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Published on: March 17, 2023
Long-Term Follow-Up and Outcomes of Autoimmune Thyroiditis in Childhood
Osnat Admoni1, Shoshana Rath1, Tal Almagor1,2
1Pediatric Endocrine Institute, Ha'Emek Medical Center, Afula, Israel.
Insights
Autoimmune thyroiditis in children often requires long-term monitoring. While some euthyroid children develop hypothyroidism, free T4 levels at presentation predict the need for levothyroxine therapy.
Area of Science:
- Pediatric Endocrinology
- Autoimmune Diseases
- Thyroid Disorders
Background:
- Autoimmune thyroiditis (AIT) is the leading cause of acquired hypothyroidism in children.
- Previous studies on AIT outcomes in childhood have had limited follow-up durations and variable results.
Purpose of the Study:
- To detail the initial clinical and biochemical characteristics of pediatric AIT.
- To assess long-term outcomes and identify predictors of disease progression.
- To understand the evolving need for levothyroxine therapy in children with AIT.
Main Methods:
- A cohort of 201 children under 18 with AIT was analyzed.
- Patients were categorized into subgroups based on initial thyroid-stimulating hormone (TSH) levels.
- Long-term follow-up data, averaging 8.1 years, were collected to track outcomes.
Main Results:
- At presentation, 34% had overt hypothyroidism, 32% subclinical hypothyroidism (SCH), and 14% were euthyroid.
- Levothyroxine (LT4) therapy was eventually needed by 26% of initially euthyroid children and over 50% of SCH patients.
- Free T4 levels at presentation were the sole predictor of long-term treatment requirements.
Conclusions:
- A significant proportion of children with subclinical hypothyroidism progress to requiring treatment.
- While some children with overt hypothyroidism may recover, long-term monitoring is essential.
- Free T4 levels at initial diagnosis are crucial for predicting the future need for levothyroxine therapy in pediatric AIT.
Abstract:
Background: Autoimmune thyroiditis (AIT) is the most common cause of acquired hypothyroidism in children. The natural outcome of AIT in childhood has been reported previously however follow-up duration is generally short and results variable. Objectives: To characterize clinical and biochemical findings at presentation of AIT, evaluate long-term outcomes and assess which factors at presentation predict evolution over time. Study cohort: 201 children under 18 years of age at presentation (82% female) were enrolled. Subjects were divided into five subgroups according to thyroid stimulating hormone (TSH) level at referral. Results: Mean follow-up was 8.1 years (range 0-29 years). At presentation, 34% of patients had overt hypothyroidism, 32% subclinical hypothyroidism (SCH), 16% compensated hypothyroidism, 14% were euthyroid, and 3.7% had Hashitoxicosis. Children with overt hypothyroidism were younger (10.6 vs. 13.2 years) and had higher thyroid peroxidase antibody titers. At the time of the study, levothyroxine (LT4) therapy was required in 26% of children who were euthyroid at presentation, 56% of SCH patients, 83-84% of those with TSH above 10 mIU/L, and 57% of those with Hashitoxicosis. Over the years, 16% of children presenting with overt hypothyroidism stopped therapy. Free T4 at presentation was the only predictor of outcome over time. Conclusions: Our findings suggest that only 26% children who were euthyroid at presentation developed hypothyroidism, whereas over 50% of those with SCH went on to require treatment. Of those presenting with overt hypothyroidism, 16% recovered with time. The only predictive parameter for LT4 therapy at the end of the study was free T4 levels at presentation. Long-term follow-up is required to determine ongoing therapy needs and screen for additional autoimmune diseases.
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