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Effects of maternal hypothyroidism on offspring hippocampus and memory
Karen A Willoughby1, Mary Pat McAndrews, Joanne F Rovet
11 Neuroscience and Mental Health Research Program , The Hospital for Sick Children, Toronto, Canada .
Insights
Maternal hypothyroidism during pregnancy can lead to smaller hippocampal volumes and memory deficits in children. These effects are linked to the severity of thyroid hormone (TH) insufficiency during gestation.
Area of Science:
- Neuroscience
- Developmental Biology
- Endocrinology
Background:
- Gestational thyroid hormone (TH) deficiency in rodents and congenital hypothyroidism in children are linked to abnormal hippocampal development.
- The human hippocampus develops early in gestation, suggesting potential impacts from maternal thyroid status.
Purpose of the Study:
- To investigate if children born to mothers with hypothyroidism during pregnancy exhibit hippocampal abnormalities.
- To assess the relationship between maternal TH insufficiency severity and offspring hippocampal volume and memory functioning.
- To determine if effects are more pronounced in anterior or posterior hippocampal subsections.
Main Methods:
- Studied 54 children (9-12 years): 30 controls and 24 offspring of mothers with hypothyroidism treated with l-thyroxine.
- Conducted comprehensive memory function assessments and MRI scans.
- Manually traced hippocampi to determine volumes of overall, anterior, and posterior segments.
Main Results:
- Children exposed to maternal hypothyroidism had significantly smaller hippocampal volumes than controls, especially in right posterior and left anterior segments.
- Smaller hippocampal volumes correlated negatively with maternal third-trimester TSH and positively with fT4 levels.
- Children exposed to maternal hypothyroidism scored lower on objective and subjective memory tests, correlating with hippocampal volumes.
Conclusions:
- Early thyroid hormone insufficiency due to maternal hypothyroidism adversely impacts offspring hippocampal development.
- This developmental impact is associated with impaired memory functioning in children.
Background:
Rodents with gestational thyroid-hormone (TH) deficiencies and children with congenital hypothyroidism show abnormal hippocampal development. Given that the human hippocampus starts to develop early in gestation, we asked if children born to women with hypothyroidism during pregnancy also show hippocampal abnormalities and if this is related to the severity of maternal TH insufficiency and current memory functioning. We additionally sought to determine whether effects were more prominent in anterior or posterior hippocampal subsections given these support different memory functions and have different developmental trajectories. We hypothesized that these children would have smaller than normal hippocampal volumes than controls and show memory deficits on both standardized tests and indices of "everyday" memory functioning.
Methods:
We studied 54 children aged 9 to 12 years: 30 controls and 24 HYPO cases-offspring from women diagnosed with hypothyroidism prior to or during pregnancy and treated with l-thyroxine. All children received a thorough assessment of memory functions and an MRI scan. For each child, right and left hippocampi were manually traced, and volumes of right and left hippocampi and anterior and posterior segments were determined.
Results:
HYPO cases showed significantly smaller right and left hippocampal volumes than controls, particularly in right posterior and left anterior segments. In HYPO children, hippocampal volumes were negatively correlated with maternal third-trimester TSH levels and positively correlated with third-trimester fT4. HYPO cases scored significantly below controls on one objective and several subjective memory indices, and these were correlated with hippocampal volumes.
Conclusion:
Early TH insufficiency from maternal hypothyroidism affects offspring hippocampal development and memory.
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