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Triiodothyronine-predominant Graves' disease in childhood: detection and therapeutic implications
Julie Harvengt1, Priscilla Boizeau2, Didier Chevenne3
1Assistance Publique-Hôpitaux de ParisService d'Endocrinologie Diabétologie Pédiatrique, Centre de Référence des Maladies Endocriniennes Rares de la Croissance, Hôpital Robert Debré, F-75019 Paris, FranceUniversité Paris DiderotSorbonne Paris Cité, F-75019 Paris, FranceInstitut National de la Santé et de la Recherche Médicale (INSERM)Unité 1141, DHU Protect, F-75019 Paris, FranceINSERMCIC 1426, UMR 1123, Paris, FranceAssistance Publique-Hôpitaux de ParisService de Biochimie-HormonologieAssistance Publique-Hôpitaux de ParisUnité d'Épidémiologie Clinique, Hôpital Robert Debré, Paris, France Julie.Harvengt@chu.ulg.ac.be.
Insights
Triiodothyronine-predominant Graves' disease (T3-P-GD) in children presents with younger age and higher TRAb levels. This rare condition may require higher antithyroid drug (ATD) doses for effective management.
Area of Science:
- Pediatric Endocrinology
- Thyroidology
- Internal Medicine
Background:
- Graves' disease (GD) is a common cause of hyperthyroidism.
- Triiodothyronine-predominant Graves' disease (T3-P-GD) is a recognized entity in adults but not well-described in pediatric populations.
- Understanding T3-P-GD in children is crucial for accurate diagnosis and management.
Purpose of the Study:
- To characterize the clinical presentation and management of T3-P-GD in a pediatric cohort.
- To compare T3-P-GD patients with classical GD patients.
- To identify factors associated with T3-P-GD in children.
Main Methods:
- An observational study was conducted at a university hospital.
- Sixty patients with GD followed for over 1 year were analyzed.
- T3-P-GD was defined by elevated free T3 (fT3) with normal free thyroxine (fT4) and suppressed TSH after antithyroid drug (ATD) initiation.
Main Results:
- Eight percent of pediatric GD patients (n=8) exhibited T3-P-GD.
- T3-P-GD patients were younger at diagnosis and had higher TSH receptor autoantibody (TRAb) levels compared to controls.
- Patients with T3-P-GD required double ATD doses and maintained a lower fT4:fT3 ratio during follow-up.
Conclusions:
- Severe hyperthyroidism, indicated by high TRAb levels at diagnosis, may suggest T3-P-GD in children.
- Regular monitoring of fT3 levels is recommended for identifying T3-P-GD.
- Pediatric T3-P-GD may necessitate higher ATD dosages for optimal control.
Objective:
To assess in a pediatric population, the clinical characteristics and management of triiodothyronine-predominant Graves' disease (T3-P-GD), a rare condition well known in adults, but not previously described in children.
Design:
We conducted a university hospital-based observational study.
Methods:
All patients with GD followed for more than 1 year between 2003 and 2013 (n=60) were included. T3-P-GD (group I) was defined as high free T3 (fT3) concentration (>8.0 pmol/l) associated with a normal free thyroxine (fT4) concentration and undetectable TSH more than 1 month after the initiation of antithyroid drug (ATD) treatment. Group II contained patients with classical GD without T3-P-GD.
Results:
Eight (13%) of the patients were found to have T3-P-GD, a median of 6.3 (3.0-10.5) months after initial diagnosis (n=4) or 2.8 (2.0-11.9) months after the first relapse after treatment discontinuation (n=4). At GD diagnosis, group I patients were more likely to be younger (6.8 (4.3-11.0) vs 10.7 (7.2-13.7) years) and had more severe disease than group II patients, with higher serum TSH receptor autoantibodies (TRAb) levels: 40 (31-69) vs 17 (8-25) IU/l, P<0.04, and with slightly higher serum fT4 (92 (64-99) vs 63 (44-83) pmol/l) and fT3 (31 (30-46) vs 25 (17-31) pmol/l) concentrations. During the 3 years following T3-P-GD diagnosis, a double dose of ATD was required and median serum fT4:fT3 ratio remained lower in group I than in group II.
Conclusion:
Severe hyperthyroidism, with particularly high TRAb concentrations at diagnosis, may facilitate the identification of patients requiring regular serum fT3 determinations and potentially needing higher doses of ATD dosage during follow-up.
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