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Differences in inflammation and acute phase response but similar genotoxicity in mice following pulmonary exposure to graphene oxide and reduced graphene oxide

  • Stefan Bengtson
  • , Kristina B Knudsen
  • , Zdenka Orabi Kyjovská
  • , Trine Berthing
  • , Vidar Skaug
  • , Dan Henrik Marcus Levin
  • , Ismo K Koponen
  • , Abhay Shivayogimath
  • , Timothy J Booth
  • , Beatriz Alonso
  • , Amaia Pesquera
  • , Amaia Zurutuza
  • , Birthe L Thomsen
  • , Jesper T Troelsen
  • , Nicklas R Jacobsen
  • , Ulla Vogel
  • National Institute of Occupational Health (STAMI), Oslo, Norway.
  • Department of Micro- and Nanotechnology, Technical University of Denmark, Kgs. Lyngby, Denmark.
  • R&D Department, Graphenea S.A., San Sebastian, Spain.
  • Department of Science and Environment, Roskilde University, Roskilde, Denmark.

Research output: Contribution to journalJournal articleResearchpeer-review

Abstract

We investigated toxicity of 2-3 layered >1 μm sized graphene oxide (GO) and reduced graphene oxide (rGO) in mice following single intratracheal exposure with respect to pulmonary inflammation, acute phase response (biomarker for risk of cardiovascular disease) and genotoxicity. In addition, we assessed exposure levels of particulate matter emitted during production of graphene in a clean room and in a normal industrial environment using chemical vapour deposition. Toxicity was evaluated at day 1, 3, 28 and 90 days (18, 54 and 162 μg/mouse), except for GO exposed mice at day 28 and 90 where only the lowest dose was evaluated. GO induced a strong acute inflammatory response together with a pulmonary (Serum-Amyloid A, Saa3) and hepatic (Saa1) acute phase response. rGO induced less acute, but a constant and prolonged inflammation up to day 90. Lung histopathology showed particle agglomerates at day 90 without signs of fibrosis. In addition, DNA damage in BAL cells was observed across time points and doses for both GO and rGO. In conclusion, pulmonary exposure to GO and rGO induced inflammation, acute phase response and genotoxicity but no fibrosis.

Original languageEnglish
JournalPLoS One
Volume12
Issue number6
Pages (from-to)e0178355
ISSN1932-6203
DOIs
Publication statusPublished - 2017

Keywords

  • Journal Article

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  • EN -Gladiator Tox

    Vogel, U. B. (Project Manager), Abildtrup, A. (Project Participant), Asp, A.-K. (Project Participant), Thomsen, B. L. R. (Project Participant), Christiansen, E. (Project Participant), Hansen, E. H. (Project Participant), Terrida, E. B. (Project Participant), Pedersen, L. M. (Project Participant), Guldbrandsen, M. (Project Participant), Wagtberg, M. (Project Participant), Jacobsen, N. R. (Project Participant), Olsen, N. S. (Project Participant), Bengtson, S. (Project Participant), Berthing, T. (Project Participant), Vogel, U. B. (Project Participant), Tegner, U. (Project Participant) & Kyjovská, Z. O. (Project Participant)

    01/11/201331/05/2017

    Project: Research

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