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Updated: Jul 26, 2025

Biochemical Measurement of Neonatal Hypoxia
Published on: August 24, 2011
Neonatal screening for primary and central congenital hypothyroidism: is it time to go Dutch?
Anita Boelen1,2,3, Nitash Zwaveling-Soonawala2,4, Annemieke C Heijboer1,2,3,5
1Endocrine Laboratory, Department of Laboratory Medicine, Amsterdam UMC, location University of Amsterdam, Amsterdam, The Netherlands.
Insights
Early detection of congenital hypothyroidism (CH) is crucial for brain development. A unique screening algorithm in the Netherlands effectively identifies both primary and central CH, improving patient outcomes.
Area of Science:
- Endocrinology
- Neonatal screening
- Developmental neuroscience
Background:
- Thyroid hormone (TH) is essential for irreversible brain development in early life.
- Congenital hypothyroidism (CH), a shortage of TH, can stem from thyroid gland issues (primary CH) or pituitary/hypothalamic dysfunction (central CH).
- Standard newborn screening (NBS) primarily detects primary CH via TSH levels, often missing central CH cases.
Purpose of the Study:
- To highlight the importance of detecting both primary and central CH through NBS.
- To introduce a unique NBS algorithm used in the Netherlands for comprehensive CH screening.
- To advocate for the inclusion of central CH detection in NBS programs worldwide.
Main Methods:
- Utilized a T4-TSH-thyroxine-binding globulin (TBG) NBS algorithm.
- Applied this algorithm to screen newborns for both primary and central forms of CH.
- Analyzed the effectiveness of the algorithm in detecting different CH subtypes.
Main Results:
- The T4-TSH-TBG algorithm successfully detects both primary and central CH.
- Evidence suggests central CH is often moderate-to-severe, not mild.
- Early detection of central CH via NBS likely improves clinical outcomes.
Conclusions:
- The Dutch NBS algorithm enables the detection of both primary and central CH.
- Detecting central CH through NBS is vital for improving patient care and clinical outcomes.
- Expanding NBS to include central CH detection is strongly recommended.
Abstract:
Thyroid hormone (TH) is indispensable for brain development in utero and during the first 2-3 years of life, and the negative effects of TH deficiency on brain development are irreversible. Detection of TH deficiency early in life by neonatal screening allows early treatment, thereby preventing brain damage. Inborn shortage of TH, also named congenital hypothyroidism (CH), can be the result of defective thyroid gland development or TH synthesis (primary or thyroidal CH (CH-T)). Primary CH is characterized by low blood TH and elevated thyroid-stimulating hormone (TSH) concentrations. Less frequently, CH is due to insufficient stimulation of the thyroid gland because of disturbed hypothalamic or pituitary function (central CH). Central CH is characterized by low TH concentrations, while TSH is normal, low or slightly elevated. Most newborn screening (NBS) programs for CH are primarily TSH based and thereby do not detect central CH. Only a few NBS programs worldwide aim to detect both forms of CH by different strategies. In the Netherlands, we have a unique T4-TSH-thyroxine-binding globulin (TBG) NBS algorithm for CH, which enables the detection of primary and central CH. Although the necessity of central CH detection by NBS is still under debate, it has been shown that most central CH patients have moderate-to-severe hypothyroidism instead of mild and that early detection of central CH by NBS probably improves its clinical outcome and clinical care for central CH patients with multiple pituitary hormone deficiency. We are therefore convinced that detection of central CH by NBS is of utmost importance.
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