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Target cells for methylsulphonyl-2,6-dichlorobenzene in the olfactory mucosa in mice

F Bahrami1, C van Hezik, A Bergman

  • 1Department of Environmental Toxicology, Uppsala University, Norbyvägen 18A, S-752 36, Uppsala, Sweden.

Insights

Methylsulphonyl-2,6-dichlorobenzene (diCl-MeSO(2)-B) targets mouse olfactory Bowman's glands. Cytochrome P450 activation generates toxic intermediates, while glutathione conjugation influences binding and toxicity.

Area of Science:

  • Toxicology
  • Neuroscience
  • Biochemistry

Background:

  • Methylsulphonyl-2,6-dichlorobenzene (diCl-MeSO(2)-B) causes olfactory mucosa damage.
  • Previous work showed irreversible binding and necrosis.

Purpose of the Study:

  • To investigate the tissue localization and toxicity of diCl-MeSO(2)-B.
  • To determine the role of cytochrome P450 (CYP) and glutathione (GSH) in its toxicity.

Main Methods:

  • Autoradiography and histopathology were used.
  • Mice were pretreated with CYP and GSH modulators.
  • Radioactive diCl-(14)C-MeSO(2)-B was administered.

Main Results:

  • diCl-MeSO(2)-B primarily bound to Bowman's glands.
  • CYP inhibition (metyrapone) reduced binding and toxicity.
  • GSH depletion (phorone) increased binding, olfactory bulb uptake, and lesion severity.

Conclusions:

  • CYP-mediated activation in Bowman's glands produces toxic intermediates.
  • GSH conjugation detoxifies these intermediates.
  • Toxicity is linked to the level of reactive intermediates.

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