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Updated: Jul 5, 2025

Induction of Ocular Surface Inflammation and Collection of Involved Tissues
Published on: August 4, 2022
Mouse Model of Nitrogen Mustard Ocular Surface Injury Characterization and Sphingolipid Signaling
Sandip K Basu1, Amanda Prislovsky1,2, Nataliya Lenchik1
1Department of Ophthalmology, The University of Health Science Centre, Memphis, TN 38163, USA.
Abstract:
Vesicating chemicals like sulfur mustard (SM) or nitrogen mustard (NM) can cause devastating damage to the eyes, skin, and lungs. Eyes, being the most sensitive, have complicated pathologies that can manifest immediately after exposure (acute) and last for years (chronic). No FDA-approved drug is available to be used as medical counter measures (MCMs) against such injuries. Understanding the pathological mechanisms in acute and chronic response of the eye is essential for developing effective MCMs. Here, we report the clinical and histopathological characterization of a mouse model of NM-induced ocular surface injury (entire surface) developed by treating the eye with 2% (w/v) NM solution for 5 min. Unlike the existing models of specific injury, our model showed severe ocular inflammation, including the eyelids, structural deformity of the corneal epithelium and stroma, and diminished visual and retinal functions. We also observed alterations of the inflammatory markers and their expression at different phases of the injury, along with an activation of acidic sphingomyelinase (aSMase), causing an increase in bioactive sphingolipid ceramide and a reduction in sphingomyelin levels. This novel ocular surface mouse model recapitulated the injuries reported in human, rabbit, and murine SM or NM injury models. NM exposure of the entire ocular surface in mice, which is similar to accidental or deliberate exposure in humans, showed severe ocular inflammation and caused irreversible alterations to the corneal structure and significant vision loss. It also showed an intricate interplay between inflammatory markers over the injury period and alteration in sphingolipid homeostasis in the early acute phase.
Insights
Nitrogen mustard (NM) causes severe eye injuries. This new mouse model shows NM-induced ocular damage, inflammation, and vision loss, aiding the development of medical countermeasures for chemical eye injuries.
Area of Science:
- Ophthalmology
- Toxicology
- Pathology
Background:
- Vesicating agents like nitrogen mustard (NM) cause severe ocular injuries with no approved medical countermeasures.
- Understanding acute and chronic eye injury mechanisms is crucial for developing effective treatments.
Purpose of the Study:
- To characterize a novel mouse model of NM-induced ocular surface injury.
- To investigate the clinical and histopathological features, inflammatory markers, and sphingolipid alterations in this model.
Main Methods:
- Treatment of mouse eyes with 2% (w/v) NM solution for 5 minutes.
- Clinical and histopathological evaluation of ocular tissues.
- Analysis of inflammatory markers and sphingolipid homeostasis (acidic sphingomyelinase, ceramide, sphingomyelin).
Main Results:
- The model exhibited severe ocular inflammation, eyelid involvement, corneal structural deformities, and diminished visual/retinal function.
- Alterations in inflammatory markers and activation of acidic sphingomyelinase (aSMase) were observed, leading to increased ceramide and decreased sphingomyelin.
- The model recapitulated injuries seen in human and other animal models of mustard-induced ocular damage.
Conclusions:
- This mouse model effectively mimics severe, full-thickness ocular surface injuries caused by NM exposure.
- The findings highlight the complex interplay of inflammatory markers and sphingolipid metabolism in NM-induced eye injury.
- This model is valuable for studying NM ocular pathologies and testing potential medical countermeasures.

