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TSH concentration within the normal range is associated with cognitive function and ADHD symptoms in healthy
Mar Alvarez-Pedrerol1, Núria Ribas-Fitó, Maties Torrent
1Centre for Research in Environmental Epidemiology - IMIM, Barcelona, Spain.
Insights
Thyroid hormone levels within the normal range can impact child development. High TSH levels in preschoolers were linked to lower cognitive skills and increased attention deficit and hyperactivity disorder symptoms.
Area of Science:
- Pediatric Endocrinology
- Neurodevelopmental Pediatrics
Background:
- Thyroid hormones are crucial for brain development.
- The impact of thyroid hormone levels within the normal range on neurodevelopment and behavior in children is not well understood.
Purpose of the Study:
- To investigate the relationship between thyroid hormone concentrations and neurodevelopment.
- To examine the association between thyroid hormone levels and attention deficit and hyperactivity disorder (ADHD) symptoms in healthy preschoolers.
Main Methods:
- Cross-sectional study of 342 preschoolers from two Spanish birth cohorts.
- Measurement of thyroid hormones (free T4, T3) and TSH.
- Assessment of cognitive and motor development using McCarthy's scales.
- Evaluation of ADHD symptoms using ADHD-DSM-IV criteria.
Main Results:
- Higher TSH concentrations within the normal range correlated with lower scores on memory and quantitative skills.
- Children in the upper TSH quartile showed a higher risk for ADHD symptoms.
- Elevated free T4 levels were associated with a reduced risk of attention deficit symptoms.
Conclusions:
- Even within normal ranges, elevated TSH is linked to reduced cognitive function in preschoolers.
- High TSH and low free T4 concentrations are associated with ADHD symptoms.
- The findings suggest a potential need to re-evaluate the upper limit of the normal TSH range.
Objective:
Thyroid hormone concentrations outside the normal range affect brain development, but their specific influence on behaviour and mental abilities within normal values is unknown. The objective of this study was to investigate whether thyroid hormone concentrations are related to neurodevelopment and ADHD (attention deficit and hyperactivity disorder) symptoms in healthy preschoolers. DESIGN SUBJECTS AND MEASUREMENTS: Children from two general population birth cohorts in Menorca (n = 289) and Ribera d'Ebre (n = 53), Spain, were assessed in a cross-sectional study at the age of 4. Thyroid hormones (free T4 and T3) and TSH concentrations were measured and mental and motor development was assessed using McCarthy's scales for neuropsychological outcomes and ADHD-DSM-IV for attention deficit and hyperactivity/impulsivity symptoms.
Results:
Children with TSH concentrations in the upper quartile of the normal range performed lower on McCarthy's scales and were at higher risk for attention deficit and hyperactivity/impulsivity symptoms. In the Menorca cohort, a decrease of 5.8 (P < 0.05) and 6.9 (P < 0.01) points was observed in memory and quantitative skills, respectively. In contrast, high T4 concentrations were associated with decreased risk of having 1-5 attention deficit symptoms (odds ratio: 0.25; P < 0.01); these findings were observed in both cohorts despite differences in mean TSH concentrations. No associations were observed with T3.
Conclusions:
Despite being within the normal range, high TSH concentrations are associated with a lower cognitive function and high TSH and low free T4 with ADHD symptoms in healthy preschoolers. Statistically significant differences were observed in the highest quartiles of TSH, suggesting a need for re-evaluation of the upper limit of the normal TSH range.
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