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Updated: Mar 30, 2026

Author Spotlight: Studying the Impact of Maternal Dietary Deficiencies on Long-Term Offspring Health Outcomes
Published on: June 28, 2024
Effects of Maternal Iodine Nutrition and Thyroid Status on Cognitive Development in Offspring: A Pilot Study
Mariacarla Moleti1, Francesco Trimarchi1, Gaetano Tortorella2
11 Department of Clinical and Experimental Medicine, University of Messina , Messina, Italy .
Insights
Maternal iodine intake significantly impacts child intelligence. Adequate iodine supplementation during pregnancy, not thyroid hormone treatment, is crucial for optimal neurocognitive development and higher IQ scores in children.
Area of Science:
- Neuroscience
- Endocrinology
- Public Health
Background:
- Maternal iodine nutrition and thyroid status are critical for fetal neurocognitive development.
- Iodine deficiency during pregnancy is a global concern affecting child development.
Purpose of the Study:
- To investigate the impact of maternal iodine supplementation and levothyroxine (LT4) treatment on offspring intelligence quotient (IQ).
- To assess the relationship between maternal iodine status and children's cognitive abilities.
Main Methods:
- A prospective observational study involving 60 mother-child pairs across four groups based on iodine intake and LT4 treatment.
- Children aged 6-12 years underwent IQ testing using the Wechsler Intelligence Scale for Children-3rd Edition (WISC-III).
- Maternal urinary iodine and free thyroxine levels were assessed.
Main Results:
- Children of mothers with adequate iodine intake (with or without LT4) exhibited significantly higher FSIQ, VIQ, and PIQ scores compared to those with iodine deficiency.
- Maternal urinary iodine levels positively correlated with children's verbal IQ (VIQ).
- Children born to mothers with iodine deficiency had a threefold higher prevalence of borderline or defective cognitive function.
Conclusions:
- Maternal nutritional iodine status is a more significant determinant of neurocognitive outcomes than maternal thyroid function.
- Prenatal iodine deficiency adversely affects long-term cognitive development, particularly verbal abilities.
- Ensuring adequate maternal iodine intake is vital for supporting healthy child cognitive development.
Background And Objective:
Maternal iodine nutrition and thyroid status may influence neurocognitive development in offspring. This study investigated the effects on the intelligence quotient (IQ) of children born to mothers with different levels of iodine supplementation, with or without the administration of levothyroxine (LT4), prior to and during pregnancy.
Patients And Methods:
This pilot, prospective, observational study included four study groups, each comprising 15 mother-child pairs, identified on the basis of maternal histories of iodized salt consumption and LT4 treatment prior to and during pregnancy. The groups were labeled as follows: iodine (I), no iodine (no-I), iodine + LT4 (I + T4), and no iodine + LT4 (no-I + T4). IQ tests were administered to children at 6-12 years of age with the Wechsler Intelligence Scale for Children-3rd Edition (WISC-III), with full-scale IQ (FSIQ), verbal IQ (VIQ), and performance IQ (PIQ) being evaluated.
Results:
Children of I and I + T4 mothers had similar verbal, performance, and FSIQs, which were 14, 10, and 13 points higher, respectively, than children born to no-I and no-I + T4 mothers. A positive association was found between VIQ and maternal urinary iodine (β = 1.023 [confidence interval (CI) 1.003-1.043]; p = 0.028), but not with maternal free thyroxine concentrations at any stage of pregnancy. Overall, the prevalence of borderline or defective cognitive function was more than threefold higher in the children of mothers not using iodized salt than of those mothers using it (76.9% vs. 23.1%, odds ratio 7.667 [CI 2.365-24.856], χ2 = 12.65; p = 0.0001).
Conclusions:
Neuro-intellectual outcomes in children appear to be more dependent on their mothers' nutritional iodine status than on maternal thyroid function. These results support the growing body of evidence that prenatal, mild-to-moderate iodine deficiency adversely affects cognitive development later in life, with a seemingly greater impact on verbal abilities.
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