Inflammation related to inhalation of nano and micron sized iron oxides: a systematic review

Aurora Moen, Helge Johnsen, Danail Hristozov, Alex Zabeo, Lisa Pizzol, Oihane Ibarrola, Gary Hannon, Sarah Holmes, Fikirte Debebe Zegeye, Ulla Vogel, Adriele Prina Mello, Shan Zienolddiny-Narui, Håkan Wallin

Publikation: Bidrag til tidsskriftReviewpeer review

Abstract

Inhalation exposure to iron oxide occurs in many workplaces and respirable aerosols occur during thermal processes (e.g. welding, casting) or during abrasion of iron and steel products (e.g. cutting, grinding, machining, polishing, sanding) or during handling of iron oxide pigments. There is limited evidence of adverse effects in humans specifically linked to inhalation of iron oxides. This contrasts to oxides of other metals used to alloy or for coating of steel and iron of which several have been classified as being hazardous by international and national agencies. Such metal oxides are often present in the air at workplaces. In general, iron oxides might therefore be regarded as low-toxicity, low-solubility (LTLS) particles, and are often considered to be nontoxic even if very high and prolonged inhalation exposures might result in diseases. In animal studies, such exposures lead to cancer, fibrosis and other diseases. Our hypothesis was that pulmonary-workplace exposure during manufacture and handling of SPION preparations might be harmful. We therefore conducted a systematic review of the relevant literature to understand how iron oxides deposited in the lung are related to acute and subchronic pulmonary inflammation. We included one human and several in vivo animal studies published up to February 2023. We found 25 relevant studies that were useful for deriving occupational exposure limits (OEL) for iron oxides based on an inflammatory reaction. Our review of the scientific literature indicates that lowering of health-based occupational exposure limits might be considered.

OriginalsprogEngelsk
TidsskriftNanotoxicology
Vol/bind18
Udgave nummer6
Sider (fra-til)511-526
Antal sider16
ISSN1743-5390
DOI
StatusUdgivet - sep. 2024

Emneord

  • Nano
  • Partikler
  • Review
  • Toksikologi
  • Kræft

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