Insights into mustard gas keratopathy: Characterizing corneal layer-specific changes in mice exposed to nitrogen

Hamid Alemi1, Shima Dehghani1, Aytan Musayeva1

  • 1Schepens Eye Research Institute of Massachusetts Eye and Ear, Department of Ophthalmology, Harvard Medical School, Boston, MA, USA.

Insights

This study developed a mouse model for nitrogen mustard (NM) induced ocular injury, revealing biphasic corneal damage and long-term effects on the cornea. DNA oxidation appears to contribute to these persistent changes.

Area of Science:

  • Ophthalmology
  • Toxicology
  • Regenerative Medicine

Background:

  • Mustard agents like sulfur mustard (SM) and nitrogen mustard (NM) cause significant ocular surface damage.
  • Mustard gas keratopathy (MGK) encompasses various corneal disorders resulting from chemical exposure.
  • Understanding the mechanisms of MGK is crucial for developing effective treatments.

Purpose of the Study:

  • To establish a reproducible mouse model of mustard gas keratopathy (MGK) using ocular nitrogen mustard (NM) exposure.
  • To characterize the structural and cellular changes in the cornea following NM exposure over time.
  • To investigate the role of DNA oxidation in the long-term ocular effects of NM.

Main Methods:

  • Ocular exposure of mice to a controlled concentration of nitrogen mustard (NM).
  • Longitudinal assessment using slit lamp examination, fluorescein staining, anterior segment optical coherence tomography (AS-OCT), and in vivo confocal microscopy (IVCM).
  • Histological evaluation and immunostaining of corneal tissues to analyze cellular and microstructural changes.

Main Results:

  • A biphasic pattern of ocular injury was observed, primarily affecting the corneal epithelium and anterior stroma.
  • NM exposure led to epithelial erosions, subbasal nerve plexus alterations, stromal edema, and reduced endothelial cell density.
  • Long-term effects included dysmorphic basal epithelial cells, limbal stem cell changes, and increased DNA oxidation.

Conclusions:

  • The developed mouse model effectively replicates human ocular injuries from mustard gas exposure.
  • Nitrogen mustard (NM) causes persistent corneal damage, including endothelial dysfunction and limbal stem cell alterations.
  • DNA oxidation is implicated as a contributing factor to the long-term ocular sequelae of nitrogen mustard exposure.

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