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Toxicity of boehmite nanoparticles: Impact of the ultrafine fraction and of the agglomerates size on cytotoxicity and pro-inflammatory response

  • Valérie Forest
  • , Mélanie Pailleux
  • , Jérémie Pourchez
  • , Delphine Boudard
  • , Maura Tomatis
  • , Bice Fubini
  • , Mohamed Sennour
  • , Jean François Hochepied
  • , Philippe Grosseau
  • , Michèle Cottier
  • LINA, Laboratoire Interdisciplinaire d'Étude des Nanoparticules Aérosolisées, EA4624
  • Centre Ingénierie et Santé
  • SFR IFRESIS
  • Ecole des Mines de Saint Etienne
  • University of Lyon
  • Université de Lyon
  • University Department of Psychiatry
  • University of Turin
  • Mines ParisTech

Research output: Contribution to journalArticlepeer-review

Abstract

Boehmite (γ-AlOOH) nanoparticles (NPs) are used in a wide range of industrial applications. However, little is known about their potential toxicity. This study aimed at a better understanding of the relationship between the physico-chemical properties of these NPs and their in vitro biological activity. After an extensive physico-chemical characterization, the cytotoxicity, pro-inflammatory response and oxidative stress induced by a bulk industrial powder and its ultrafine fraction were assessed using RAW264.7 macrophages. Although the bulk powder did not trigger a significant biological activity, pro-inflammatory response was highly enhanced with the ultrafine fraction. This observation was confirmed with boehmite NPs synthesized at the laboratory scale, with well-defined and tightly controlled physico-chemical features: toxicity was increased when NPs were dispersed. In conclusion, the agglomerates size of boehmite NPs has a major impact on their toxicity, highlighting the need to study not only raw industrial powders containing NPs but also the ultrafine fractions representative of respirable particles.

Original languageEnglish
Pages (from-to)545-553
Number of pages9
JournalInhalation Toxicology
Volume26
Issue number9
DOIs
Publication statusPublished - 1 Jan 2014

Keywords

  • Agglomerate size
  • Boehmite nanoparticles
  • Manufactured nanopowders
  • Toxicity
  • Ultrafine fraction

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