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Updated: May 30, 2026

Human Pluripotent Stem Cell Based Developmental Toxicity Assays for Chemical Safety Screening and Systems Biology Data Generation
Published on: June 17, 2015
17β-estradiol decreases methylmercury-induced neurotoxicity in male mice
Keller Samara Malagutti1, Aline Preve da Silva, Hugo Campos Braga
1Departamento de Bioquímica, Centro de Ciências Biológicas, Universidade Federal de Santa Catarina, Florianópolis, SC, Brazil.
Abstract:
There is increasing evidence that health effects of toxic metals, including methylmercury (MeHg), differ in prevalence or are manifested differently in men and women. The present study was aimed at investigating the potential differential susceptibility of male and female Swiss mice against MeHg-induced neurotoxicity, which was evaluated by biochemical (cerebellar oxidative stress-related parameters) and behavioral (locomotor activity and motor performance) variables. We also aimed to evaluate the potential protective effects of 17β-estradiol against such toxicity in MeHg-exposed male animals. MeHg exposure (40mg/L, diluted in tap water, during 2 weeks) decreased locomotor activity and motor performance in both male and female animals, but such phenomena were higher in males. 17β-estradiol co-treatment (10μg/animal, in alternate days) prevented MeHg-induced locomotor deficits in males. MeHg exposure caused a significant increase (60%) in cerebellar lipid peroxidation in male mice, but did not in females. In close agreement, MeHg exposure decreased (43%) cerebellar glutathione peroxidase activity in males, but did not in females. These events were prevented by 17β-estradiol administration. Cerebellar GR activity was increased (25%) in MeHg-exposed males and such event was partially prevented by 17β-estradiol administration. These results indicate that the low susceptibility of female mice to the neurotoxicity elicited by MeHg is linked to neuroprotective effects of sex steroids, which appear to modulate the activities of glutathione-related enzymes. Our experimental observation corroborates previous epidemiological studies showing the greater developmental effects in male than in female humans exposed to MeHg.
Insights
Male mice show higher susceptibility to methylmercury (MeHg) neurotoxicity than females. Sex hormones like 17β-estradiol may offer protection against MeHg-induced oxidative stress and behavioral deficits.
Area of Science:
- Neuroscience
- Toxicology
- Endocrinology
Background:
- Health effects of toxic metals, such as methylmercury (MeHg), vary between sexes.
- Understanding sex-based differences in MeHg neurotoxicity is crucial for public health.
Purpose of the Study:
- Investigate differential susceptibility of male and female mice to MeHg neurotoxicity.
- Evaluate the neuroprotective effects of 17β-estradiol in male mice exposed to MeHg.
Main Methods:
- Assessed MeHg neurotoxicity using biochemical (cerebellar oxidative stress markers) and behavioral (locomotor activity, motor performance) variables in male and female Swiss mice.
- Administered 17β-estradiol to MeHg-exposed male mice to evaluate protective effects.
Main Results:
- MeHg exposure impaired locomotor activity and motor performance in both sexes, with greater deficits in males.
- MeHg increased cerebellar lipid peroxidation and decreased glutathione peroxidase activity significantly in males but not females.
- 17β-estradiol administration prevented MeHg-induced behavioral deficits and reversed biochemical alterations in males.
Conclusions:
- Female mice exhibit lower susceptibility to MeHg neurotoxicity due to neuroprotective effects of sex steroids.
- Sex hormones modulate glutathione-related enzyme activity, contributing to sex-specific responses to MeHg exposure.
- Findings support epidemiological data on greater developmental effects of MeHg in males compared to females.

