 10.1016/j.etap.2019.103266
pii:
doi:

Substances chimiques

Clay T1FAD4SS2M

Types de publication

Journal Article

Langues

eng

Sous-ensembles de citation

IM

Pagination

103266

Informations de copyright

Copyright © 2019. Published by Elsevier B.V.

Auteurs

Kenneth Klingenberg Barfod (KK)

National Research Centre for the Working Environment, Lersø Parkallé 105, Copenhagen, DK-2100, Denmark; Department of Veterinary and Animal Sciences, University of Copenhagen, Copenhagen, DK-1014, Denmark.

Katja Maria Bendtsen (KM)

National Research Centre for the Working Environment, Lersø Parkallé 105, Copenhagen, DK-2100, Denmark.

Trine Berthing (T)

National Research Centre for the Working Environment, Lersø Parkallé 105, Copenhagen, DK-2100, Denmark.

Antti Joonas Koivisto (AJ)

National Research Centre for the Working Environment, Lersø Parkallé 105, Copenhagen, DK-2100, Denmark.

Sarah Søs Poulsen (SS)

National Research Centre for the Working Environment, Lersø Parkallé 105, Copenhagen, DK-2100, Denmark.

Ester Segal (E)

Department of Biotechnology and Food Engineering, Technion - Israel Institute of Technology, Haifa, 32000, Israel.

Eveline Verleysen (E)

Sciensano, Groeselenbergstraat 99, 1180, Uccle, Belgium.

Jan Mast (J)

Sciensano, Groeselenbergstraat 99, 1180, Uccle, Belgium.

Andreas Holländer (A)

Fraunhofer-Institut für Angewandte Polymerforschung, Geiselbergstr. 69, 14476, Potsdam, Germany.

Keld Alstrup Jensen (KA)

National Research Centre for the Working Environment, Lersø Parkallé 105, Copenhagen, DK-2100, Denmark.

Karin Sørig Hougaard (KS)

National Research Centre for the Working Environment, Lersø Parkallé 105, Copenhagen, DK-2100, Denmark; Department of Public Health, University of Copenhagen, Copenhagen, DK-1014, Denmark.

Ulla Vogel (U)

National Research Centre for the Working Environment, Lersø Parkallé 105, Copenhagen, DK-2100, Denmark; DTU Health Tech, Technical University of Denmark, Kgs. Lyngby, DK-2800, Denmark. Electronic address: ubv@nrcwe.dk.

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Classifications MeSH