Thyroid dysfunction as a mediator of organochlorine neurotoxicity in preschool children.

Environ Health Perspect

Department of Environmental Health, Harvard School of Public Health, Boston, Massachusetts, USA.

Published: October 2011

AI Article Synopsis

  • Exposure to organochlorine compounds (OCs) during early life can negatively impact thyroid function and a child's neurodevelopment.
  • In a study involving 182 children, relationships were explored between developmental OC exposure, thyroid function, and neuropsychological outcomes.
  • The results indicated that increased OC exposure was linked to lower triiodothyronine uptake ratios (T3RU) and that changes in T3RU were positively associated with better neuropsychological performance, suggesting a potential risk of OCs on thyroid health and child development.

Article Abstract

Background: Exposure to organochlorine compounds (OCs) can alter thyroid function in humans, and hypothyroidism during early life can adversely affect a child's neurodevelopment.

Objectives: In this study we aimed to assess the relationship between developmental organochlorine exposures and thyroid function and the relationship between thyroid function and subsequent neurodevelopment.

Methods: A population-based birth cohort of 182 children was followed annually up to 5.5 years of age. The assessments included OC concentrations in maternal pregnancy serum and milk, clinical thyroid parameters in maternal and cord serum, and subsequent neuropsychological outcomes of the child, along with sociodemographic cofactors. Resin triiodothyronine uptake ratio (T3RU) was also assessed as an estimate of the amount of thyroxine-binding globulin (TBG) sites unsaturated by thyroxine. The T3RU is high in hyperthyroidism and low in hypothyroidism.

Results: The findings showed consistent inverse and monotonic associations between organochlorine exposure and T3RU after covariate adjustments. We observed no associations with other thyroid parameters. T3RU was positively associated with improved performance on most of the neuropsychological tests. For other thyroid parameters, the findings were less consistent.

Conclusions: The results suggest that OC exposures may decrease the T3RU during early life, which is a proxy measure of the binding capacity of TBG. In addition, minor decreases of the thyroid function may be inversely associated with a child's neurodevelopment.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC3230434PMC
http://dx.doi.org/10.1289/ehp.1003172DOI Listing

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