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Approach to the Patient With Congenital Hypothyroidism
Athanasia Stoupa1,2, Dulanjalee Kariyawasam1,2, Adrien Nguyen Quoc1
1Pediatric Endocrinology, Gynecology and Diabetology Department, Hôpital Universitaire Necker-Enfants Malades, Assistance Publique Hôpitaux de Paris, Paris, France.
Insights
Congenital hypothyroidism (CH), a common neonatal endocrine disorder, can cause developmental delay. Early diagnosis and treatment are crucial for preventing long-term health issues in affected infants.
Area of Science:
- Endocrinology
- Genetics
- Neonatal Medicine
Background:
- Congenital hypothyroidism (CH) is a frequent neonatal endocrine disorder and a leading preventable cause of developmental delay and growth failure.
- Early diagnosis and treatment are critical for optimal outcomes in infants with CH.
- Thyroid development involves embryogenesis, folliculogenesis, and differentiation, regulated by the hypothalamic-pituitary-thyroid axis.
Observation:
- Newborn screening programs are effective in detecting CH, though established in limited global regions.
- Recent epidemiological shifts show an increased incidence of in situ thyroid in primary CH.
- Molecular testing advances understanding, yet causes remain unidentified in 5% of CH cases due to thyroid dysgenesis.
Findings:
- A clinical review focusing on CH diagnosis and management, including case studies of two girls with CH and thyroid ectopy.
- Genetic analysis identified novel mutations in the TUBB1 gene in these patients.
- These mutations were associated with macrothrombocytopenia (large platelets) and abnormal platelet function.
Implications:
- Highlights the importance of comprehensive genetic work-up in CH cases, especially with atypical presentations.
- Suggests potential links between specific genetic mutations and broader physiological impacts beyond thyroid function.
- Emphasizes the need for continued research into the molecular underpinnings of CH and exploration of regenerative medicine approaches.
Abstract:
Congenital hypothyroidism (CH) is the most frequent neonatal endocrine disorder and the most common preventable cause of development delay and growth failure if diagnosed and treated early. The thyroid is the first endocrine gland to develop during embryonic life and to be recognizable in humans. Thyroid development and maturation can be divided into 2 phases: a first phase of embryogenesis and a second phase of folliculogenesis and differentiation with thyroid hormone production at the final steps. Regulation of the thyroid function requires normal development of the hypothalamic-pituitary-thyroid axis, which occurs during the embryonic and neonatal period. Defects in any of steps of thyroid development, differentiation, and regulation lead to permanent CH. Newborn screening programs, established in only one-third of countries worldwide, detect CH and are cost-effective and highly sensitive and specific. During the last decade, epidemiology of CH has changed with increased frequency of thyroid in situ in primary CH. Advances in molecular testing have expanded knowledge and understanding of thyroid development and function. However, a molecular cause is identified in only 5% of CH due to thyroid dysgenesis. The purpose of this article is to describe the clinical approach to the child with CH, focusing on diagnostic work-up and future challenges on optimizing thyroid replacement therapy and regenerative medicine. The review is written from the perspective of the case of 2 girls referred for CH after newborn screening and diagnosed with thyroid ectopy. The genetic work-up revealed novel mutations in TUBB1 gene, associated with large platelets and abnormal platelet physiology.
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