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Genotoxicity analysis of two halonitromethanes, a novel group of disinfection by-products (DBPs), in human cells treated in vitro

  • Universitat Autonoma de Barcelona
    ,
  • Instituto de Salud Carlos III
Research Output:
Contribution to journal
Article
Peer-review

Publication Information

Output type

Research Output:
Contribution to journal
Article
Peer-review

Original language

English

Pages from-to (Number of pages)

Pages 232-238 (7 pages)

Journal (Volume, Issue Number)

Environmental Research (Volume 109, Issue 3)

Publication milestones

  • Published - 04/2009

Publication status

Published - 04/2009

ISSN

0013-9351

Publication IDs

  • Scopus: 61749088401
  • PubMed: 19200951

Abstract

Halonitromethanes (HNMs) constitute an emerging class of disinfection by-products (DBPs) produced when chlorine and/or ozone are used for water treatment. The HNMs are structurally similar to halomethanes, but have a nitro-group in place of hydrogen bonded to the central carbon atom. Since little information exists on the genotoxic potential of HNMs, a study has been carried out with two HNM compounds, namely trichloronitromethane (TCNM) and bromonitromethane (BNM) by using human cells. Primary damage induction has been measured with the Comet assay, which is used to determine both the repair kinetics of the induced damage and the proportion of induced oxidative damage. In addition, the fixed DNA damage has been evaluated by using the micronucleus (MN) assay. The results obtained indicate that both compounds are genotoxic, inducing high levels of DNA breaks in the Comet assay, and that this DNA damage repairs well over time. In addition, oxidized bases constitute a high proportion of DNA-induced damage (50-75%). Contrarily, no positive effects were observed in the frequency of micronucleus, which measures both clastogenic and aneugenic effects, neither using TK6 cells nor peripheral blood lymphocytes. This lack of fixed genetic damage would minimize the potential mutagenic risk associated with HNMs exposure.

Funding Details

D. Liviac is supported by a postgraduate fellowship from the Universitat Autònoma de Barcelona. This investigation has been supported in part by the Spanish Ministries of Education and Science (SAF2005–07643-CO3–03) and Environment (A036/2007/3–14.4), and by the Generalitat de Catalunya (CIRIT, 2005SGR-00136).
FundersFunding numbers
Spanish Ministries of Education and Science
SAF2005–07643-CO3–03, A036/2007/3–14.4
Generalitat de Catalunya
-
CIRIT
2005SGR-00136
UAB
-