Timing of thyroid hormone action in the developing brain: clinical observations and experimental findings

R T Zoeller1, J Rovet

  • 1Biology Department, Morrill Science Center, University of Massachusetts, Amherst, MA 10003, USA. tzoeller@bio.umass.edu

Insights

Thyroid hormone (TH) is crucial for brain development. Timing of TH deficiency significantly impacts specific cognitive and motor skills, affecting visual attention, motor skills, language, and memory.

Area of Science:

  • Neuroscience
  • Developmental Biology
  • Endocrinology

Background:

  • The critical period concept for thyroid hormone (TH) action on brain development was established to guide TH supplementation in congenital hypothyroidism.
  • Neuropsychological advancements reveal that even subtle TH insufficiency can cause specific deficits, dependent on the timing of the deficiency.

Purpose of the Study:

  • To investigate the impact of thyroid hormone insufficiency during different developmental stages on neurodevelopmental outcomes.
  • To correlate specific timing of TH deficiency with distinct deficits in cognitive and motor functions.

Main Methods:

  • Utilized models of maternal hypothyroidism, hypothyroxinemia, and congenital hyperthyroidism in developmental studies.
  • Analyzed offspring neurodevelopmental outcomes based on the timing of TH deficiency during gestation and postnatally.

Main Results:

  • Early pregnancy TH deficiency is linked to visual attention, visual processing, and gross motor deficits.
  • Late pregnancy TH deficiency correlates with impaired contrast sensitivity, visuospatial skills, slower response speeds, and fine motor deficits.
  • Postnatal TH insufficiency predominantly affects language and memory development.

Conclusions:

  • The timing of thyroid hormone action is critical for specific aspects of brain development.
  • TH deficiency at different developmental windows leads to distinct neurodevelopmental impairments, highlighting the complexity of TH's role.
  • Further research into molecular mechanisms is needed to explain these pleiotropic effects of TH on brain development.

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