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[Using newborn congenital hypothyroidism screening specimens to detect iodine deficiency in three regions of Spain]
T Arrobas Velilla1, C González Rodríguez, A Barco Sánchez
1Departamento de Bioquímica Clínica, Hospital Universitario Virgen Macarena, Sevilla, España.
Insights
Geographical variations in neonatal hyperthyrotropinemia suggest iodine deficiency in Spain. Early blood sampling in screening programs may increase false positives, impacting congenital hypothyroidism detection.
Area of Science:
- Endocrinology
- Neonatal screening
- Public health
Context:
- Neonatal hyperthyrotropinemia, indicated by elevated thyrotropin (TSH) levels, was studied across three regions in southern Spain.
- Congenital hypothyroidism screening programs are essential for early detection and intervention in newborns.
Purpose:
- To assess TSH concentrations in newborns from Seville, Huelva, and Cordoba.
- To analyze the impact of potential iodine deficiency on congenital hypothyroidism screening outcomes.
Summary:
- A study of 113,108 newborns revealed significant regional differences in TSH levels, with Huelva showing higher rates of hyperthyrotropinemia.
- Early blood sampling (at birth) compared to later sampling (48h) showed higher TSH levels, particularly in Huelva.
- Higher TSH levels in early samples led to a greater number of infants recalled for re-testing in Huelva (0.9%) versus Seville (0.3%) and Cordoba (0.2%).
Impact:
- Heterogeneous TSH distribution suggests uneven iodine intake across the studied Spanish regions.
- The findings indicate that early blood sampling, combined with potential iodine deficiency, can inflate false positive rates in neonatal screening for congenital hypothyroidism.
- This highlights the need to consider geographical iodine status when interpreting neonatal screening results.
Background:
Neonatal hyperthyrotropinemia by measurements of thyrotropin (TSH) concentrations has been assessed in three different areas of Spain. The repercussions of a possible iodine deficiency in a congenital hypothyroidism screening program have also been analysed
Material And Methods:
The study comprised 113,108 newborns, which were divided into two groups according to the time of blood sampling. In 78,646 newborns heel blood samples were obtained after 48h whereas in 34,462 newborns, samples were obtained at birth from the umbilical cord (early samples). Newborns came from three areas of the south of Spain, Seville, Huelva and Cordoba. TSH concentrations were measured by time-resolved fluoroimmunoassay.
Results:
The percentage of hyperthyrotropinemia was greater in Huelva (5.2%) than Seville (1.0%) (p<0.001), similar to that observed in early samples, which was higher in Huelva (5.3%) than in Seville (1.9%) and Cordoba (1.7%) (p<0.001). In the early samples group, 0.3% and 0.2% of the newborns from Seville and Cordoba respectively, had TSH >20mIU/L and 10 infants should have been recalled for a new sample for each case detected. While in Huelva 17 infants (0.9%) were recalled per case detected.
Conclusions:
The heterogeneous distribution of TSH concentrations in newborns from several geographical areas appears to indicate an irregular and deficient iodine intake. Using early samples and a possible iodine deficiency, increase false positive results in a Neonatal Screening Program of congenital hypothyroidism.
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