2-Chloro-3,7,8-tribromodibenzofuran as a new environmental pollutant inducing atypical ultrasonic vocalization in infant mice

Author:

Kimura Eiki123ORCID,Suzuki Go4ORCID,Uramaru Naoto5ORCID,Kakeyama Masaki6ORCID,Maekawa Fumihiko1ORCID

Affiliation:

1. Health and Environmental Risk Research Division, National Institute for Environmental Studies , Tsukuba 305-8506 , Japan

2. Japan Society for the Promotion of Science , Tokyo 102-0083 , Japan

3. Department of Environmental Health, University of Fukui School of Medical Sciences , Fukui 910-1193 , Japan

4. Material Cycles Division, National Institute for Environmental Studies , Tsukuba 305-8506 , Japan

5. Division of Pharmaceutical Health Biosciences, Nihon Pharmaceutical University , Saitama 362-0806 , Japan

6. Faculty of Human Sciences, Waseda University , Saitama 359-1192 , Japan

Abstract

Abstract Epidemiological and experimental studies indicate that maternal exposure to environmental pollutants impairs the cognitive and motor functions of offspring in humans and laboratory animals. Infant ultrasonic vocalizations (USVs), the communicative behavior of pups toward caregivers, are impaired in rodent models of neurodevelopmental disorders, suggesting a useful method to evaluate the developmental neurotoxicity of environmental pollutants. Therefore, we investigated USVs emitted by mouse pups of dams exposed to 2-chloro-3,7,8-tribromodibenzofuran (TeXDF) and 1,2,3,7,8-pentabromodibenzofuran (PeBDF), which are detected in the actual environment. The USV duration and number in the pups born to dams administered with TeXDF 40 μg/kg body weight (b.w.), but not 8 μg/kg b.w., on gestational day (GD) 12.5, were significantly lower than those in the corresponding pups on postnatal days 3–9. Conversely, there was no statistical change in the USVs emitted by the pups of dams administered with PeBDF 35 or 175 μg/kg b.w. on GD 12.5. To examine whether maternal exposure leads to behavioral impairments in adulthood, we analyzed exploratory behaviors in a novel environment using IntelliCage, a fully automated testing apparatus for group-housed mice. Neither TeXDF nor PeBDF exposure induced significant differences in offspring exploration. Considered together, our findings revealed that TeXDF induces atypical USV emission in infant mice, suggesting the importance of further studies on the risk assessment of mixed brominated/chlorinated dibenzo-p-dioxins and dibenzofurans.

Funder

Japan Society for the Promotion of Science

Environmental Research and Technology Development Fund of the Ministry of the Environment

Publisher

Oxford University Press (OUP)

Subject

Health, Toxicology and Mutagenesis,Toxicology

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