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Organ-specific responses of age-dependent vulnerability to deoxynivalenol in female mice
I S Kono1, G A A Lemos1, J R Gerez1
1Laboratory of Animal Pathology, Universidade Estadual de Londrina, Rodovia Celso Garcia Cid, km 380, Londrina, Paraná, 86057-970, Brazil.
Abstract:
The responses underlying heightened sensitivity of young populations to deoxynivalenol (DON) toxicity remain uncharacterized in translational murine models. This study aimed to fill this gap by providing the first systematic, multi-organ (intestine, liver, and kidney) comparison of DON toxicity, contrasting the responses of prepubertal and adult mice. Prepubertal (21-day-old) and adult (65-day-old) Swiss mice (n = 10/group) were fed control or 10 mg/kg DON-contaminated diets for 15 or 28 days, respectively. Growth performance was monitored, and intestine, liver, and kidney were subsequently collected for histopathological, morphometric, and biochemical analyses. DON induced a severe, acute weight gain reduction (∼59.6%) in prepubertal mice, with no effect on adults or systemic biochemical profiles. DON toxicity was highly organ-specific: the prepubertal intestine mounted an adaptive response, coupling oxidative damage with compensatory antioxidant production and enterocyte hypertrophy, but without structural lesions. In contrast, the liver and kidney sustained direct histopathological damage in both age groups. However, their biochemical responses diverged: the liver showed a young-specific inflammatory signal, whereas the kidney remained biochemically silent despite the damage it sustained. This multi-organ comparison in mice shows that DON toxicity is age- and organ-specific, demonstrating that at the exposure dose used, prepubertal mice exhibit more pronounced toxic responses.
Insights
Young mice show heightened sensitivity to deoxynivalenol (DON) toxicity, particularly in the intestine, liver, and kidney. This study reveals age- and organ-specific responses to DON exposure in mice.
Area of Science:
- Toxicology
- Comparative Pathology
- Animal Models
Background:
- Young populations exhibit heightened sensitivity to deoxynivalenol (DON) toxicity.
- The specific organ responses and age-related differences in DON toxicity are not well-characterized in murine models.
Purpose of the Study:
- To systematically compare deoxynivalenol (DON) toxicity across multiple organs (intestine, liver, kidney) in prepubertal versus adult mice.
- To elucidate the age- and organ-specific toxicological responses to DON exposure.
Main Methods:
- Prepubertal and adult Swiss mice were fed control or DON-contaminated diets for 15 or 28 days.
- Growth performance was monitored, followed by histopathological, morphometric, and biochemical analyses of the intestine, liver, and kidney.
Main Results:
- Deoxynivalenol (DON) caused significant weight gain reduction in prepubertal mice but not adults.
- The prepubertal intestine showed adaptive responses (oxidative damage, antioxidant production, hypertrophy) without structural lesions.
- Liver and kidney sustained histopathological damage in both age groups, with a young-specific inflammatory liver response and a biochemically silent kidney response.
Conclusions:
- Deoxynivalenol (DON) toxicity is significantly influenced by both age and organ specificity in mice.
- Prepubertal mice exhibit more pronounced toxic responses to DON at the tested dose, highlighting age-related vulnerabilities.
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