Sex dependent intergenerational effects of lead in mouse model.

Sci Rep

Laboratory of Toxicology, Department of Environmental Veterinary Sciences, Faculty of Veterinary Medicine, Hokkaido University, Kita 18, Nishi 9, Kita-ku, Sapporo, 060-0818, Japan.

Published: December 2024

AI Article Synopsis

  • Lead exposure negatively affects fertility and child brain development in mice, with reduced conception rates observed when both males and females are exposed.
  • The study involved four groups of mice to analyze the effects of lead from contaminated soil over four weeks and how these exposures impacted reproduction and neurological performance in their offspring.
  • Results showed that both maternal and paternal Pb exposure led to poor performance in neurological tests for the offspring, with paternal effects being more significant in female offspring, possibly indicating an X-chromosome link.

Article Abstract

Lead (Pb) exposure negatively impacts fertility in both males and females, pregnancy outcomes, and child brain development. We investigated the reproductive and neurological effects of Pb exposure on male and female mice via Pb-contaminated soil for 4 weeks. Breeding was conducted after completion of exposure, in four groups; group 1 consisted of exposed dams and unexposed sires, group 2 consisted of exposed sires and unexposed dams, group 3 consisted of exposed sires and exposed dams and group 4 was the control. Generally, Pb exposure reduced observed conception rates, with a cumulative decrement observed when both males and females are exposed. Gene expression of the testes revealed oxidative stress as the cause of reduced conception rates. Neurological tests: Morris water maze and rotarod were conducted on F1 generation offspring. Maternally and paternally exposed F1 mice performed poorly in the Morris water maze when compared to the control. The severity of the neurological effects was also parent-dependent and sex-dependent. Paternal Pb exposure effects were more pronounced in female offspring. A comparison of gene expression changes of the hippocampus and prefrontal cortex showed paternal Pb-exposure resulted in more prefrontal cortex changes than in the hippocampus, a trend also recorded in the exposed sires. The pronounced effects in female offspring of paternal Pb exposure may suggest that Pb neurological effects may be X-chromosome-linked.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC11618497PMC
http://dx.doi.org/10.1038/s41598-024-81839-4DOI Listing

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